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Identification of quantitative trait loci underlying seed protein and oil contents of soybean across multi-genetic backgrounds and environments

机译:在多基因背景和环境中鉴定大豆种子蛋白和油含量的定量性状基因座

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摘要

Seed protein and oil contents are important quantitative traits in soybean. Previously, quantitative trait loci (QTL) associated with seed protein and oil were mostly identified in single genetic background. The objective of this work was to identify QTL and their epistatic effects underlying seed protein and oil contents in three recombinant inbred line populations (two of them used one common female parent) across eight environments by composite interval mapping. Forty QTL underlying protein content and 35 QTL underlying oil content were identified. Among them, nine were universal QTL underlying protein content and four were universal QTL underlying oil content. Epistatic interactions between QTL underlying seed protein/oil and different genetic backgrounds were detected. Different pairs of epistatic interactions were observed in diverse genetic backgrounds across multi-environments. Common marker intervals were observed to simultaneously underlie seed protein and oil contents with different epistatic interactions. The results in this study suggested that a specific genotype with high oil content and low protein content might significantly affect the selection of soybean lines for high seed protein.
机译:种子蛋白和油含量是大豆重要的定量性状。以前,与种子蛋白和油脂相关的数量性状基因座(QTL)大多是在单一遗传背景下鉴定的。这项工作的目的是通过复合区间作图法确定八个环境中三个重组近交系种群(其中两个使用一个共同的雌性亲本)中的QTL及其对种子蛋白和油含量的潜在上位作用。确定了40个QTL潜在蛋白质含量和35个QTL潜在油脂含量。其中,有9个是通用QTL基础蛋白质含量,有4个是通用QTL基础油脂含量。 QTL潜在的种子蛋白质/油与不同遗传背景之间的上位相互作用被检测到。在跨多环境的不同遗传背景中观察到了不同的上位相互作用对。观察到共同的标记间隔可同时构成具有不同上位性相互作用的种子蛋白和油含量。这项研究的结果表明,高油含量和低蛋白含量的特定基因型可能会显着影响大豆用于高种子蛋白的品系的选择。

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