Artificial propagation promotion method for improving yield of russula virescens

A blue-head fungus, artificial technology, applied in fertilization methods, botanical equipment and methods, horticulture and other directions, can solve the problems of increasing yield and quality, insufficient rainfall, reducing blue-head fungus output, etc., to improve yield and quality, prevent The effect of quality degradation

Inactive Publication Date: 2019-04-05
YUNNAN ACAD OF FORESTRY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In recent years, due to the wild invasion of Eupatorium adenophorum in Yunnan, Eupatorium adenophorum absorbs a large amount of nutrients in the soil such as water, nitrogen, phosphorus and potassium, resulting in weakened soil fertility. At the same time, it also secretes toxic substances that restrain the growth of P. adenophorum, greatly reducing In addition, the global climate is abnormal, the rainwater balance is scarce, and the rainfall is insufficient, which leads to a significant reduction in the wild quality and output of P. The fungus-picking villagers picked the fungus as soon as they saw it, and there was no scientific maintenance of the fungus pit after picking, which exacerbated the sharp decline in the yield and quality, and seriously affected the benefits of the fungus.

Method used

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  • Artificial propagation promotion method for improving yield of russula virescens

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Effect test

Embodiment 1

[0024] A kind of method for artificially promoting multiplication that improves Pleurotus chinensis output, this artificial method for promoting multiplication comprises the following steps:

[0025] (1) Eupatorium adenophorum seedlings and seedlings in the woodland are artificially removed in November every year, and then the seedlings of Eupatorium adenophorum are removed once every 25 days until May of the following year; the removed Eupatorium adenophorum plants It is piled up in the septic cellar in the field and fermented with the manure into plant fertilizer;

[0026] (2) From September to February of the next year, regularly collect dead branches and fallen leaves in the forest land. The dead branches are crushed by a crusher and piled up together with the fallen leaves in the septic cellar in the field and fermented together with the feces to become plant fertilizer; The specific collection frequency is to collect dead branches and litter every 2 weeks in September an...

Embodiment 2

[0031] A kind of method for artificially promoting multiplication that improves Pleurotus chinensis output, this artificial method for promoting multiplication comprises the following steps:

[0032] (1) Eupatorium adenophorum seedlings and seedlings are artificially removed in November every year to cultivate the seedlings and seedlings of Eupatorium adenophorum in the woodland, and then the seedlings of Eupatorium adenophorum are removed once every 60 days until May of the following year; It is piled up in the septic cellar in the field and fermented with the manure into plant fertilizer;

[0033] (2) From September to February of the next year, regularly collect dead branches and fallen leaves in the forest land. The dead branches are crushed by a crusher and piled up together with the fallen leaves in the septic cellar in the field and fermented together with the feces to become plant fertilizer; The specific collection frequency is to collect dead branches and litter ever...

Embodiment 3

[0038] A kind of method for artificially promoting multiplication that improves Pleurotus chinensis output, this artificial method for promoting multiplication comprises the following steps:

[0039] (1) Eupatorium adenophorum seedlings and seedlings in the woodland are artificially removed in November every year, and then the seedlings of Eupatorium adenophorum are removed once every 25 days until May of the following year; the removed Eupatorium adenophorum plants It is piled up in the septic cellar in the field and fermented with the manure into plant fertilizer;

[0040] (2) From September to February of the next year, regularly collect dead branches and fallen leaves in the forest land. The dead branches are crushed by a crusher and piled up together with the fallen leaves in the septic cellar in the field and fermented together with the feces to become plant fertilizer; The specific collection frequency is to collect dead branches and litter every 2 weeks in September an...

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Abstract

The invention provides an artificial propagation promotion method for improving a yield of russula virescens, and relates to the technical field of fungus cultivation. The artificial propagation promotion method comprises the following steps of (1) periodically removing eupatorium adenophorum from November to May of the following year; (2) collecting dead branches and fallen leaves in forest landsfrom September to February of the following year; (3) regularly cleaning weeds and moss in the forest lands from March to September of each year; (4) when the russula virescens is ripe, picking threetimes a day, after picking, making pits formed by the growth of the russula virescens be gently covered with clods, and collecting again on the next day; (5) November, May, June, July, August, September and October of each year, fertilizing the forest lands; the method makes an artificial propagation promotion and management method infiltrate into the propagation and growth process of the russulavirescens, and improves the yield and quality of the russula virescens.

Description

technical field [0001] The invention relates to the technical field of fungi planting, in particular to an artificial propagation-promoting method for increasing the output of Pseudomonas chinensis. Background technique [0002] Qingtou fungus is a popular edible fungus, with white flesh and soft taste. Qingtou fungus is delicious, tender in the mouth, long-lasting, and rich in natural fragrance. It can be fried or boiled in soup. The meat of Plethias chinensis is rich in high-quality amino acids and mineral elements. The content of protein, copper, iron, calcium, manganese, zinc, selenium, etc. in wild Psyllium chinensis is determined by referring to the relevant national standard methods, and the content of essential amino acids in wild Psyllium chinensis. The total amount of amino acids is 1.39%, the mass percentage (EAA / TAA) of essential amino acids in the total amount of amino acids is 41.8%, and the mineral element selenium is 1.3mg / 100g. Modern biotechnology studies...

Claims

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Application Information

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Patent Type & AuthorityApplications(China)
IPC IPC(8): A01G18/00A01G18/20A01G18/69A01G18/70A01C21/00
CPCA01C21/005A01G18/00A01G18/20A01G18/69A01G18/70
Inventor冯志伟景跃波李勇鹏李荣波卯吉华李孙玲
OwnerYUNNAN ACAD OF FORESTRY