Fermented beverage composition

A fermented cascara beverage composition with specific volatile compound ratios and Pichia kluyveri yeast fermentation addresses the desire for fruity flavors in low-alcohol beverages, enhancing sensory perception and aroma while avoiding acidity and synthetic flavorings.

JP7777552B2Active Publication Date: 2025-11-28SOCIETE DES PRODUITS NESTLE SA
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Patent Information

Application Number
JP2022577600
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-06-24
Filing Date
2021-06-22
Publication Date
2025-11-28
Estimated Expiration
2041-06-22

AI Technical Summary

Technical Problem

Consumers seek low-alcohol beverages with fruity flavors but are reluctant to consume those with synthetic flavorings, and cascara beverages often have undesirable 'stewed tea' flavors and high sugar content.

Method used

A beverage composition comprising fermented cascara or fermented cascara extract with a specific ratio of volatile compounds like 2-phenylethyl acetate to benzaldehyde, enhanced by fermentation with Pichia kluyveri yeast to improve floral and fruity notes, and a method for preparing this composition without acetic acid bacteria to avoid acidity.

Benefits of technology

The method enhances sensory perception of floral and fruity notes in cascara beverages, providing a balanced aroma profile without off-flavors and acidity, potentially reducing the need for added flavorings.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a beverage composition comprising fermented cascara or a fermented cascara extract. A further aspect of the invention is a method for preparing the beverage composition. An even further aspect of the invention is the yeast Pichia kluyveri NYSC5485 (CNCM I-5525).
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Description

[Technical Field]

[0001] The present invention relates to a beverage composition comprising fermented cascara or a fermented cascara extract. A further aspect of the invention is a method for preparing the beverage composition. [Background technology]

[0002] Although a fruity flavor is desired by consumers in low-alcohol beverages, many people are reluctant to consume beverages containing flavorings, especially synthetic flavorings. In most low-alcohol beverages, the perception of fruitiness is often achieved by adding high-sugar fruit concentrates, which results in a high sugar content that is not always preferred.

[0003] Cascara beverages are becoming increasingly popular. Cascara, which means "shell" in Spanish, is the outer part of the coffee cherry. The production of cascara beverages utilizes this part of the coffee cherry, which is normally discarded. Typically, the outer part of the coffee cherry is separated from the coffee bean, sun-dried, and then used to brew a beverage similar to tea. Cascara beverages often have a slightly tart, sweet profile rather than a bitter profile, making them ideal for soft drinks. However, some consumers perceive a "stewed tea" flavor in cascara and find them unenjoyable.

[0004] Any reference to a prior art document herein should not be considered an admission that such prior art is well known or forms part of the common general understanding in the art. As used herein, the words "comprises," "comprising," and similar words should not be construed in an exclusive or exhaustive sense. In other words, they are intended to mean "including, but not limited to." Summary of the Invention

[0005] The object of the present invention is to advance the state of the art and to provide a novel product which overcomes at least to some extent the above-mentioned inconveniences, or at least to provide a useful alternative. This object is achieved by the subject matter of the independent claims. The dependent claims further develop the inventive idea.

[0006] Thus, in a first aspect, the present invention provides a beverage composition comprising fermented cascara or a fermented cascara extract, wherein the weight ratio of 2-phenylethyl acetate to benzaldehyde is greater than 1.

[0007] A second aspect of the present invention provides a container for use in a beverage preparation machine, the container containing a beverage composition of the present invention.

[0008] A third aspect of the present invention provides a starter culture comprising Pichia kluyveri NYSC5485 (CNCM I-5525).

[0009] In a fourth aspect, the present invention provides a method for producing a beverage composition, the method comprising: a. steeping cascara in water to produce an aqueous cascara extract and steeped cascara; b. fermenting the aqueous cascara extract in the presence or absence of steeped cascara; Fermentation is carried out by yeast in the absence of acetic acid bacteria.

[0010] Surprisingly, the inventors have found that fermenting cascara with yeast can enhance sensory perception. In particular, the perception of floral and fruity notes is significantly improved, corresponding to an increase in the concentration of volatile substances related to floral and fruity notes. The various levels of individual aroma compounds, such as acetate esters, result in a balanced aroma profile without acetone-like off-flavors or vinegar / beer / winey fermentation notes. Fermentation in the absence of acetic acid bacteria avoids the acidic "bite" present in traditional fermented beverages, such as kombucha. [Brief explanation of the drawings]

[0011] [Figure 1] Sensory profiles of Brazilian cascara infusions fermented with various yeasts are shown. Left column: sour, bitter, sweet. Right column: fruity, fermented, floral. Samples were compared to a reference set as 0 and a "Control 24H" that was treated like the fermented samples but without yeast. "NYSC5485" is fermented with Pichia kluyveri NYSC5485, "NCYC246" is fermented with P. kluyveri NCYC246, and "S33" is fermented with Saccharomyces cerevisiae S-33. [Figure 2] Sensory profiles of Mexican cascara infusions fermented with various yeasts are shown. Left column: sour, bitter, sweet. Right column: fruity, fermented, floral. Fermented samples are labeled as in Figure 1. [Figure 3] Levels of 2-phenylethyl acetate, isopentyl acetate, and isobutyl acetate (in order from top to bottom) in Mexican cascara infusions after fermentation with various yeasts are shown in ppm. Fermented samples are labeled as in Figure 1. DETAILED DESCRIPTION OF THE INVENTION

[0012] Accordingly, the present invention relates, in part, to a beverage composition comprising (e.g., consisting of) fermented cascara or fermented cascara extract, wherein the weight ratio of 2-phenylethyl acetate to benzaldehyde is greater than 1. For example, the weight ratio of 2-phenylethyl acetate to benzaldehyde can be greater than 1.5, 3, 6, 10, 15, 20, 25, 30, 40, or 50. For example, the weight ratio of 2-phenylethyl acetate to benzaldehyde can be 1 to 500, such as 5 to 400, such as 10 to 200, such as 20 to 100, such as 20 to 50, or even such as 22 to 40. In one embodiment of the invention, the weight ratio of 2-phenylethyl acetate to benzaldehyde is greater than 0.8, such as greater than 0.9. In one embodiment of the invention, the weight ratio of 2-phenylethyl acetate to benzaldehyde is 0.8 to 500, such as 0.9 to 100.

[0013] 2-Phenylethyl acetate has an appealing floral, rose-like aroma. Higher concentrations of 2-phenylethyl acetate correspond to enhanced floral notes. Benzaldehyde is naturally present in cascara and is not significantly affected by fermentation, making it a useful denominator in the ratio with 2-phenylethyl acetate.

