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通过对一个重组自交系群体进行重测序更新谷子基因组组装及九个关键农艺性状的基因定位

Updated foxtail millet genome assembly and gene mapping of nine key agronomic traits by resequencing a RIL population.

作者信息

Ni Xuemei, Xia Qiuju, Zhang Houbao, Cheng Shu, Li Hui, Fan Guangyu, Guo Tao, Huang Ping, Xiang Haitao, Chen Qingchun, Li Ning, Zou Hongfeng, Cai Xuemei, Lei Xuejing, Wang Xiaoming, Zhou Chengshu, Zhao Zhihai, Zhang Gengyun, Du Guohua, Cai Wei, Quan Zhiwu

机构信息

BGI-Shenzhen, Shenzhen 518083, China.

State Key Laboratory of Agricultural Genomics, BGI-Shenzhen, Shenzhen 518083, China.

出版信息

Gigascience. 2017 Feb 1;6(2):1-8. doi: 10.1093/gigascience/giw005.

Abstract

Foxtail millet (Setaria italica) provides food and fodder in semi-arid regions and infertile land. Resequencing of 184 foxtail millet recombinant inbred lines (RILs) was carried out to aid essential research on foxtail millet improvement. A total 483 414 single nucleotide polymorphisms were determined. Bin maps were constructed based on the RILs' recombination data. Based on the high-density bin map, we updated Zhanggu reference with 416 Mb after adding 16 Mb unanchored scaffolds and Yugu reference with some assembly error correction and 3158 gaps filled. Quantitative trait loci (QTL) mapping of nine agronomic traits was done based on this RIL population, five of which were controlled by a single gene. Meanwhile, two QTLs were found for plant height, and a candidate gene showed 89% identity to the known rice gibberellin-synthesis gene sd1. Three QTLs were found for the trait of heading date. The whole genome resequencing and QTL mapping provided important tools for foxtail millet research and breeding. Resequencing of the RILs could also provide an effective way for high-quality genome assembly and gene identification.

摘要

谷子(Setaria italica)在半干旱地区和贫瘠土地上提供粮食和饲料。对184个谷子重组自交系(RILs)进行重测序,以辅助谷子改良的基础研究。共确定了483414个单核苷酸多态性。基于RILs的重组数据构建了连锁图谱。基于高密度连锁图谱,在添加了16 Mb未锚定支架后,我们更新了张谷参考基因组,使其达到416 Mb,并对豫谷参考基因组进行了一些组装错误校正和填补了3158个缺口。基于该RIL群体对9个农艺性状进行了数量性状位点(QTL)定位,其中5个由单个基因控制。同时,发现了两个与株高相关的QTL,一个候选基因与已知水稻赤霉素合成基因sd1的同源性为89%。发现了3个与抽穗期性状相关的QTL。全基因组重测序和QTL定位为谷子研究和育种提供了重要工具。对RILs进行重测序也可为高质量基因组组装和基因鉴定提供有效途径。

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