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利用美国农业部微型核心种质库对水稻的五个耐冷性状进行评估及全基因组关联研究定位

Assessment of Five Chilling Tolerance Traits and GWAS Mapping in Rice Using the USDA Mini-Core Collection.

作者信息

Schläppi Michael R, Jackson Aaron K, Eizenga Georgia C, Wang Aiju, Chu Chengcai, Shi Yao, Shimoyama Naoki, Boykin Debbie L

机构信息

Department of Biological Sciences, Marquette University, MilwaukeeWI, United States.

Dale Bumpers National Rice Research Center, United States Department of Agriculture - Agricultural Research Service, StuttgartAR, United States.

出版信息

Front Plant Sci. 2017 Jun 8;8:957. doi: 10.3389/fpls.2017.00957. eCollection 2017.

Abstract

Rice ( L.) is often exposed to cool temperatures during spring planting in temperate climates. A better understanding of genetic pathways regulating chilling tolerance will enable breeders to develop varieties with improved tolerance during germination and young seedling stages. To dissect chilling tolerance, five assays were developed; one assay for the germination stage, one assay for the germination and seedling stage, and three for the seedling stage. Based on these assays, five chilling tolerance indices were calculated and assessed using 202 accessions from the Rice Mini-Core (RMC) collection. Significant differences between RMC accessions made the five indices suitable for genome-wide association study (GWAS) based quantitative trait loci (QTL) mapping. For young seedling stage indices, and subspecies clustered into chilling tolerant and chilling sensitive accessions, respectively, while both subspecies had similar low temperature germinability distributions. subspecies were shown to have chilling acclimation potential. GWAS mapping uncovered 48 QTL at 39 chromosome regions distributed across all 12 rice chromosomes. Interestingly, there was no overlap between the germination and seedling stage QTL. Also, 18 QTL and 32 QTL were in regions discovered in previously reported bi-parental and GWAS based QTL mapping studies, respectively. Two novel low temperature seedling survivability (LTSS)-QTL, and , were not in a previously reported QTL region. QTL with strong effect alleles identified in this study will be useful for marker assisted breeding efforts to improve chilling tolerance in rice cultivars and enhance gene discovery for chilling tolerance.

摘要

在温带气候下,水稻(Oryza sativa L.)在春季种植时常常会遭遇低温。更好地了解调控耐冷性的遗传途径,将有助于育种者培育出在发芽和幼苗期耐冷性更强的品种。为了剖析耐冷性,开发了五种测定方法:一种用于发芽期,一种用于发芽和幼苗期,三种用于幼苗期。基于这些测定方法,计算并评估了五个耐冷性指标,使用的材料是来自水稻微型核心(RMC)种质库的202份材料。RMC种质间的显著差异使得这五个指标适用于基于全基因组关联研究(GWAS)的数量性状位点(QTL)定位。对于幼苗期指标,籼稻和粳稻亚种分别聚类为耐冷和冷敏感材料,而两个亚种的低温发芽能力分布相似。粳稻亚种显示出具有冷驯化潜力。GWAS定位在分布于水稻所有12条染色体上的39个染色体区域发现了48个QTL。有趣的是,发芽期和幼苗期QTL之间没有重叠。此外,分别有18个QTL和32个QTL位于先前报道的基于双亲杂交和GWAS的QTL定位研究发现的区域。两个新的低温幼苗存活率(LTSS)-QTL,qLTSS7-1和qLTSS11-1,不在先前报道的QTL区域。本研究中鉴定出的具有强效应等位基因的QTL,将有助于标记辅助育种,以提高水稻品种的耐冷性,并加强耐冷性的基因发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c30a/5463297/80549957767f/fpls-08-00957-g001.jpg

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