Genetic diversity and structure of core collection of winter mushroom (Flammulina velutipes) developed by genomic SSR markers.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2017-07-03 eCollection Date: 2018-01-01 DOI:10.1186/s41065-017-0038-0
Xiao Bin Liu, Jing Li, Zhu L Yang
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引用次数: 27

Abstract

Background: A core collection is a subset of an entire collection that represents as much of the genetic diversity of the entire collection as possible. The establishment of a core collection for crops is practical for efficient management and use of germplasm. However, the establishment of a core collection of mushrooms is still in its infancy, and no established core collection of the economically important species Flammulina velutipes has been reported.

Results: We established the first core collection of F. velutipes, containing 32 strains based on 81 genetically different F. veltuipes strains. The allele retention proportion of the core collection for the entire collection was 100%. Moreover, the genetic diversity parameters (the effective number of alleles, Nei's expected heterozygosity, the number of observed heterozygosity, and Shannon's information index) of the core collection showed no significant differences from the entire collection (p > 0.01). Thus, the core collection is representative of the genetic diversity of the entire collection. Genetic structure analyses of the core collection revealed that the 32 strains could be clustered into 6 groups, among which groups 1 to 3 were cultivars and groups 4 to 6 were wild strains. The wild strains from different locations harbor their own specific alleles, and were clustered stringently in accordance with their geographic origins. Genetic diversity analyses of the core collection revealed that the wild strains possessed greater genetic diversity than the cultivars.

Conclusion: We established the first core collection of F. velutipes in China, which is an important platform for efficient breeding of this mushroom in the future. In addition, the wild strains in the core collection possess favorable agronomic characters and produce unique bioactive compounds, adding value to the platform. More attention should be paid to wild strains in further strain breeding.

Abstract Image

Abstract Image

Abstract Image

利用基因组SSR标记开发冬菇核心种质的遗传多样性和结构。
背景:核心集合是整个集合的一个子集,它尽可能多地代表整个集合的遗传多样性。建立农作物核心种质库,有利于种质资源的有效管理和利用。然而,建立一个蘑菇的核心收藏仍处于起步阶段,并没有建立核心收藏的重要经济物种金针菇已被报道。结果:建立了第一个绒毛乳杆菌核心菌群,从81株遗传差异的绒毛乳杆菌中筛选出32株。核心种质的等位基因保留率为100%。核心材料的遗传多样性参数(有效等位基因数、Nei’s期望杂合度、观察杂合度、Shannon’s信息指数)与整个材料的差异均不显著(p > 0.01)。因此,核心集合体代表了整个集合体的遗传多样性。遗传结构分析表明,32个菌株可聚为6个类群,其中第1 ~ 3组为栽培菌株,第4 ~ 6组为野生菌株。来自不同地点的野生菌株都有自己的特定等位基因,并严格按照其地理起源聚集。遗传多样性分析表明,野生品系比栽培品系具有更大的遗传多样性。结论:建立了国内首个黄花菌核心种质,为今后高效选育黄花菌提供了重要平台。此外,核心收集的野生菌株具有良好的农艺性状和独特的生物活性化合物,为平台增加了价值。在进一步的品系育种中,应更加重视野生品系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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