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利用数量性状位点作图对香菇生殖体相关性状进行遗传剖析。

Genetic dissection of fruiting body-related traits using quantitative trait loci mapping in Lentinula edodes.

机构信息

Institute of Applied Mycology, Huazhong Agricultural University, Wuhan, 430070, Hubei Province, People's Republic of China.

Institute of Bast Fiber Crops, Chinese Academy of Agricultural Sciences, Changsha, 410205, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2016 Jun;100(12):5437-52. doi: 10.1007/s00253-016-7347-5. Epub 2016 Feb 15.

Abstract

To provide a better understanding of the genetic architecture of fruiting body formation of Lentinula edodes, quantitative trait loci (QTLs) mapping was employed to uncover the loci underlying seven fruiting body-related traits (FBRTs). An improved L. edodes genetic linkage map, comprising 572 markers on 12 linkage groups with a total map length of 983.7 cM, was constructed by integrating 82 genomic sequence-based insertion-deletion (InDel) markers into a previously published map. We then detected a total of 62 QTLs for seven target traits across two segregating testcross populations, with individual QTLs contributing 5.5 %-30.2 % of the phenotypic variation. Fifty-three out of the 62 QTLs were clustered in six QTL hotspots, suggesting the existence of main genomic regions regulating the morphological characteristics of fruiting bodies in L. edodes. A stable QTL hotspot on MLG2, containing QTLs for all investigated traits, was identified in both testcross populations. QTLs for related traits were frequently co-located on the linkage groups, demonstrating the genetic basis for phenotypic correlation of traits. Meta-QTL (mQTL) analysis was performed and identified 16 mQTLs with refined positions and narrow confidence intervals (CIs). Nine genes, including those encoding MAP kinase, blue-light photoreceptor, riboflavin-aldehyde-forming enzyme and cyclopropane-fatty-acyl-phospholipid synthase, and cytochrome P450s, were likely to be candidate genes controlling the shape of fruiting bodies. The study has improved our understanding of the genetic architecture of fruiting body formation in L. edodes. To our knowledge, this is the first genome-wide QTL detection of FBRTs in L. edodes. The improved genetic map, InDel markers and QTL hotspot regions revealed here will assist considerably in the conduct of future genetic and breeding studies of L. edodes.

摘要

为了更好地了解香菇子实体形成的遗传结构,采用数量性状位点(QTL)作图法来揭示与 7 个子实体相关性状(FBRTs)相关的基因座。通过整合 82 个基于基因组序列的插入/缺失(InDel)标记到先前发表的图谱中,构建了一个改良的香菇遗传连锁图谱,该图谱由 12 个连锁群的 572 个标记组成,总图谱长度为 983.7cM。然后,我们在两个分离的测交群体中检测到了 7 个目标性状的总共 62 个 QTL,单个 QTL 对表型变异的贡献率为 5.5%-30.2%。在 62 个 QTL 中,有 53 个聚集在 6 个 QTL 热点区域,这表明存在主要的基因组区域来调节香菇子实体的形态特征。在两个测交群体中都鉴定到了位于 MLG2 上的一个稳定的 QTL 热点,该 QTL 包含所有研究性状的 QTL。相关性状的 QTL 经常位于连锁群上共定位,这表明了性状表型相关性的遗传基础。进行了元 QTL(mQTL)分析,鉴定出了 16 个具有精细位置和狭窄置信区间(CIs)的 mQTL。包括编码 MAP 激酶、蓝光光受体、核黄素醛形成酶和环丙烷脂肪酸磷脂合酶以及细胞色素 P450s 的 9 个基因可能是控制子实体形状的候选基因。这项研究提高了我们对香菇子实体形成遗传结构的认识。据我们所知,这是首次在香菇中进行全基因组 FBRTs 的 QTL 检测。这里揭示的改良遗传图谱、InDel 标记和 QTL 热点区域将极大地有助于香菇未来的遗传和育种研究。

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