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Integrated RNA Sequencing and QTL Mapping to Identify Candidate Genes from Oryza rufipogon Associated with Salt Tolerance at the Seedling Stage

机译:集成的R​​NA测序和QTL映射以鉴定来自稻米的水稻与幼苗期耐盐性相关的候选基因

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摘要

Soil salinity is a common abiotic stress affecting crop productivity. To identify favorable alleles from wild rice (Oryza rufipogon Griff.) that enhance salinity tolerance of rice (O. sativa L.), a set of introgression lines (ILs) were developed. The ILs were derived from an O. rufipogon accession collected from Chaling (Hunan Province, China) as the donor, and a widely grown O. sativa indica cultivar 93-11 as the recipient. Through evaluating the salt tolerance of 285 ILs at the seedling stage, a total of 10 quantitative trait loci (QTLs) related to salt tolerance were identified on chromosomes 1, 5, 7 and 9–12, with individual QTLs explaining 2–8% of phenotypic variance. The O. rufipogon-derived alleles at four QTLs improved salt tolerance in the 93-11 background. At the same time, a salt-tolerant IL, 9L136, was identified and characterized. Compared with the recipient parent 93-11, a total of 1,391 differentially expressed genes (DEGs) were detected specifically in 9L136 between salt stress and normal condition through genome-wide expression analysis. Of these, four DEGs located in the QTL regions carried by 9L136, suggesting that the four genes might be candidates associated with salt tolerance. Both the highly salt-tolerant ILs and the favorable O. rufipogon-derived QTLs identified in the present study will provide new genetic resources for improving the resistance of cultivated rice against salinity stress using molecular breeding strategies in the future.
机译:土壤盐分是影响作物生产力的常见非生物胁迫。为了从野生稻(Oryza rufipogon Griff。)中鉴定有利于提高水稻(O. sativa L.)耐盐性的等位基因,开发了一套基因渗入系(ILs)。 ILs来自作为来源的从茶陵(中国湖南省)收集的红景天O种,作为受体的是广泛生长的sat稻93-11。通过评估幼苗期285个IL的耐盐性,在染色体1、5、7和9-12上共鉴定了10个与耐盐性相关的数量性状位点(QTL),单个QTL解释了2-8%的耐盐性。表型差异。在93-11背景中,四个QTL处的红景天来源的等位基因提高了耐盐性。同时,鉴定并鉴定了耐盐性IL 9L136。与受体亲本93-11相比,通过全基因组表达分析,在盐胁迫和正常条件下的9L136中共检测到总共1,391个差异表达基因(DEG)。其中,9L136携带QTL区域中的四个DEG,这四个基因可能是与耐盐性相关的候选基因。在本研究中确定的高度耐盐的IL和有利的麦冬红景天QTLs都将为今后使用分子育种策略提高栽培稻对盐分胁迫的抗性提供新的遗传资源。

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