[0014] In the context of this invention, cascara is the outer part of the coffee cherry. It is distinct from cascara sagrada, the bark of the Rhamnus purshiana tree. Coffee cherries are the fruit of the coffee plant (Coffea), a member of the Rubiaceae family. Coffee cherries are sometimes called coffee berries. Coffee cherries may be from Arabica (Coffea arabica), Robusta (Coffea canephora), or a mixture of these fruits.

[0015] Depending on the processing method, two types of cascara are available. Husk cascara is produced by drying whole coffee cherries and then dehulling them. For example, husk cascara according to the present invention can be produced from sun-dried coffee cherries. Husk cascara comprises the husk, pulp, mucilage, and parchment of the coffee cherry. Pulp cascara is produced by washing and depulping the coffee cherries. Depulping is usually carried out in wash water. The separated pulp is then dried. For example, pulp cascara according to the present invention may be sun-dried. Pulp cascara comprises the husk and pulp of the coffee cherry. Cascara according to the present invention may be selected from the group consisting of husk cascara, pulp cascara, and combinations thereof. Cascara according to the present invention may be pulp cascara.

[0016] To optimize the flavor of cascara, it should ideally be produced from fully ripe coffee cherries. While it is difficult to avoid some immature coffee cherries in the harvest, for example, cascara according to the present invention can be produced primarily from mature coffee cherries. For example, at least 80%, e.g., at least 90%, of the coffee cherries used to produce cascara can be red.

[0017] In the context of the present invention, the term "fermentation" refers to a process in which microbial activity brings about a change (typically a desired change) in a food or beverage. Fermentation can be by yeast and / or bacteria. Fermentation can be anaerobic or aerobic. Fermentation is one of the oldest techniques used to preserve and enhance food.

[0018] The term "fermented cascara" refers to cascara that has been subjected to a process in which the activity of microorganisms, such as yeast, results in a chemical change, typically a desired change, in the organic components of the cascara. Fermented cascara can be fermented in an aqueous medium, for example, by yeast. Fermented cascara can be dried cascara, which is added to an aqueous fermentation medium, fermented, and then separated from the aqueous fermentation medium and dried. Fermented cascara can also be fermented in a "solid-state" fermentation, for example, by adding a yeast starter culture to coffee cherry pulp.

[0019] The term "cascara extract" refers to a substance extracted from cascara, e.g., an aqueous extract of cascara. The term "fermented cascara extract" refers to a cascara extract after the cascara extract has been fermented, e.g., an aqueous cascara extract after the aqueous extract has been fermented, such as with yeast. The fermented cascara extract may be a dried fermented cascara extract.

[0020] Benzaldehyde is an organic compound commonly found in natural sources, with a characteristic almond-like odor and a moderate odor threshold. Benzaldehyde, which occurs naturally in cascara and green and roasted coffee beans, is not considered a significant coffee odorant due to its relatively low concentrations.

[0021] Isopentyl acetate, also known as isoamyl acetate, occurs naturally in bananas. At appropriate concentrations, it provides a pleasant fruity note resembling banana and pear. In one embodiment, the weight ratio of isopentyl acetate to benzaldehyde is greater than 1. For example, the weight ratio of isopentyl acetate to benzaldehyde can be greater than 1.5, 3, 6, 10, 15, 20, 25, 30, 40, 50, 60, or 70. In one embodiment, the weight ratio of isopentyl acetate to benzaldehyde can be 1 to 500, such as 5 to 400, such as 10 to 200, such as 20 to 100, such as 50 to 300, or further such as 40 to 200.

[0022] Isobutyl acetate provides a pleasant fruity note. In one embodiment, the weight ratio of isobutyl acetate to benzaldehyde is greater than 0.5. For example, the weight ratio of isobutyl acetate to benzaldehyde can be greater than 1, 2, 3, or 4. The weight ratio of isobutyl acetate to benzaldehyde can be from 0.5 to 20, such as from 1 to 15, such as from 2 to 10, further such as from 3 to 6.

[0023] 3-Methylbutanol is a common volatile produced during fermentation, primarily contributing to pungent and alcoholic notes. Therefore, maximizing the ratio of isopentyl acetate to 3-methylbutanol results in a beverage with minimal fermentation notes and a higher level of fruitiness. In one embodiment, the weight ratio of isopentyl acetate to 3-methylbutanol is greater than 0.5. For example, the weight ratio of isopentyl acetate to 3-methylbutanol can be greater than 1, 2, 3, or 4. The weight ratio of isopentyl acetate to 3-methylbutanol can be between 0.5 and 40, such as between 1 and 30, such as between 2 and 20, such as between 3 and 15, and further such as between 3 and 4.

[0024] Although isopentyl acetate and hexyl acetate both provide fruity notes, isopentyl acetate has a much higher odor intensity than hexyl acetate. Thus, a high ratio of isopentyl acetate to hexyl acetate indicates the intensity of the fruity flavor in a beverage. In one embodiment, the weight ratio of isopentyl acetate to hexyl acetate is greater than 10. For example, the weight ratio of isopentyl acetate to hexyl acetate may be greater than 100 or greater than 500. The weight ratio of isopentyl acetate to hexyl acetate may be 100-1000. The weight ratio of isopentyl acetate to hexyl acetate may be 200-3000, such as 250-2000, or further such as 500-1500. In one embodiment, the level of hexyl acetate in the beverage composition is less than 0.1 ppm.

[0025] In one embodiment, the weight ratio of 2-phenylethanol to benzaldehyde is greater than 2.7 (e.g., greater than 2.8, 2.9, or 3.0). In one embodiment, the weight ratio of ethanol to benzaldehyde is less than 50,000 (e.g., less than 40,000, or even less than 30,000). In one embodiment, the weight ratio of 2-phenylethanol to benzaldehyde is greater than 2.7 (e.g., greater than 2.8, 2.9, or 3.0) and the weight ratio of ethanol to benzaldehyde is less than 50,000 (e.g., less than 40,000, or even less than 30,000).

[0026] In one embodiment, the weight ratio of ethyl acetate to benzaldehyde is greater than 50. For example, the weight ratio of ethyl acetate to benzaldehyde can be greater than 100 or greater than 500. The weight ratio of ethyl acetate to benzaldehyde can be 50 to 2000. The weight ratio of ethyl acetate to benzaldehyde can be 300 to 1500, e.g., 500 to 1100. An appropriate ratio of ethyl acetate to benzaldehyde is associated with a fruity aroma. Too high a level of ethyl acetate can result in an unpleasant ethereal aroma. In one embodiment, the beverage composition is selected from the group consisting of ready-to-drink beverages, beverage concentrates, soluble beverage powders, dried botanical flavor ingredients, and combinations thereof. In one embodiment, the beverage composition is a beverage-extractable composition for beverage preparation. Beverage-extractable compositions for beverage preparation include fully soluble compositions, such as soluble beverage powders, and compositions that combine extractable and insoluble components, such as dried cascara. The beverage composition may include added vitamins. The beverage composition may include added antioxidants. The beverage composition may include added flavorings. However, because fermentation according to the present invention produces an appealing fruity aroma, added flavorings may not be necessary. In one embodiment, the beverage composition does not include added flavorings. The beverage composition may consist of a coffee bean component and a cascara component. The beverage composition may consist of a cascara component. The beverage composition may not include a coffee bean component, for example, it may not include roasted and ground coffee beans or an extract of roasted and ground coffee beans.

