Identification of a novel salt tolerance gene in wild soybean by whole-genome sequencing

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作者
Xinpeng Qi
Man-Wah Li
Min Xie
Xin Liu
Meng Ni
Guihua Shao
Chi Song
Aldrin Kay-Yuen Yim
Ye Tao
Fuk-Ling Wong
Sachiko Isobe
Chi-Fai Wong
Kwong-Sen Wong
Chunyan Xu
Chunqing Li
Ying Wang
Rui Guan
Fengming Sun
Guangyi Fan
Zhixia Xiao
Feng Zhou
Tsui-Hung Phang
Xuan Liu
Suk-Wah Tong
Ting-Fung Chan
Siu-Ming Yiu
Satoshi Tabata
Jian Wang
Xun Xu
Hon-Ming Lam
机构
[1] School of Life Sciences and Center for Soybean Research of the State Key Laboratory of Agrobiotechnology,Department of Computer Science
[2] The Chinese University of Hong Kong,undefined
[3] BGI-Shenzhen,undefined
[4] Institute of Crop Sciences,undefined
[5] The Chinese Academy of Agricultural Sciences,undefined
[6] Kazusa DNA Research Institute,undefined
[7] The University of Hong Kong,undefined
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摘要
Using a whole-genome-sequencing approach to explore germplasm resources can serve as an important strategy for crop improvement, especially in investigating wild accessions that may contain useful genetic resources that have been lost during the domestication process. Here we sequence and assemble a draft genome of wild soybean and construct a recombinant inbred population for genotyping-by-sequencing and phenotypic analyses to identify multiple QTLs relevant to traits of interest in agriculture. We use a combination of de novo sequencing data from this work and our previous germplasm re-sequencing data to identify a novel ion transporter gene, GmCHX1, and relate its sequence alterations to salt tolerance. Rapid gain-of-function tests show the protective effects of GmCHX1 towards salt stress. This combination of whole-genome de novo sequencing, high-density-marker QTL mapping by re-sequencing and functional analyses can serve as an effective strategy to unveil novel genomic information in wild soybean to facilitate crop improvement.
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