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Method for promoting growth of root tubers of root tuber-type medicinal materials in plant factories

A technology of rhizomes and medicinal materials, which is applied in the field of promoting the growth of roots of rhizomes and medicinal materials in plant factories. It can solve problems such as reference and no related technologies, and achieve the effects of fast root expansion, short planting cycle and high quality.

Pending Publication Date: 2020-11-13
FUJIAN SANAN SINO SCI PHOTOBIOTECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

But at present, there is no relevant technology to refer to for planting rhizome medicinal materials in plant factories

Method used

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  • Method for promoting growth of root tubers of root tuber-type medicinal materials in plant factories
  • Method for promoting growth of root tubers of root tuber-type medicinal materials in plant factories
  • Method for promoting growth of root tubers of root tuber-type medicinal materials in plant factories

Examples

Experimental program
Comparison scheme
Effect test

Embodiment example 1

[0021] Plant 3-5 healthy Danshen seedlings with true leaves in planting pots filled with sterilized substrates, wherein the ratio of the substrates is 20% vermiculite+30% peat soil+40% river sand+10% sawdust, and the soil depth is 50cm. Plant a Salvia miltiorrhiza seedling every 25-30cm, place the cultivation pot under a specific spectrum, and the specific spectrum is composed of: the number of light quanta of blue light B (400-499nm) accounts for the total number of light quanta S 0 The ratio is 15%-35%, the number of photons of green light G (500-599nm) accounts for the total number of photons S 0 The ratio is 15-27%, the number of photons of red light R (600-699nm) accounts for the total number of photons S 0 The ratio is 35-55%, and the light quantum of far-red light FR (700-780nm) accounts for the entire light quantum number S 0 The ratio is 0-15%, where the red light R 1 (640-680nm) photon number accounts for the entire photon number S 0 The ratio is 25-40%; the plant...

Embodiment example 2

[0027] Plant a healthy ginseng seedling with compound leaves in a planting pot filled with sterilized substrate, wherein the substrate ratio is 20% vermiculite + 30% peat soil + 40% river sand + 10% sawdust, the soil depth is 35cm, and the cultivation pot is Placed under a specific spectrum, the specific spectral composition is: the number of photons of blue light B (400-499nm) accounts for the total number of photons S 0 The ratio is 15%-35%, the number of photons of green light G (500-599nm) accounts for the total number of photons S 0 The ratio is 15-27%, the number of photons of red light R (600-699nm) accounts for the total number of photons S 0 The ratio is 35-55%, and the light quantum of far-red light FR (700-780nm) accounts for the entire light quantum number S 0 The ratio is 0-15%, where the red light R 1 (640-680nm) photon number accounts for the entire photon number S 0 The ratio is 25-40%; the planting environment temperature is 23-25°C during the day and 19°C ...

Embodiment example 3

[0033] Plant 3-4 healthy Isatidis seedlings with true leaves in a planting pot filled with a sterilized substrate, wherein the ratio of the substrate is 20% vermiculite + 30% peat soil + 45% river sand + 15% sawdust, and the soil depth is 50cm. Plant a Radix Radix seedling every 30cm, place the cultivation pot under a specific spectrum, and the specific spectrum is composed of: the number of light quanta of blue light B (400-499nm) accounts for the total number of light quanta S 0 The ratio is 15%-35%, the number of photons of green light G (500-599nm) accounts for the total number of photons S 0 The ratio is 15-27%, the number of photons of red light R (600-699nm) accounts for the total number of photons S 0 The ratio is 35-55%, and the light quantum of far-red light FR (700-780nm) accounts for the entire light quantum number S 0 The ratio is 0-15%, where the red light R 1 (640-680nm) photon number accounts for the entire photon number S 0 The ratio is 25-40%; the planting...

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Abstract

The present invention discloses a method for promoting growth of root tubers of root tuber-type medicinal materials in plant factories. The method comprises the following steps: using a specific lightsource for irradiation during indoor cultivation. The spectrum composition of the specific light source is as follows: the ratio of the light quantum number of blue light (400-499 nm) to the whole light quantum number is 15-35%, the ratio of the light quantum number of green light (500-599 nm) to the whole light quantum number is 15-27%, the ratio of the light quantum number of red light (600-699nm) to the whole light quantum number is 35-55%, and the ratio of the light quantum number of far-red light (700-780 nm) to the whole light quantum number is 0-15%. By adopting the method to plant the root tuber-type medicinal materials, the method can obtain the root tuber-type medicinal materials with short planting period, fast tuber swelling and high quality.

Description

Technical field [0001] The invention belongs to the technical field of traditional Chinese medicinal material cultivation, and specifically relates to a method for promoting the growth of rhizome medicinal materials in a plant factory. Background technique [0002] The cultivation of medicinal plants is the foundation of traditional Chinese medicine, is related to people's livelihood and social stability, and is a reflection of national advantages in global competition. In recent years, relevant departments have increasingly strengthened their supervision of the Chinese herbal medicine market. In 2017, the former State Food and Drug Administration issued a total of 46 drug substandard information, involving more than 1,000 batches of drugs from more than 500 pharmaceutical manufacturers. However, the current cultivation of many medicinal materials in my country mainly relies on dispersed planting by pesticide farmers. Extensive planting technology, coupled with the blind exp...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01G31/00A01G7/04
CPCA01G31/00A01G7/045
Inventor 不公告发明人
Owner FUJIAN SANAN SINO SCI PHOTOBIOTECH CO LTD
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