首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >QTL mapping for quantities of protein fractions in bread wheat (Triticum aestivum L.)
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QTL mapping for quantities of protein fractions in bread wheat (Triticum aestivum L.)

机译:面包小麦(Triticum aestivum L.)中蛋白质组分数量的QTL定位

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One of the key targets of breeding programs in bread wheat is to improve the end-use quality. The relationships between quantities of protein fractions and dough rheological characters have been well established, but there is little information on the genetic control of quantities of protein fractions. Two hundred and forty F-6 recombinant inbred lines derived from a cross between two Chinese wheat cultivars, PH82-2 and Neixiang 188, were sown at Jiaozuo in Henan province in the 2005-2006 and 2006-2007 cropping seasons, and inclusive composite interval mapping was used to dissect main effect quantitative trait loci (M-QTLs) and digenic epistatic QTLs (E-QTLs) for quantities of protein fractions. A total of 55 M-QTLs and 77 pairs of E-QTLs affecting the quantities of protein fractions including GLU-A1 (QGA1), GLU-B1 (QGB1), GLU-D1 (QGD1), HMW-GS (QHMW), GLU-A3 (QGA3), GLU-B3 (QGB3), LMW-GS (QLMW), glutenin (QGLU) and the ratio of the quantity of glutenin to those of gliadin were identified, with M-QTLs contributing 39.3-95.6% of the phenotypic variance explained (PVE), and E-QTLs accounting for 1.4-33.5% of the PVE. Among the M-QTLs, 33 were consistent in two seasons and in the mean value of two seasons with similar effects in both magnitude and direction, including major genes on HMW and LMW glutenin loci linked to Sec1 and Glu-B1c, Glu-D1d, Glu-A3a, and grain hardness locus Ha, indicating that these genes were the most important determinants of gluten strength, and they might have significant effects on dough properties not only through effects on allelic composition, but also by influencing quantities of protein fractions. The effects of E-QTLs were more influenced by environments, compared with those of M-QTLs, with only two pairs of E-QTLs consistent in two seasons and in the mean value of two seasons. The M-QTLs were detected in 12 marker intervals, all of which involved E-QTLs on quantities of protein fractions, whereas only 40 of 77 pairs of E-QTLs involved intervals in which M-QTLs were detected. The results indicated that besides main effects, epistatic effects were also important factors in determining quantities of protein fractions in wheat.
机译:面包小麦育种计划的主要目标之一是提高最终使用质量。蛋白质级分数量与面团流变特性之间的关系已得到很好的建立,但是关于蛋白质级分数量遗传控制的信息很少。 2005-2006年和2006-2007年的种植季节,在河南焦作播种了来自两个中国小麦品种PH82-2和内乡188的杂交的F-6重组自交系,包括复合间隔通过作图可以剖析主要效应的数量性状位点(M-QTL)和双基因上位性QTL(E-QTLs)的蛋白质片段数量。共有55个M-QTL和77对E-QTL影响蛋白质组分的数量,包括GLU-A1(QGA1),GLU-B1(QGB1),GLU-D1(QGD1),HMW-GS(QHMW),GLU确定了-A3(QGA3),GLU-B3(QGB3),LMW-GS(QLMW),谷蛋白(QGLU)以及谷蛋白与麦醇溶蛋白的比例,其中M-QTL占39.3-95.6%表型差异解释(PVE),而E-QTL占PVE的1.4-33.5%。在M-QTL中,有33个在两个季节中均保持一致,并且在两个季节中均值均在大小和方向上具有相似的影响,包括与Sec1和Glu-B1c,Glu-D1d, Glu-A3a和谷物硬度位点Ha表示这些基因是面筋强度的最重要决定因素,它们不仅可能通过影响等位基因组成,而且还可以通过影响蛋白质组分的数量而对面团特性产生重大影响。与M-QTL相比,E-QTL的影响受环境的影响更大,在两个季节中只有两对E-QTL保持一致,两个季节的平均值相同。在12个标记间隔中检测到M-QTL,所有这些标记间隔都涉及蛋白质级分数量的E-QTL,而77对E-QTL中只有40个涉及检测到M-QTL的间隔。结果表明,除主要作用外,上位性作用也是决定小麦蛋白质组分含量的重要因素。

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