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Genome-wide association study and gene set analysis for understanding candidate genes involved in salt tolerance at the rice seedling stage

机译:基因组关联研究和基因集分析理解稻米幼苗阶段耐盐性基因的候选基因

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摘要

Salt is the major factor limiting crop productivity in saline soils and is controlled by various genes. The development of salt-tolerant rice through molecular breeding methods is important to meet the needs of rice breeding. We used 295 accessions to perform a genome-wide association study (GWAS) of salt tolerance-related phenotypes in rice at the seedling stage and obtained 93 candidate genes with high association peaks across six phenotypes. We constructed a protein interaction network using the candidate genes identified here, and 33 genes were associated. Based on the expression patterns, we found that most of these genes showed a different expression level under control and salt stress conditions. In addition, haplotype network and sequence analysis of one 'key' gene, a transcription factor (Os12g0176700) encoding a SWIRM domain-containing protein, in the interaction network was investigated to explore its possible role in the network. Our study revealed candidate salt tolerance-related genes in rice at the seedling stage, and demonstrated the feasibility of using GWAS to identify genetic architecture underlying salt tolerance. The data generated here may provide resources for molecular breeding and functional analysis of salt tolerance in rice seedlings.
机译:盐是限制盐水土壤中作物生产率的主要因素,由各种基因控制。通过分子育种方法的耐盐性水稻的开发对于满足水稻育种的需求是重要的。我们使用了295次探讨在幼苗阶段进行水稻中的耐盐相关表型的基因组 - 宽相关性研究,并在六种表型上获得了高结合峰的93个候选基因。我们使用此处鉴定的候选基因构建蛋白质相互作用网络,并且33个基因均相关。基于表达模式,我们发现大多数这些基因在对照和盐胁迫条件下显示出不同的表达水平。此外,研究了单倍型网络和一个“键”基因的序列分析,在交互网络中进行了编码含晶域的蛋白质的转录因子(OS12G0176700),以探讨其在网络中的作用。我们的研究揭示了幼苗阶段水稻中候选耐盐性相关基因,并证明了使用GWA识别遗传耐盐耐受性遗传建筑的可行性。这里产生的数据可以提供水稻幼苗耐盐性和耐盐性分析的资源。

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