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Identification of genes for salt tolerance and yield-related traits in rice plants grown hydroponically and under saline field conditions by genome-wide association study

机译:基因组关联研究生长水稻植物盐耐盐性和产量相关性状的基因鉴定

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Abstract BackgroundSoil salinity is one of the main environmental conditions that affects rice production. Identifying the genetic loci that affect rice salt tolerance (ST)-related traits at the seedling stage, especially under saline field conditions, is crucial for ST rice breeding by pyramiding ST genes that act at different developmental stages.ResultsLarge phenotypic variations were observed in 708 rice accessions, and yield and its related traits were considerably limited when exposed to salt stress. In a genome-wide association study (GWAS), 2255 marker-trait association signals were detected for all measured traits, and the significant SNPs were distributed in 903 genes. Of these, 43 genes processed same functional annotation, and the gene ontology terms “biological processes” and “molecular function” with the known genes responsive to salt stress in rice. Further haplotype analysis detected 15 promising candidates significantly associated with the target traits, including five known genes and 10 novel genes. We identified seven accessions carrying favorable haplotypes of four genes significantly associated with grain yield that performed well under saline stress conditions.ConclusionsUsing high density SNPs within genes to conduct GWAS is an effective way to identify candidate genes for salt tolerance in rice. Five known genes ( OsMYB6 , OsGAMYB, OsHKT1;4 , OsCTR3 , and OsSUT1 ) and two newly identified genes ( LOC_Os02g49700 , LOC_Os03g28300 ) significantly associated with grain yield and its related traits under saline stress conditions were identified. These promising candidates provide valuable resources for validating potential ST-related genes and will facilitate rice breeding for salt tolerance through marker-assisted selection.
机译:摘要浮雕盐度是影响水稻生产的主要环境条件之一。鉴定影响幼苗阶段的水稻耐受性(ST)的遗传基因座,特别是在盐水场条件下,对于在不同发育阶段起作用的赞美ST基因是ST水稻繁殖的关键。在708中观察到培养表型变异。当暴露于盐胁迫时,水稻种植和产量及其相关性状受到相当大的限制。在基因组 - 宽的关联研究(GWAs)中,针对所有测量的性状检测2255个标记性关联信号,并且在903个基因中分布了重要的SNP。其中,43个基因加工相同的功能注释,以及基因本体论术语“生物过程”和“分子功能”与响应水稻盐胁迫的已知基因。进一步的单倍型分析检测到与靶性特征显着相关的15个有希望的候选者,包括五种已知的基因和10个新基因。我们鉴定了患有良好的四个基因的七种基因的含有良好的单倍型,其在盐水胁迫条件下表现出良好的籽粒产量。在基因中进行高密度SNP来进行GWAs是鉴定水稻中耐盐性候选基因的有效方法。鉴定了五种已知的基因(OSMYB6,OSMYB,OSMYB,OSHKT1; 4,OSCTR3和OSSUT1)和两种新鉴定的基因(LOC_OS02G49700,LOC_OS03G28300)显着与籽粒产量显着相关,其在盐水应激条件下其相关性状。这些承诺的候选人提供了验证潜在的ST相关基因的宝贵资源,并通过标记辅助选择促进耐盐性的水稻育种。

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