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通过设计的QTL聚合同时改良水稻耐盐性并进行遗传剖析

Simultaneous Improvement and Genetic Dissection of Salt Tolerance of Rice ( L.) by Designed QTL Pyramiding.

作者信息

Pang Yunlong, Chen Kai, Wang Xiaoqian, Wang Wensheng, Xu Jianlong, Ali Jauhar, Li Zhikang

机构信息

Institute of Crop Sciences, National Key Facility for Crop Gene Resources and Genetic Improvement, Chinese Academy of Agricultural SciencesBeijing, China.

International Rice Research InstituteMetro Manila, Philippines.

出版信息

Front Plant Sci. 2017 Jul 20;8:1275. doi: 10.3389/fpls.2017.01275. eCollection 2017.

Abstract

Breeding of multi-stress tolerant rice varieties with higher grain yields is the best option to enhance the rice productivity of abiotic stresses prone areas. It also poses the greatest challenge to plant breeders to breed rice varieties for such stress prone conditions. Here, we carried out a designed QTL pyramiding experiment to develop high yielding "Green Super Rice" varieties with significantly improved tolerance to salt stress and grain yield. Using the F population derived from a cross between two selected introgression lines, we were able to develop six mostly homozygous promising high yielding lines with significantly improved salt tolerance and grain yield under optimal and/or saline conditions in 3 years. Simultaneous mapping using the same breeding population and tunable genotyping-by-sequencing technology, we identified three QTL affecting salt injury score and leaf chlorophyll content. By analyzing 32M SNP data of the grandparents and graphical genotypes of the parents, we discovered 87 positional candidate genes for salt tolerant QTL. According to their functional annotation, we inferred the most likely candidate genes. We demonstrated that designed QTL pyramiding is a powerful strategy for simultaneous improvement and genetic dissection of complex traits in rice.

摘要

培育具有更高产量且耐多种胁迫的水稻品种是提高易受非生物胁迫地区水稻生产力的最佳选择。对于植物育种者来说,培育适合此类胁迫环境的水稻品种也面临着最大的挑战。在此,我们开展了一项设计好的QTL聚合实验,以培育出对盐胁迫和籽粒产量耐受性显著提高的高产“绿色超级稻”品种。利用两个选定渗入系杂交产生的F群体,我们在3年内培育出了6个大多为纯合的有前景的高产株系,这些株系在最佳和/或盐胁迫条件下对盐胁迫和籽粒产量有显著改善。使用相同的育种群体和可调的简化基因组测序技术进行同步定位,我们鉴定出了3个影响盐害评分和叶片叶绿素含量的QTL。通过分析祖父母的32M SNP数据和父母的图形基因型,我们发现了87个耐盐QTL的位置候选基因。根据它们的功能注释,我们推断出了最有可能的候选基因。我们证明了设计QTL聚合是一种在水稻中同时改良复杂性状和进行遗传剖析的有效策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6061/5517400/3e3d5fa4e658/fpls-08-01275-g001.jpg

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