[0027] In one embodiment, the beverage composition is a mixture of dried fermented cascara extract and roasted and ground coffee, for example, to be extracted with water to produce a beverage. In one embodiment, the beverage composition is a mixture of dried fermented cascara extract, dried fermented cascara, and roasted and ground coffee, for example, to be extracted with water to produce a beverage.

[0028] The ready-to-drink beverage may be a fermented cascara infusion or water flavored with fermented cascara. The ready-to-drink beverage may further include other ingredients such as flavorings or stabilizers. The ready-to-drink beverage may be a carbonated beverage. The ready-to-drink beverage may further include coffee (e.g., cold brew coffee), tea (e.g., an aqueous extract of the leaves, leaf buds, twigs, or stems of the plant Camellia sinensis).

[0029] The dried botanical flavor ingredient may be selected from the group consisting of cascara, roasted and ground coffee, dried tea (e.g., dried leaves, leaf buds, twigs, or stems of the plant Camellia sinensis), dried herbal tea (e.g., dried flowers, fruits, leaves, seeds, or roots of plants other than Camellia sinensis), and combinations thereof. In one embodiment, the beverage composition is a mixture of dried fermented cascara and roasted and ground coffee, for example, for extraction with water to produce a beverage.

[0030] Beverage preparation devices (e.g., beverage preparation machines) containing extractable, portioned ingredients provide a convenient method of preparing beverages. Such portioned ingredients are typically packaged in containers configured, for example, as pods, pads, sachets, pouches, or capsules. One aspect of the present invention provides a container for use with a beverage preparation device, containing a beverage composition of the present invention. The container is for preparing a beverage when inserted into the beverage preparation device. The container may be, for example, a beverage capsule, among other configurations. In one embodiment, the container contains the beverage composition of the present invention. For example, the container may contain dried fermented cascara, dried fermented cascara extract, a mixture of dried fermented cascara and roasted and ground coffee, a mixture of dried fermented cascara extract and roasted and ground coffee, or a mixture of dried fermented cascara extract, dried fermented cascara, and roasted and ground coffee.

[0031] In one embodiment, the beverage composition has an ethanol content of less than 1.2% by weight, such as less than 0.5% by weight, such as less than 0.2% by weight, further such as less than 0.05% by weight.

[0032] One aspect of the present invention provides a method for preparing a beverage composition, the method comprising: a. steeping cascara in water to produce an aqueous cascara extract and steeped cascara; b. fermenting the aqueous cascara extract in the presence or absence of steeped cascara; Fermentation is carried out by yeast in the absence of acetic acid bacteria.

[0033] The beverage composition prepared by the method of the present invention may be a cascara beverage, for example, a beverage containing fermented cascara or a fermented cascara extract. The beverage composition prepared by the method of the present invention may have an ethanol content of less than 1.2% by weight, such as less than 0.5% by weight, such as less than 0.2% by weight, or even less than 0.05% by weight. In one embodiment, the beverage composition prepared by the method of the present invention is a beverage composition of the present invention.

[0034] The term "steeping" refers to steeping a material in a liquid. Cascara can be steeped in water for at least 5 minutes, for example, at least 10 minutes, for example, at least 30 minutes, for example, at least 60 minutes, and further for example, at least 120 minutes. During the steeping process, the cascara components are extracted into the water. Steeping may be carried out at a temperature between 4°C and 98°C, for example, between 20°C and 95°C, for example, between 60°C and 95°C. Cascara contains fermentable sugars, but additional fermentable sugars, such as sucrose or glucose, may be added to the aqueous cascara extract. The fermentable sugar may be fructose or glucose. For example, the fermentable sugar may be added to the aqueous cascara extract at a level of 2 to 10% by weight, for example, 3 to 7% by weight. The cascara may be milled before steeping.

[0035] If fermentation is performed in the absence of steeped cascara, the cascara can be steeped in water, for example, using a continuous countercurrent extraction system. A further option is to steep the cascara in water using a batch process, with the steeped cascara being separated from the aqueous cascara extract using a filtration system. The dry basis cascara to water ratio during steeping can be 1:1 to 1:100 by weight, for example, 1:2 to 1:95 by weight, for example, 1:10 to 1:90 by weight, for example, 1:30 to 1:70 by weight, or further for example, 1.3 to 1:6.

[0036] After steeping, the temperature of the cascara aqueous extract is adjusted to a temperature suitable for yeast growth, for example, 20°C to 37°C, for example, 25°C to 35°C, for example, 28°C to 32°C. The temperature can be adjusted, for example, using a laminar flow heat exchanger. Yeast is added to the cascara aqueous extract to initiate fermentation. The fermentation of the cascara aqueous extract may be carried out at a temperature of 25°C to 35°C, for example, 28°C to 32°C. The fermentation of the cascara aqueous extract may be carried out for at least 2 hours, for example, at least 6 hours, for example, at least 12 hours, for example, at least 24 hours, further for example, at least 48 hours.

[0037] The fermentation may be carried out at a pH of 3 to 8, for example 4 to 6.

[0038] Fermentation may be carried out in the presence of a nitrogen source such as yeast extract or yeast peptone. Fermentation may also be carried out in the presence of amino acids such as valine, leucine, isoleucine and / or phenylalanine, added, for example, at a level of 0.05% to 0.1% by weight of the aqueous cascara extract.

[0039] Fermentation may be carried out under anaerobic, microaerobic or aerobic conditions. For example, the oxygen partial pressure in the fermenter may be 0 to 30%, such as 1 to 20%, further such as 2 to 10%.

[0040] Preferably, the cascara has not been subjected to chemical treatment, such as hydrolysis, prior to fermentation.

[0041] Fermentation should be at least 10 3CFU / g, e.g., at least 10 4 CFU / g, e.g., at least 10 5 CFU / g, e.g., at least 10 6 CFU / g, further e.g. at least 10 7 This can be done by adding one or more yeasts at an initial mixed yeast level of CFU / g.

[0042] The fermentation is carried out in the absence of acetic acid bacteria to avoid the development of an acid "hot" taste profile. In one embodiment, the fermentation is carried out in the absence of lactic acid bacteria.

