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Identification of QTLs for yield and agronomic traits in rice under stagnant flooding conditions

机译:停滞洪水条件下水稻产量和农艺性状的QTL鉴定

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BackgroundStagnant flooding, where water of 25–50?cm remains until harvest time, is a major problem in rainfed lowland areas. Most of the Sub1 varieties, which can withstand around 2 weeks of complete submergence, perform poorly in these conditions. Hence, varieties tolerant of stagnant flooding are essential. ResultsThis paper presents the first study to map QTLs associated with tolerance to stagnant flooding, along with a parallel study under normal irrigation, using an Fsub7/sub mapping population consisting of 148 RILs derived from a cross of Ciherang-Sub1 and the stagnant-flooding tolerant line IR10F365. Phenotypic data was collected for 15 key traits under both environments. Additionally, survival rate was measured under stress conditions. Genotyping was performed using the Illumina Infinium genotyping platform with a 6?K SNP chip, resulting in 469 polymorphic SNPs. Under stress and irrigated conditions, 38 and 46 QTLs were identified, respectively. Clusters of QTLs were detected in both stress and normal conditions, especially on chromosomes 3 and 5. ConclusionsUnique and common QTLs were identified and their physiological consequences are discussed. These beneficial QTLs can be used as targets for molecular breeding and can be further investigated to understand the underlying molecular mechanisms involved in stagnant flooding tolerance in rice.
机译:背景普通洪水,其中25-50厘米的水仍然在收获时间,是雨量低地地区的一个主要问题。大多数Sub1品种,它可以承受2周的完全淹没,在这些条件下表现不佳。因此,耐滞洪水的品种是必不可少的。结果Storishis介绍了将与耐受性洪水有公差相关的第一研究,以及正常灌溉的平行研究,使用由来自Ciherang-sub1十字架的148个rils组成的F 7 映射群和停滞的耐腐蚀线IR10F365。在两种环境下收集了15个关键性状的表型数据。另外,在胁迫条件下测量存活率。使用Illumina Infinium基因分型平台进行基因分型,其中6°K SNP芯片,导致469个多态性SNP。在应力和灌溉条件下,分别鉴定38和46 QTL。在应力和正常情况下检测QTL的簇,特别是在染色体3和5上。确定了核查局和常见的QTL,并讨论了它们的生理后果。这些有益的QTL可以用作分子育种的靶标,并且可以进一步研究以了解稻米上停滞耐水耐受性的潜在分子机制。

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