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Analysis of quantitative trait loci underlying the period of reproductive growth stages in soybean (Glycine max [L.] Merr.)

机译:大豆生殖生长期的定量性状基因座分析(Glycine max [L.] Merr。)

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Quantitative trait loci (QTLs) underlying reproductive growth stages are important for molecular breeding of soybeans [Glycine max (L.) Merr.]. Most of these QTLs identified so far derived from a single environment, and thus may be influenced by specific environmental conditions. In this study (from 2004 to 2005), analysis of QTLs underlying the period to reach a given reproductive growth stage was performed in three different environments (Harbin, Heilongjiang Province, China). QTL analysis was achieved with a recombination inbred line (RIL) population consisting of 153 lines. The RIL population derived from a cross between an American semi-dwarf cultivar (cv. Charleston) and a Chinese line with a short growth stage (cv. Dongnong 594). The growth stage data of soybean was recorded for each day. QTLs for all eight reproductive growth stages of soybean (R1 to R8) were analyzed by a composite interval mapping method combined with a mixed genetic model. Fifty-four QTLs displayed main effects and 56 QTL pairs showed epistatic effects. Two marker intervals (Satt173–Satt581, Satt402–Satt267), located on the linkage group O and D1a respectively, strongly influenced plant developmental processes during reproductive growth stages. The findings of this study open the possibility to modulate the structure of soybean growth stages by marker-assisted selection and pyramiding QTL analysis.
机译:生殖生长阶段的定量性状位点(QTL)对于大豆的分子育种很重要[Glycine max(L.)Merr。]。到目前为止,已确定的大多数QTL均来自单个环境,因此可能会受到特定环境条件的影响。在这项研究(2004年至2005年)中,在三个不同的环境(中国黑龙江省哈尔滨市)中对达到给定生殖生长阶段所需的QTL进行了分析。使用由153个品系组成的重组自交系(RIL)群体进行了QTL分析。 RIL种群来自美国半矮种(查尔斯顿种)和生长期较短的中国种系(东农594种)之间的杂交。每天记录大豆的生长期数据。通过复合区间作图法和混合遗传模型分析了大豆(R1至R8)所有八个生殖生长阶段的QTL。 54个QTL表现出主要作用,而56个QTL对表现出上位作用。分别位于连锁群O和D1a上的两个标记区间(Satt173–Satt581,Satt402–Satt267)强烈影响了生殖生长阶段的植物发育过程。这项研究的发现为通过标记辅助选择和金字塔QTL分析来调节大豆生长阶段的结构提供了可能性。

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