[0043] In one embodiment, fermentation is carried out in the absence of Saccharomyces subsp. For example, fermentation can be carried out in the absence of Saccharomyces cerevisiae, which is used in winemaking and beer brewing. In addition to producing undesirable alcohol, S. cerevisiae produces "fermented," wine-like, yeasty flavor notes rather than fresh, fruity notes.

[0044] In one embodiment, fermentation is carried out in the absence of yeasts selected from the group consisting of Zygosaccharomyces bailii, Schizosaccharomyces pombe, Torulaspora delbreukii, Rhodotorula mucilaginosa, Brettanomyces bruxellensis, and Candida stellus, which are commonly present in kombucha "tea-fungal" cultures.

[0045] Surprisingly, the present inventors have found that fermentation of cascara with Pichia kluyveri provides particularly good results. Beverage compositions containing cascara or cascara extract fermented with Pichia kluyveri have pleasant fruity and floral flavors. Pichia kluyveri is naturally occurring throughout the world, for example, in olives, grapes, and coffee. In one embodiment of the method of the present invention, the yeast comprises Pichia kluyveri. For example, more than 50% of the yeast colony-forming units present during fermentation can be Pichia kluyveri. For example, more than 50% of the microbial colony-forming units present during fermentation can be Pichia kluyveri. For example, essentially all of the yeast colony-forming units present during fermentation can be Pichia kluyveri. As a further example, essentially all of the microbial colony-forming units present during fermentation can be Pichia kluyveri.

[0046] Pichia kluyveri NCYC246 (alternatively designated CBS188) is the type strain of Pichia kluyveri. Type strains are publicly available, for example, from the National Collection of Yeast Cultures, Quadram Institute Bioscience (Norwich, UK).

[0047] In one embodiment, the yeast is Pichia kluyveri NCYC246. For example, greater than 50% of the yeast colony forming units present during fermentation can be Pichia kluyveri NCYC246. For example, greater than 50% of the microbial colony forming units present during fermentation can be Pichia kluyveri NCYC246. For example, essentially all of the yeast colony forming units present during fermentation can be Pichia kluyveri NCYC246. As a further example, essentially all of the microbial colony forming units present during fermentation can be Pichia kluyveri NCYC246.

[0048] The inventors have found that fermenting cascara with Pichia kluyveri NYSC5485 provides particularly good results. Pichia kluyveri NYSC5485 not only provides intense fruity and floral organoleptic properties, but also reduces bitterness, particularly the bitter "over-brewed tea" notes of cascara.

[0049] Pichia kluyveri is widely distributed in nature and occurs in fruits such as coffee cherries and olives. Pichia kluyveri NYSC5485, collected and isolated from a coffee fermentation plant in Nicaragua, was deposited on June 23, 2020, at the Collection Nationale de Cultures de Microorganismes (CNCM), Institut Pasteur, 25 rue du Docteur Roux, F-75724 PARIS Cedex15, France, under the accession number CNCM I-5525.

[0050] In one embodiment, the yeast is Pichia kluyveri NYSC5485 (CNCM I-5525). For example, greater than 50% of the yeast colony forming units present during fermentation can be Pichia kluyveri NYSC5485 (CNCM I-5525). For example, greater than 50% of the microbial colony forming units present during fermentation can be Pichia kluyveri NYSC5485 (CNCM I-5525). For example, essentially all of the yeast colony forming units present during fermentation can be Pichia kluyveri NYSC5485 (CNCM I-5525). As a further example, substantially all of the microbial colony forming units present during fermentation can be Pichia kluyveri NYSC5485 (CNCM I-5525).

[0051] One embodiment of the present invention is Pichia kluyveri NYSC5485 (CNCM I-5525). One embodiment of the present invention is a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO: 1, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO: 2, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO: 3, a gene sequence having at least 95% identity (e.g., at least 98%, 99%, or 99.5% identity) to SEQ ID NO: 4, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO: 5, or a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO: 6. a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:7, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:8, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:9, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:10, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:11, and a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:12.

[0052] One aspect of the present invention provides a starter culture comprising Pichia kluyveri NYSC5485 (CNCM I-5525). The starter culture comprises at least 10 3 CFU / g of Pichia kluyveri NYSC5485 (CNCM I-5525), e.g., at least 10 4 CFU / g of Pichia kluyveri NYSC5485 (CNCM I-5525), e.g., at least 10 5 CFU / g of Pichia kluyveri NYSC5485 (CNCM I-5525), e.g., at least 106 CFU / g of Pichia kluyveri NYSC5485 (CNCM I-5525), e.g., at least 10 7 CFU / g of Pichia kluyveri NYSC 5485 (CNCM I-5525), e.g., at least 10 8 CFU / g of Pichia kluyveri NYSC5485 (CNCM I-5525), furthermore, for example, at least 10 9 The starter culture may contain Pichia kluyveri NYSC5485 (CNCM I-5525) at CFU / g. The starter culture may be obtained by drying a concentrated yeast culture, for example, by spray-drying the concentrated yeast culture with maltodextrin. The starter culture may be stored frozen and then thawed and grown for use; for example, the starter culture may be frozen at -80°C in a vial containing glycerol. The term "starter culture" refers to a composition containing live microorganisms that can initiate or carry out fermentation of organic material, optionally after culturing in a separate starter medium to obtain a high-density culture. Thus, in one embodiment, the starter culture of the present invention may be a high-density culture obtained by growing a starter culture in an appropriate medium. The starter culture of the present invention may also contain, in addition to the microorganism, buffers and growth-stimulating nutrients or preservatives or other carriers.

[0053] The gene sequence of Pichia kluyveri NYSC5485 (CNCM I-5525) was analyzed using PacBio sequencing technology. DNA purification was performed using the Qiagen Gentra Puregene Yeast kit. Twelve DNA fragments were identified. These may represent individual chromosomes, namely, 11 chromosomes and one mitochondrial DNA (SEQ ID NO:4). The gene sequences are submitted electronically as SEQ ID NOs:1 to 12. In one embodiment of the method of the present invention, the yeast comprises a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:1, SEQ ID NO:2, SEQ ID NO:3, SEQ ID NO:5, SEQ ID NO:6, SEQ ID NO:7, SEQ ID NO:8, SEQ ID NO:9, SEQ ID NO:10, SEQ ID NO:11, or SEQ ID NO:12. For example, the yeast may comprise a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to a sequence selected from the group consisting of SEQ ID NO:1, SEQ ID NO:2, SEQ ID NO:3, SEQ ID NO:5, SEQ ID NO:6, SEQ ID NO:7, SEQ ID NO:8, SEQ ID NO:9, SEQ ID NO:10, SEQ ID NO:11, and SEQ ID NO:12.

[0054] In one embodiment of the method of the invention, the yeast comprises a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:1, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:2, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:3, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:4, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:5, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:6. a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:7, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:8, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:9, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:10, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:11, and a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:12.

