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QTL mapping of protein content and seed characteristics under water-stress conditions in sunflower

机译:向日葵水分胁迫条件下蛋白质含量和种子特性的QTL定位

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摘要

Thehe purpose of this study was to identify genomic regions controlling seed protein content, kernel and hull weights, and seed density in water-stress conditions in sunflower (Helianthus annuus L.). The experiments consisted of a split-plot design (water treatment and recombinant inbred lines) with three blocks in two environments (greenhouse and field). High significant variation was observed between genotypes for all traits as well as for water treatment genotype interaction. Several specific and nonspecific QTLs were detected for all traits under well-watered and water-stress conditions. Two SSR markers, ORS671_2 and HA2714, linked to protein content were identified that have no interaction with water treatments in greenhouse conditions. We also detected the E35M60_4 marker associated with kernel weight that had no interaction with water treatments. A specific QTL for protein content was detected with important phenotypic variance (17%) under water-stress conditions. Overlapping QTLs for protein content and seed density were identified in linkage group 15. This region probably has a peliotropic effect on protein content and seed density. QTLs for protein content colo-cated with grain weight traits were also identified.
机译:这项研究的目的是确定在向日葵(Helianthus annuus L.)的水分胁迫条件下控制种子蛋白质含量,仁和壳重以及种子密度的基因组区域。实验由分块设计(水处理和重组自交系)组成,在两个环境(温室和田地)中具有三个块。观察到所有性状的基因型之间以及水处理基因型相互作用之间的显着差异。在浇水充足和缺水的条件下,检测到所有性状的几个特异性和非特异性QTL。确定了两个与蛋白质含量相关的SSR标记ORS671_2和HA2714,它们与温室条件下的水处理没有相互作用。我们还检测到与粒重相关的E35M60_4标记,该标记与水处理没有相互作用。在水分胁迫条件下,检测到蛋白质含量的特定QTL,且表型具有重要的表型变异(17%)。在连锁群15中鉴定出了蛋白质含量和种子密度的重叠QTL。该区域可能对蛋白质含量和种子密度具有亲油作用。还确定了与谷物粒重性状相关的蛋白质含量的QTL。

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