Auricularia nigricans high-yield strain formula and cultivation method

A cultivation method and technology of Auricularia auricularia are applied in the field of high-yielding strain formulation and cultivation of Auricularia auriculariae, which can solve the problems of large weather influence, poor ventilation control, and high labor intensity, and achieves reduction of blood coagulation, unique anticancer activity, digestion good absorption effect

Inactive Publication Date: 2018-10-16
山东省科创食用菌产业技术研究院 +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The prior art mainly has the following disadvantages: 1. The management and operation of the ears are inconvenient, the watering is uneven, and the ventilation is not well controlled
2. It is greatly affected by the weather. In case of heavy rain and other weather, it needs to be covered
3. Occupies a large area of ​​land
4. The ear picking personnel need to lean over to pick the ears,

Method used

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  • Auricularia nigricans high-yield strain formula and cultivation method
  • Auricularia nigricans high-yield strain formula and cultivation method
  • Auricularia nigricans high-yield strain formula and cultivation method

Examples

Experimental program
Comparison scheme
Effect test

Example Embodiment

[0039] Example 1

[0040] In this embodiment, the control group is not provided with a combination of carrots, radishes, and yams, and at the same time, the planting conditions are the same.

[0041] In the present embodiment, the original seed medium includes by weight: carrot powder 10, radish powder 2, chili powder 1, yam powder 3, mushroom powder 2, shrimp skin 2, lignin 30 parts, pectin 20, peptone 10, phosphoric acid Potassium dihydrogen 0.1, calcium carbonate 1, zinc sulfate 0.1, magnesium chloride 1, trehalose 20 and water 1000.

[0042] The components of the culture medium are as follows in parts by weight: 10 carrot powder, 3 yam powder, 2 mushroom powder, 20 pectin, 10 peptone, 0.1 potassium dihydrogen phosphate, 1 calcium carbonate, 0.1 zinc sulfate, 10 sucrose and 100 water.

[0043] The cultivation substrate components are as follows in parts by weight: bran 10, carrot powder 10, yam powder 3, mushroom powder 2, chili powder 1, pectin 20, peptone 10, potassium d...

Example Embodiment

[0052] Example 2

[0053] In this embodiment, the control group is not provided with a combination of carrots, radishes, and yams, and at the same time, the planting conditions are the same.

[0054] In the present embodiment, the original seed medium includes by weight: carrot powder 15, radish powder 5, chili powder 3, yam powder 5, mushroom powder 4, shrimp skin 4, lignin 50, pectin 40, peptone 20, diphosphate Potassium hydrogen 0.5, calcium carbonate 1.5, zinc sulfate 0.5, magnesium chloride 1.5, trehalose 25 and water 1200.

[0055] Wherein, the carrot powder is ground to 10-50 mesh, the chili powder is ground to 10-50 mesh, and the mushroom powder is ground to 10-50 mesh.

[0056] The components of the cultivar medium are by weight: 15 carrot powder, 5 yam powder, 4 mushroom powder, 40 pectin, 20 peptone, 0.5 potassium dihydrogen phosphate, 5 calcium carbonate, 0.5 zinc sulfate, 20 sucrose and 120 water.

[0057] The cultivation substrate components are as follows in p...

Example Embodiment

[0066] Example 3

[0067] In this embodiment, the control group has the same formula as that of the embodiment, but no medicinal solution is applied during the planting process.

[0068] In the present embodiment, the original seed medium includes by weight: carrot powder 15, radish powder 5, chili powder 3, yam powder 5, mushroom powder 4, shrimp skin 4, lignin 50, pectin 40, peptone 20, diphosphate Potassium hydrogen 0.5, calcium carbonate 1.5, zinc sulfate 0.5, magnesium chloride 1.5, trehalose 25 and water 1200.

[0069] Wherein, the carrot powder is ground to 10-50 mesh, the chili powder is ground to 10-50 mesh, and the mushroom powder is ground to 10-50 mesh.

[0070] The components of the cultivar medium are by weight: 15 carrot powder, 5 yam powder, 4 mushroom powder, 40 pectin, 20 peptone, 0.5 potassium dihydrogen phosphate, 5 calcium carbonate, 0.5 zinc sulfate, 20 sucrose and 120 water.

[0071] The cultivation substrate components are as follows in parts by weigh...

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Abstract

The invention relates to an auricularia nigricans high-yield strain formula and a cultivation method. A primary culture medium is prepared from, by weight, 10-15 parts of carrots, 2-5 parts of turnippowder, 1-3 parts of chili powder, 3-5 parts of common yam rhizome powder, 2-4 parts of shiitake mushroom powder, 30-50 parts of lignin, 20-40 parts of pectin, 10-20 parts of peptone, 0.1-0.5 part ofmonopotassium phosphate, 1-1.5 parts of calcium carbonate, 0.1-0.5 part of zinc sulfate, 1-1.5 parts of magnesium chloride, 20-25 parts of trehalose and 1,000-1,200 parts of water. Accordingly, the carrots, turnips and common yam rhizomes are adopted as adding raw materials of a seed breeding culture medium, a cultivar culture medium and a culture medium, it is guaranteed that auricularia nigricans has the new effects of replenishing blood, reducing blood clotting, moistening the lung, and dissolving calculus, and it can be guaranteed that the auricularia nigricans has the properties of beingspecial in color and luster, bright white in color, crystal clear and faultless.

Description

technical field [0001] The invention relates to the technical field of jade fungus cultivation, in particular to a formula and a cultivation method for high-yield fungal strains of jade fungus. Background technique [0002] The color of jade fungus is warm and moist like jade, crystal clear, white and flawless. When fresh, it is colloidal and translucent, and when dry, it is slightly darker and milky yellow, and after rehydration, it is white and transparent. Because its color and taste are similar to jellyfish skin, it is called "wood jellyfish skin". Jade fungus is non-toxic and edible, contains a variety of amino acids, and has a high protein content. Relevant studies have shown that jade fungus has an anticoagulant effect, and its efficacy is similar to that of black fungus. It is a new edible and medicinal fungus. [0003] Most of the existing fungus harvesting methods are ground planting, transporting the fungus bags full of bags after the cultivation to the ear fie...

Claims

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Application Information

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IPC IPC(8): A01G18/00A01G18/20
CPCA01G18/00A01G18/20
Inventor 高霞李晓博刘孝利王振利李晓王琦赵敬聪
Owner 山东省科创食用菌产业技术研究院
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