[0055] One aspect of the present invention provides a method for preparing a beverage composition, the method comprising: a) steeping cascara in water to produce an aqueous cascara extract and steeped cascara; b) fermenting the aqueous cascara extract in the presence or absence of steeped cascara, wherein the fermentation is carried out with a yeast comprising a genetic sequence having at least 98% (e.g., at least 99%) overall nucleotide identity to a combination of SEQ ID NOS: 1-12. The term "combination of SEQ ID NOS: 1-12" means that a sequence identity comparison is made for all individual DNA fragments as if they were linked into a single sequence.

[0056] One embodiment of the present invention provides a method for preparing a beverage composition, the method comprising: a) steeping cascara in water to produce an aqueous cascara extract and steeped cascara; b) fermenting the aqueous cascara extract in the presence or absence of steeped cascara, wherein the fermentation produces a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:1, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:2, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:3, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:4, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:5, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:6, 99% identity) to SEQ ID NO:7, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:8, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:9, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:10, a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:11, and a gene sequence having at least 95% identity (e.g., at least 98% or 99% identity) to SEQ ID NO:12.

[0057] In one embodiment, the yeast comprises a gene sequence having at least 98% (eg, at least 99%) overall nucleotide identity to a combination of SEQ ID NOs: 1-12.

[0058] In one embodiment, the yeast comprises a gene sequence having at least 98% identity to SEQ ID NO:1, a gene sequence having at least 98% identity to SEQ ID NO:2, a gene sequence having at least 98% identity to SEQ ID NO:3, a gene sequence having at least 99% identity to SEQ ID NO:5, a gene sequence having at least 98% identity to SEQ ID NO:6, a gene sequence having at least 99% identity to SEQ ID NO:7, a gene sequence having at least 98% identity to SEQ ID NO:8, a gene sequence having at least 98% identity to SEQ ID NO:9, a gene sequence having at least 99% identity to SEQ ID NO:10, a gene sequence having at least 98% identity to SEQ ID NO:11, and a gene sequence having at least 98% identity to SEQ ID NO:12.

[0059] In one embodiment, the yeast comprises a gene sequence having at least 98% (e.g., at least 99%) identity to SEQ ID NO:1. In one embodiment, the yeast comprises a gene sequence having at least 98% (e.g., at least 99%) identity to SEQ ID NO:2. In one embodiment, the yeast comprises a gene sequence having at least 98% (e.g., at least 99%) identity to SEQ ID NO:3. In one embodiment, the yeast comprises a gene sequence having at least 99% identity to SEQ ID NO:5. In one embodiment, the yeast comprises a gene sequence having at least 98% (e.g., at least 99%) identity to SEQ ID NO:6. In one embodiment, the yeast comprises a gene sequence having at least 99% identity to SEQ ID NO:7. In one embodiment, the yeast comprises a gene sequence having at least 98% (e.g., at least 99%) identity to SEQ ID NO:8. In one embodiment, the yeast comprises a gene sequence having at least 98% (e.g., at least 99%) identity to SEQ ID NO:9. In one embodiment, the yeast comprises a gene sequence having at least 99% identity to SEQ ID NO:10. In one embodiment, the yeast comprises a gene sequence having at least 98% (e.g., at least 99%) identity to SEQ ID NO: 11. In one embodiment, the yeast comprises a gene sequence having at least 98% (e.g., at least 99%) identity to SEQ ID NO: 12.

[0060] In one embodiment, the aqueous cascara extract is separated from the steeped cascara after fermentation. For example, the steeped cascara can be separated from the aqueous cascara extract using a filtration system. After fermentation, the aqueous cascara extract becomes a fermented cascara extract.

[0061] The fermented cascara extract may be packaged as a ready-to-drink beverage, for example, in bottles or cans. Additional ingredients, such as flavorings and preservatives, may be added to the fermented cascara extract before packaging it as a ready-to-drink beverage. The fermented cascara extract may be heat-treated to inactivate or kill yeast and any spoilage organisms before packaging. The fermented cascara extract may be passed through a filter to remove yeast and spoilage organisms before packaging.

[0062] In one embodiment, the cascara aqueous extract is concentrated after fermentation. After fermentation, the cascara aqueous extract can be concentrated to produce a liquid concentrate, which can be packaged and sold directly, or can be sold as an intermediate product for the production of ready-to-drink products at a different location. The fermented cascara aqueous extract (e.g., fermented cascara extract) can be concentrated to produce a powder, such as a soluble beverage powder. For example, the fermented cascara aqueous extract (fermented cascara extract) can be dried by spray drying or freeze drying to produce a soluble beverage powder. For example, the fermented cascara aqueous extract can be spray dried with a carrier such as maltodextrin to produce a soluble beverage powder. The soluble beverage powder can be packaged and sold directly, or can be used as an intermediate product for the production of ready-to-drink products at a different location. The soluble beverage powder can be filled into a container for use in a beverage preparation device. The soluble beverage powder can also be combined with other dry ingredients, such as tea, soluble coffee, or roast and ground coffee. For example, the soluble beverage powder may be combined with roast and ground coffee and packed into a container for use in a beverage preparation machine. The soluble beverage powder may be combined with a dairy powder or a beverage creamer powder and, optionally, sugar to produce a beverage mix. After fermenting the cascara aqueous extract in the presence of the steeped cascara, the steeped cascara becomes fermented cascara. In one embodiment, the steeped cascara present during the fermentation of the cascara aqueous extract is separated from the cascara aqueous extract after fermentation and then dried, for example, using a rotary dryer. The dried steeped cascara may be packed into a container for use in a beverage preparation machine or into a liquid-permeable bag, such as a "tea bag." The dried steeped cascara may also be combined with other dry ingredients, such as tea, soluble coffee, or roast and ground coffee.

[0063] In one embodiment, the steeped cascara present during the fermentation of the aqueous cascara extract is dried together with the aqueous cascara extract after fermentation, for example, by freeze-drying or spray-drying. The dried steeped cascara (e.g., dried fermented cascara) together with the post-fermentation dried aqueous cascara extract (e.g., dried fermented cascara extract) may be packaged into containers for use in beverage preparation equipment or may be packaged into liquid-permeable bags such as "tea bags." The post-fermentation dried steeped cascara and dried aqueous cascara extract may be combined with other dried raw materials, such as tea, soluble coffee, or roast and ground coffee.

[0064] Fermented cascara can be obtained by "solid-state" fermentation, for example, by adding a yeast starter culture to coffee cherry pulp. The term "solid-state" fermentation refers to fermentation carried out on solid material. In solid-state fermentation, liquid water is present, but this term is used in contrast to liquid fermentation, such as may occur in an aqueous solution in a fermentation vessel.

