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Dynamic quantitative trait loci underlies isoflavone accumulation in soybean seed

机译:动态数量性状基因座是大豆种子中异黄酮积累的基础

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Most of quantitative trait loci (QTL) underlying soybean seed isoflavone contents were derived from the harvest stage of plant development, which uncover the genetic effects that were expressed in earlier seed developmental stages. The aim of this study was to detect conditional QTL associated with isoflavone accumulation during the entire seed development. A total of 112 recombinant inbred lines developed from the cross between Zhongdou 27' (higher seed isoflavone content) and Jiunong 20' (lower seed isoflavone content) were used for the conditional QTL analysis of daidzein (DZ), genistein (GT), glycitein (GC) and total isoflavone (TI) accumulations through composite interval mapping with mixed genetic model. The results indicated that the number and type of QTL and their additive effects for individual and total isoflavone accumulations were different among R3 to R8 developmental stages. Three unconditional QTL and six conditional QTL for DZ, four unconditional QTL and five conditional QTL for GT, six unconditional QTL and five conditional QTL for GC, six unconditional QTL and seven conditional QTL for TI were identified at different developmental stages, respectively. Unconditional and conditional QTL that affect individual and total isoflavone accumulations exhibited multiple expression patterns, implying that some QTL are active for long period and others are transient. Two genomic regions, Satt144-Satt569 in linkage group F (LG F; chromosome 13, chr 13) for DZ, GC, GT and TI accumulations and Satt540-Sat_240 in LG M (chr 07) for TI and GC accumulations, were found to significantly affect individual and total isoflavone accumulations in multiple developmental stages, suggesting that the accumulation of soybean seed isoflavones is governed by time-dependent gene expression.
机译:大豆种子异黄酮含量的大部分定量性状位点(QTL)来自植物发育的收获阶段,该阶段揭示了种子早期发育阶段表达的遗传效应。这项研究的目的是在整个种子发育过程中检测与异黄酮积累相关的条件性QTL。利用中豆27'(种子异黄酮含量较高)和久农20'(种子异黄酮含量较低)之间的杂交产生的112个重组自交系用于大豆苷元(DZ),金雀异黄素(GT),糖蛋白的条件QTL分析(GC)和总异黄酮(TI)的积累通过混合遗传模型的复合区间作图。结果表明,Q3的数量和类型及其对个体和总异黄酮积累的累加效应在R3至R8发育阶段之间是不同的。对于DZ,分别确定了三个无条件QTL和六个条件QTL,GT的四个无条件QTL和五个条件QTL,GC的六个无条件QTL和五个条件QTL,TI的六个无条件QTL和七个条件QTL。影响个体和总异黄酮积累的无条件和有条件的QTL表现出多种表达模式,这意味着某些QTL长期处于活动状态,而其他QTL是短暂的。发现了两个基因组区域,连锁群F中的Satt144-Satt569(LG F; 13号染色体,chr 13)用于DZ,GC,GT和TI积累,而LG M(chr 07)中的Satt540-Sat_240用于TI和GC积累。异黄酮在多个发育阶段显着影响个体和总异黄酮的积累,这表明大豆种子异黄酮的积累受时间依赖性基因表达控制。

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