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Genetic Mapping of Quantitative Trait Loci (QTLs) Associated with Seminal Root Angle and Number in Three Populations of Bread Wheat (Triticum aestivum L.) with Common Parents

机译:与普通父母的三个面包小麦(Triticum aestivum L.)中的半角和数量相关的定量性状基因座(QTLs)的遗传映射

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Drought tolerance of plants is related to their root system architecture. The architecture of a mature plant root system is closely linked to seminal root growth at the seedling stage; hence, selection for root characteristics at the seedling stage may identify genotypes better suited for drought conditions. Here, the genetics of seminal root angle and number were investigated in three doubled haploid mapping populations of wheat. All populations showed significant phenotypic variation for both traits and each demonstrated transgressive segregation. In total, 34 genomic regions were associated with seminal root traits; however, most QTLs were variable from year to year and were population specific. Considering only the results consistent across both years of experiments, five QTLs for seminal root angle were identified on chromosomes 2DS, 5BS, 6AL, 7A, and 7BS, but only the 2DS QTL appeared in two of the three populations. For the seminal root number, one QTL was identified on 4BL. Correlation analyses for seminal root angle, number, and seed weight revealed interesting relationships to consider for future research. In one population, those interactions wrongfully identified QTLs for seed weight as QTLs for seminal root traits. Our findings demonstrate that seminal root angle and number are complex traits and despite high heritability, may be more difficult to unwind than previously proposed.
机译:植物的耐旱性与其根系结构有关。成熟植物根系的结构与苗期种子根的生长密切相关;因此,在苗期选择根系特征可以确定更适合干旱条件的基因型。本文对三个小麦双单倍体作图群体的种子根角度和数量的遗传学进行了研究。所有群体在这两个性状上都表现出显著的表型变异,并且每个群体都表现出越界分离。共有34个基因组区域与种子根性状相关;然而,大多数QTL每年都是可变的,并且具有群体特异性。考虑到这两个实验的结果一致,在染色体2DS、5BS、6AL、7A和7BS上鉴定了五个关于精根角的QTL,但三个群体中只有两个出现了2DS QTL。对于种子根数,在4BL上鉴定出一个QTL。种子根角度、数量和种子重量的相关分析揭示了有趣的关系,以供将来研究。在一个群体中,这些相互作用错误地将种子重量的QTL识别为种子根性状的QTL。我们的研究结果表明,精根角度和数量是复杂的性状,尽管遗传力很高,但可能比之前提出的更难解开。

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