[0065] One aspect of the present invention provides a method for preparing a beverage composition, the method comprising: adding a yeast starter culture to the coffee cherry pulp, wherein the starter culture is at least 10 per gram of coffee cherry pulp; 4 CFU (e.g., at least 10 5 CFU, further e.g., at least 10 6 providing a yeast cell count of 100 CFU; fermenting the coffee cherry pulp; drying the fermented coffee cherry pulp to produce fermented cascara; extracting the fermented cascara with water to produce a ready-to-drink beverage; or and filling the fermented cascara into a container, the container being for preparing a beverage when inserted into a beverage preparation device.

[0066] The yeast starter culture may be added to the coffee cherry pulp as a liquid or powder. The coffee cherry pulp may have a moisture content of 45-55% by weight when the yeast starter culture is added. Fermentation may occur at a solids content of greater than 40% by weight, such as greater than 45% by weight, or even greater than 50% by weight.

[0067] Drying of the fermented coffee cherry pulp may begin while fermentation continues to some extent. For example, the coffee cherry pulp may be placed in a container such as a tank, a starter culture may be added, and fermentation may proceed for 1 to 4 days, after which the fermented coffee cherry pulp may be removed from the container and dried. As a further example, after the starter culture is added to the coffee cherry pulp, the coffee cherry pulp may be gradually dried, for example, on a rack or hanging tray. Once fermentation has begun, the coffee cherry pulp may be gradually dried while fermentation continues. For example, the fermented coffee cherry pulp may be dried to a moisture content of less than 20% by weight (e.g., less than 15% by weight) over a period of 1 to 30 days, e.g., 4 to 20 days. The drying temperature may be less than about 40°C, e.g., about 25°C to 35°C. A fan may be used to blow dry air over the material until the coffee cherry pulp is dry. The fermented coffee cherry pulp may also be dried in the sun.

[0068] The yeast can be Pichia kluyveri, for example Pichia kluyveri NYSC5485.

[0069] When inserted into the beverage preparation device, the container for beverage preparation may be in the form of a pod, pad, sachet, pouch, capsule, etc.

[0070] The solid-state fermented coffee cherry pulp may be essentially free of coffee beans and may, for example, be processed by a pulping machine that presses the cherries between a stationary surface and a moving surface to separate the coffee beans. The coffee cherry pulp may, for example, contain less than 10% by weight of coffee beans, such as less than 5% by weight of coffee beans, for example less than 1% by weight of coffee beans.

[0071] The solid-state fermented coffee cherry pulp may be provided in the form of coffee cherries containing coffee beans, which may be separated from the coffee cherry pulp after fermentation.

[0072] The ready-to-drink beverage may be filled into bottles or cans. The fermented cascara may be combined with other extractable ingredients, such as tea or roasted and ground coffee, before being extracted with water to produce the ready-to-drink beverage.

[0073] The fermented cascara may be mixed with roast and ground coffee in a container when inserted into a beverage preparation device for preparation of a beverage.

[0074] Those skilled in the art will understand that all features of the invention disclosed herein may be freely combined. In particular, features described for products of the invention may be combined with methods of the invention, and vice versa. Furthermore, features described for different embodiments of the invention may be combined. Where known equivalents exist for particular features, such equivalents are incorporated herein as if specifically referenced.

[0075] Further advantages and features of the invention are apparent from the figures and non-limiting examples. [Example]

[0076] Example 1: Cascara Fermentation Method Two types of cascara from different origins were used in the experiment. Cascara from Brazil and Mexico harvested in 2018 was wet-processed and then dried. First, 20 g of cascara was added to 1,000 mL of water at 90°C for hot infusion, and the mixture was incubated for 1 hour after the temperature had dropped below 30°C. The cascara was discarded, and the infusion water was sterilized by filtration (0.2 μm) to prepare a reference cascara infusion (reference).

[0077] Fermented cascara was produced by fermenting infusions with various starter cultures, including Pichia kluyveri NYSC5485 (CNCM I-5525), P. kluyveri NCYC246 (A. Pichia kluyveri), commercial brewer's yeast Saccharomyces cerevisiae (SafAle S-33, LEsaffre, France), and symbiotic culture of bacteria and yeasts (SCOBY) pellicles from kombucha tea fermentation. All strains (except the SCOBY) were grown in food yeast-peptone liquid medium from glycerol vials and inoculated into a reference cascara brew at log 6.5 (CFU / g). All inoculated infusions were stored at 30°C under microaerobic conditions for 24 h. After incubation, the cascara was discarded, and the infusion water was filter-sterilized (0.2 μm). Additionally, as a negative control, a non-fermented infusion was performed in which the hot infusion was incubated at 30°C for 24 hours without any inoculation (Control 24H). All final products were subjected to filter sterilization for organoleptic evaluation. The viability of various starter cultures was tested by fermentation in yeast growth medium.

[0078] Example 2: Sensory analysis of cascara fermented with different yeasts The sensory profiles of various cascara infusions were evaluated by a 10-member panel. The evaluation was divided into two sessions based on the origin of the cascara used: Brazilian cascara and Mexican cascara. In each session, a comparative profiling analysis was performed between the reference infusion and several other samples, including fermented variants of P. kluyveri NYSC5485, P. kluyveri NCYC246, S. cerevisiae S-33, SCOBY pellicle, and a non-fermented negative control. All samples were served at room temperature, and the panel evaluated seven sensory attributes, including overall flavor intensity, fruity, floral, fermented, sour, sweet, and bitter notes. The difference between each attribute and the reference was assessed on an intensity scale ranging from -3 (much less) to 3 (much more), with the reference being 0.

[0079] The results are plotted in Figure 1 (Brazilian cascara) and Figure 2 (Mexican cascara). Samples fermented with Pichia yeasts (NYSC5485 and NCYC246) exhibit enhanced sweetness, fruity notes, and floral notes. P. kluyveri NYSC5485 provides a higher fruity note intensity than the reference strain P. kluyveri NCYC246.

[0080] Example 3: Analysis of aroma compounds present in Mexican cascara fermented with different yeasts Semi-quantitative profiling of volatile compounds in cascara infusions was performed by headspace / solid-phase microextraction coupled with gas chromatography and mass spectrometry (HS / SPME-GC-MS) using a gas chromatograph (Agilent Technology 5973N) coupled to a single quadrupole mass spectrometer.

