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通过低覆盖度重测序进行快速基因分型以构建真菌遗传连锁图谱:以香菇为例

Rapid genotyping by low-coverage resequencing to construct genetic linkage maps of fungi: a case study in Lentinula edodes.

作者信息

Au Chun Hang, Cheung Man Kit, Wong Man Chun, Chu Astley Kin Kan, Law Patrick Tik Wan, Kwan Hoi Shan

机构信息

School of Life Sciences, The Chinese University of Hong Kong, Shatin, Hong Kong.

出版信息

BMC Res Notes. 2013 Aug 2;6:307. doi: 10.1186/1756-0500-6-307.

Abstract

BACKGROUND

Genetic linkage maps are important tools in breeding programmes and quantitative trait analyses. Traditional molecular markers used for genotyping are limited in throughput and efficiency. The advent of next-generation sequencing technologies has facilitated progeny genotyping and genetic linkage map construction in the major grains. However, the applicability of the approach remains untested in the fungal system.

FINDINGS

Shiitake mushroom, Lentinula edodes, is a basidiomycetous fungus that represents one of the most popular cultivated edible mushrooms. Here, we developed a rapid genotyping method based on low-coverage (~0.5 to 1.5-fold) whole-genome resequencing. We used the approach to genotype 20 single-spore isolates derived from L. edodes strain L54 and constructed the first high-density sequence-based genetic linkage map of L. edodes. The accuracy of the proposed genotyping method was verified experimentally with results from mating compatibility tests and PCR-single-strand conformation polymorphism on a few known genes. The linkage map spanned a total genetic distance of 637.1 cM and contained 13 linkage groups. Two hundred sequence-based markers were placed on the map, with an average marker spacing of 3.4 cM. The accuracy of the map was confirmed by comparing with previous maps the locations of known genes such as matA and matB.

CONCLUSIONS

We used the shiitake mushroom as an example to provide a proof-of-principle that low-coverage resequencing could allow rapid genotyping of basidiospore-derived progenies, which could in turn facilitate the construction of high-density genetic linkage maps of basidiomycetous fungi for quantitative trait analyses and improvement of genome assembly.

摘要

背景

遗传连锁图谱是育种计划和数量性状分析中的重要工具。用于基因分型的传统分子标记在通量和效率方面存在局限性。新一代测序技术的出现推动了主要谷物后代的基因分型和遗传连锁图谱构建。然而,该方法在真菌系统中的适用性仍未得到验证。

研究结果

香菇(Lentinula edodes)是一种担子菌纲真菌,是最受欢迎的栽培食用菌之一。在此,我们基于低覆盖度(约0.5至1.5倍)全基因组重测序开发了一种快速基因分型方法。我们使用该方法对来自香菇菌株L54的20个单孢分离株进行基因分型,并构建了首个基于序列的香菇高密度遗传连锁图谱。通过交配相容性测试结果以及对一些已知基因的PCR-单链构象多态性实验验证了所提出的基因分型方法的准确性。该连锁图谱的总遗传距离为637.1厘摩,包含13个连锁群。图谱上放置了200个基于序列的标记,平均标记间距为3.4厘摩。通过与先前图谱比较已知基因(如matA和matB)的位置,证实了该图谱的准确性。

结论

我们以香菇为例,证明了低覆盖度重测序可实现担孢子衍生后代的快速基因分型,进而有助于构建担子菌纲真菌的高密度遗传连锁图谱,用于数量性状分析和基因组组装的改进。

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