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首页> 外文期刊>Journal of natural medicines >Development of crossbreeding high-yield-potential strains for commercial cultivation in the medicinal mushroom Wolfiporia cocos (Higher Basidiomycetes)
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Development of crossbreeding high-yield-potential strains for commercial cultivation in the medicinal mushroom Wolfiporia cocos (Higher Basidiomycetes)

机译:在药用蘑菇Wolpoporia cocos(高级担子菌)中开发用于商业栽培的杂交高产潜力菌株

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摘要

Wolfiporia cocos is a well-known medicinal mushroom, and its dried sclerotia has been widely used as a traditional medicine in China, Japan, and other Asian countries for centuries. However, long-term asexual reproduction of the breeding system in W. cocos results in a current universal degeneration of cultivated strains. To develop a W. cocos breeding program that will benefit commercial cultivation, we previously developed an optimum method for indoor induction of W. cocos fruiting bodies and clarified the nature of preponderant binuclear sexual basidiospores. In this paper, we first show that the majority of W. cocos single-spore isolates cannot form sclerotium in field cultivation. We then investigated the possibility of breeding new strains by crossbreeding. Three types of mating reactions were observed in both intra-strain pairings and inter-strain pairings, and a total of fifty-five hybrids were selected by antagonistic testing and allele-specific polymerase chain reaction (PCR). Field cultivation of hybrids demonstrated that some hybrids can form sclerotium via two cultivated methods. Two new high-yield strains were identified. This report will stimulate new thinking on W. cocos and promote further extensive studies on crossbreeding in W. cocos, a new topic related to the development of more efficient protocols for the discrimination of hybrids in W. cocos.
机译:Wolfiporia cocos是一种著名的药用蘑菇,其干菌核在中国,日本和其他亚洲国家已被广泛用作传统药物已有数百年历史。但是,W。cocos中繁殖系统的长期无性繁殖导致当前普遍的栽培菌株退化。为了制定有利于商业种植的W. cocos育种计划,我们先前开发了一种室内诱导W. cocos子实体的最佳方法,并阐明了优势双核性担子孢子的性质。在本文中,我们首先显示大多数W. cocos单孢子分离株在田间栽培中不能形成菌核。然后,我们研究了通过杂交育种新菌株的可能性。在菌株内配对和菌株间配对中观察到三种类型的交配反应,并且通过拮抗试验和等位基因特异性聚合酶链反应(PCR)选择了总共五十五个杂种。杂种的田间栽培表明,某些杂种可以通过两种栽培方法形成菌核。确定了两个新的高产菌株。这份报告将激发有关W. cocos的新思维,并促进对W. cocos中杂交育种的进一步广泛研究,W。cocos是与W. cocos杂交中鉴别杂种的更有效方案相关的新主题。

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