[0081] A 1.0 mL cascara infusion sample was first incubated in a 10 mL screw-top headspace vial at 30°C for 10 min and then extracted using an SPME fiber (PDMS / DVB, Supelco) at 30°C for 10 min. All vials were placed in a tray cooled to 6°C before analysis. Volatiles were thermally desorbed from the SPME fiber at 250°C in splitless mode and separated on a capillary column (DB-WAX, Agilent). The GC oven temperature was programmed to initially run at 35°C for 5 min, then increase to 230°C at 4°C / min, and then remain at 230°C for 10 min. Helium was used as the carrier gas at a flow rate of 1 mL / min. Target compounds were identified using pure standards and quantified using MSD ChemStation software (Agilent). All samples were run in duplicate. The concentration of ethanol was measured by GC and headspace coupled with flame ionization detection (HS-GC-FID, Agilent Technology 7890B). 1.0 mL of each sample was incubated in a 10 mL headspace vial at 40°C for 5 minutes, and then 1 mL was sampled and injected into the GC with a split ratio of 5. The GC oven temperature was programmed to initially run at 35°C for 1 minute, then increase to 70°C at 4°C / min, then increase to 180°C at 12°C / min, and then hold for 2 minutes. Helium was used as the carrier gas at a flow rate of 2 mL / min. All samples were measured in duplicate.

[0082] The levels (ppm) of 2-phenylethyl acetate, isopentyl acetate, and isobutyl acetate are plotted in Figure 3. Samples fermented with Pichia yeasts (NYSC5485 and NCYC246) had elevated levels of these acetate esters, with P. kluyveri NYSC5485 producing the highest levels. The weight ratios of the aroma components are shown in the table below.

[0083] [Table 1]

[0084] The amount of ethanol produced after 24 h of fermentation by P. kluyveri NYSC5485 was 0.03%.

[0085] Samples fermented with Pichia yeasts (NYSC5485 and NCYC246) show higher ratios of 2-phenylethyl acetate / benzaldehyde, isopentyl acetate / benzaldehyde, isobutyl acetate / benzaldehyde, isopentyl acetate / 3-methylbutanol, and isopentyl acetate / hexyl acetate than the control and samples fermented with S. cerevisiae or SCOBY. P. kluyveri NYSC5485 produces higher values ​​for these ratios than the reference strain P. kluyveri NCYC246.

[0086] Example 4: Comparison of the gene sequence of P. kluyveri NYSC5485 with that of the reference strain P. kluyveri NCYC246. The gene sequences of Pichia kluyveri NYSC5485 (CNCM I-5525) and P. kluyveri NCYC246 were analyzed using PacBio sequencing technology. DNA purification was performed using the Qiagen Gentra Puregene Yeast kit. 12 DNA fragments were identified for P. kluyveri NYSC5485, and 15 fragments were identified for the reference strain P. kluyveri NCYC246. The gene sequences of P. kluyveri NYSC5485 are submitted electronically as SEQ ID NOs: 1 to 12, and for P. kluyveri NCYC246 as SEQ ID NOs: 13 to 27. The mitochondrial DNA sequences for P. kluyveri NYSC5485 and P. kluyveri NCYC246 are submitted electronically as SEQ ID NOs: 4 and 20, respectively.

[0087] The gene sequence of Pichia kluyveri NYSC5485 (CNCM I-5525) was compared with P. kluyveri NCYC246 using the software OrthoANIu. The overall average nucleotide identity was found to be 97.91%.

[0088] The correspondence between the various sequences is shown in the table below. The multiple sequences of Pichia kluyveri NYSC5485 correspond most closely to the combination of sequences of P. kluyveri NCYC246, and vice versa.

[0089] [Table 2]

[0090] The type strain P. kluyveri NCYC246 contained the gene sequences with the greatest identity to each of SEQ ID NOs: 1-12 as shown below: SEQ ID NO: 1: 97.85%, SEQ ID NO: 2: 97.40%, SEQ ID NO: 3: 97.86%, SEQ ID NO: 4: 99.02%, SEQ ID NO: 5: 98.05%, SEQ ID NO: 6: 97.93%, SEQ ID NO: 7: 98.12%, SEQ ID NO: 8: 97.07%, SEQ ID NO: 9: 97.20%, SEQ ID NO: 10: 98.33%, SEQ ID NO: 11: 97.526%, SEQ ID NO: 12: 97.77%

