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双孢蘑菇双孢变种的育种进展:已取得的进展以及面临的技术和法律障碍。

Developments in breeding of Agaricus bisporus var. bisporus: progress made and technical and legal hurdles to take.

作者信息

Sonnenberg Anton S M, Baars Johan J P, Gao Wei, Visser Richard G F

机构信息

Plant Breeding, Wageningen University and Research, 6708 PB, Wageningen, Netherlands.

Institute of Agricultural Resources and Regional Planning of CAAS, Zhongguancun South Street 12, Beijing, 100081, China.

出版信息

Appl Microbiol Biotechnol. 2017 Mar;101(5):1819-1829. doi: 10.1007/s00253-017-8102-2. Epub 2017 Jan 28.

Abstract

True breeding of button mushrooms has hardly been done in the last decades, despite this species being one of the most cultivated mushrooms worldwide. Research done in the last 20 years has identified and characterised new germplasm and improved our understanding of the genetic base for some traits. A substantial collection of wild-collected strains is now available and partly characterised for a number of important traits such as disease resistance and yield. Most of the variations found in a number of important agronomic traits have a considerable heritability and are thus useful for breeding. Genetic marker technology has also developed considerably for this mushrooms in the last decade and used to identify quantitative trait loci (QTL) for important agronomic traits. This progress has, except for one example, not resulted so far into new commercially varieties. One of the reasons lies in the typical life cycle of the button mushroom Agaricus bisporus var. bisporus which hampers breeding. Joint investment is needed to solve technical problems in breeding. Special attention is needed for the protection of new varieties. Due to its typical life cycle, it is very easy to generate so called "look-a-likes" from protected cultivars by screening fertile single spore cultures. A consensus has been reached within the mushroom (breeding) industry to consider this method as the generation of essentially derived varieties as defined in plant breeding.

摘要

尽管双孢蘑菇是全球种植最广泛的蘑菇品种之一,但在过去几十年里,真正意义上的双孢蘑菇育种工作却几乎没有开展。过去20年的研究已经鉴定并描述了新的种质资源,增进了我们对某些性状遗传基础的理解。现在已有大量从野外采集的菌株,并且部分菌株已针对抗病性和产量等一些重要性状进行了特征描述。在许多重要农艺性状中发现的大多数变异具有相当高的遗传力,因此对育种很有用。在过去十年中,双孢蘑菇的遗传标记技术也有了很大发展,并用于鉴定重要农艺性状的数量性状位点(QTL)。除了一个例子外,到目前为止,这些进展尚未培育出新的商业品种。原因之一在于双孢蘑菇双孢变种典型的生命周期,这阻碍了育种工作。需要联合投资来解决育种中的技术问题。新品种保护需要特别关注。由于其典型的生命周期,通过筛选可育的单孢子培养物,很容易从受保护的栽培品种中培育出所谓的“相似品种”。蘑菇(育种)行业已达成共识,将这种方法视为植物育种中定义的实质上派生品种的培育方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/935e/5309338/44b492e66210/253_2017_8102_Fig1_HTML.jpg

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