[0091] Various features and embodiments of the present invention are described with reference to the numbered paragraphs below. 1. A beverage composition comprising fermented cascara or a fermented cascara extract, wherein the weight ratio of isopentyl acetate to benzaldehyde is greater than 1. 2. The beverage composition of paragraph 1, wherein the weight ratio of isobutyl acetate to benzaldehyde is greater than 0.5. 3. A beverage composition according to any one of paragraphs 1-2, wherein the weight ratio of isopentyl acetate to 3-methylbutanol is greater than 0.5. 4. A beverage composition according to any one of paragraphs 1 to 3, wherein the weight ratio of isopentyl acetate to hexyl acetate is greater than 10. 5. A beverage composition described in any one of paragraphs 1 to 4, wherein the weight ratio of 2-phenylethyl acetate to benzaldehyde is greater than 0.9. 6. A beverage composition comprising fermented cascara or a fermented cascara extract, wherein the weight ratio of isobutyl acetate to benzaldehyde is greater than 0.5. 7. The beverage composition of paragraph 6, wherein the weight ratio of isopentyl acetate to 3-methylbutanol is greater than 0.5. 8. A beverage composition according to paragraph 6 or paragraph 7, wherein the weight ratio of isopentyl acetate to hexyl acetate is greater than 10. 9. A beverage composition according to any one of paragraphs 6 to 8, wherein the weight ratio of 2-phenylethyl acetate to benzaldehyde is greater than 0.9. 10. A beverage composition according to any one of paragraphs 6 to 9, wherein the weight ratio of isopentyl acetate to benzaldehyde is greater than 1. 11. A beverage composition comprising fermented cascara or a fermented cascara extract, wherein the weight ratio of isopentyl acetate to 3-methylbutanol is greater than 0.5. 12. A beverage composition according to paragraph 11, wherein the weight ratio of isopentyl acetate to hexyl acetate is greater than 10. 13. A beverage composition according to paragraph 11 or paragraph 12, wherein the weight ratio of 2-phenylethyl acetate to benzaldehyde is greater than 0.9. 14. A beverage composition described in any one of paragraphs 11 to 13, wherein the weight ratio of isopentyl acetate to benzaldehyde is greater than 1. 15. A beverage composition according to any one of paragraphs 11 to 14, wherein the weight ratio of isobutyl acetate to benzaldehyde is greater than 0.5. 16. A beverage composition comprising fermented cascara or a fermented cascara extract, wherein the weight ratio of isopentyl acetate to hexyl acetate is greater than 10. 17. A beverage composition according to paragraph 16, wherein the weight ratio of 2-phenylethyl acetate to benzaldehyde is greater than 1. 18. A beverage composition according to paragraph 16 or 17, wherein the weight ratio of isopentyl acetate to benzaldehyde is greater than 1. 19. A beverage composition described in any one of paragraphs 16 to 18, wherein the weight ratio of isobutyl acetate to benzaldehyde is greater than 0.5. 20. A beverage composition described in any one of paragraphs 16 to 19, wherein the weight ratio of isopentyl acetate to 3-methylbutanol is greater than 0.5. 21. A beverage composition comprising fermented cascara or a fermented cascara extract, wherein the weight ratio of 2-phenylethanol to benzaldehyde is greater than 2.7 (e.g., greater than 2.8, 2.9, 3.0) and the weight ratio of ethanol to benzaldehyde is less than 50,000 (e.g., less than 40,000, or even less than 30,000). 22. A method for preparing a beverage composition, comprising: adding a yeast starter culture to the coffee cherry pulp, said starter culture being at least 10 per gram of said coffee cherry pulp; 4 CFU (e.g., at least 10 5 CFU, further e.g., at least 10 6 providing yeast in a concentration of 1000 CFU; fermenting the coffee cherry pulp; drying the fermented coffee cherry pulp to produce fermented cascara; extracting the fermented cascara with water to produce a ready-to-drink beverage; or and filling the fermented cascara into a container, the container being for preparing a beverage when inserted into a beverage preparation device. 23. The method of paragraph 22, wherein the yeast is Pichia kluyveri, for example Pichia kluyveri NYSC5485 (CNCM I-5525). 24. The method of paragraph 22 or paragraph 23, wherein the beverage composition is one of any one of paragraphs 1 to 21. 25. The method of any one of paragraphs 22 to 24, wherein the beverage composition is one of paragraphs 32 to 37. 26. The method of any one of paragraphs 22 to 25, wherein the coffee cherry pulp is essentially free of coffee beans. 27. The method of any one of paragraphs 22 to 26, wherein the coffee cherry pulp is provided in the form of coffee cherries containing coffee beans, and the beans are removed after fermentation. 28. The method of any one of paragraphs 22 to 27, wherein the fermentation is carried out at a solids content of more than 40% by weight, such as more than 45% by weight, further such as more than 50% by weight. 29. The method of any one of paragraphs 22 to 28, wherein the fermented cascara is filled into a container such that the container contains the fermented cascara and roast and ground coffee. 30. Use of coffee cherry pulp fermented with Pichia kluyveri NYSC5485 (CNCM I-5525) for producing a beverage. 31. A beverage composition comprising fermented cascara and / or fermented cascara extract, wherein the weight ratio of 2-phenylethyl acetate to benzaldehyde in said fermented cascara and / or said fermented cascara extract is greater than 0.7, for example, greater than 0.8, 0.9, 1.0, 1.5, 3, 6, 10, 15, 20, 25, 30, 40 or 50. 32. A beverage composition according to paragraph 31, wherein the weight ratio of isopentyl acetate to benzaldehyde in the fermented cascara and / or the fermented cascara extract is greater than 1, for example greater than 1.5, 3, 6, 10, 15, 20, 25, 30, 40, 50, 60 or 70. 33. A beverage composition according to paragraph 31 or paragraph 32, wherein the weight ratio of isobutyl acetate to benzaldehyde in the fermented cascara and / or the fermented cascara extract is greater than 0.5, for example greater than 1, 2, 3 or 4. 34. A beverage composition according to any one of paragraphs 31 to 33, wherein the weight ratio of isopentyl acetate to 3-methylbutanol in the fermented cascara and / or the fermented cascara extract is greater than 0.5, for example greater than 1, 2, 3 or 4. 35. A beverage composition according to any one of paragraphs 31 to 34, wherein the weight ratio of isopentyl acetate to hexyl acetate in the fermented cascara and / or the fermented cascara extract is greater than 10, for example greater than 100 or 500. 36. A beverage composition according to any one of paragraphs 31 to 35, comprising roast and ground coffee or soluble coffee. 37. A container containing a composition comprising (e.g., consisting of) dried fermented coffee cherry pulp, the container being for preparing a beverage when inserted into a beverage preparation device. 38. The container of paragraph 37, wherein the composition comprises roast and ground coffee.

Claims

1. Pichia kluyveri NYSC5485.

2. Use of Pichia kluyveri NYSC5485 in cascara fermentation.

3. A beverage composition comprising fermented cascara or a fermented cascara extract, The beverage composition, wherein the fermentation is carried out by Pichia kluyveri NYSC5485 yeast.

4. 4. The beverage composition of claim 3, wherein the weight ratio of 2-phenylethyl acetate to benzaldehyde is greater than 1.

5. 5. The beverage composition of claim 4, wherein the weight ratio of isopentyl acetate to benzaldehyde is greater than 1.

6. 6. The beverage composition according to claim 4 or 5, wherein the weight ratio of isobutyl acetate to benzaldehyde is greater than 0.

5.

7. 7. The beverage composition according to any one of claims 4 to 6, wherein the weight ratio of isopentyl acetate to 3-methylbutanol is greater than 0.

5.

8. A beverage composition according to any one of claims 4 to 7, wherein the weight ratio of isopentyl acetate to hexyl acetate is greater than 10.

9. 9. The beverage composition of any one of claims 3 to 8, wherein the beverage composition is selected from the group consisting of a ready-to-drink beverage, a beverage concentrate, a soluble beverage powder, a dried botanical flavor ingredient, and combinations thereof.

10. A container for use in a beverage preparation machine, the container containing a beverage composition according to any one of claims 3 to 9.

11. 1. A method for preparing a beverage composition, comprising: a. steeping cascara in water to produce an aqueous cascara extract and steeped cascara; b. Fermenting the aqueous cascara extract in the presence or absence of the steeped cascara; The method, wherein the fermentation is carried out by yeast in the absence of acetic acid bacteria, and the yeast comprises Pichia kluyveri NYSC5485.

12. 12. The method of claim 11, wherein the yeast comprises a gene sequence having at least 98% overall nucleotide identity to a combination of SEQ ID NOs: 1-12.

13. 13. The method of claim 11 or 12, wherein the fermentation is carried out in the absence of Saccharomyces cerevisiae.

14. 14. The method of any one of claims 11 to 13, comprising separating the aqueous cascara extract from the steeped cascara after fermentation.

15. 14. The method according to any one of claims 11 to 13, wherein the steeped cascara present during the fermentation of the aqueous cascara extract is dried together with the aqueous cascara extract after fermentation.

16. The method according to any one of claims 11 to 15, wherein the beverage composition is as defined in any one of claims 3 to 9.

Citation Information

Patent Citations

  • Making method of coffee wine

    CN1029409C

  • Coffee pericarp fermented beverage

    CN103815473A

  • Flavor coffee pericarp beverage

    CN103815474A

  • Acid coffee pericarp beverage

    CN103815475A

  • Coffee peel sweet beverage

    CN103815505A