Genetic Dissection of the Mixing Properties of Wheat Flour (Triticum aestivum L.) Using Unconditional and Conditional QTL Mapping.

Haixia Yu, Yuling An, Aiping Wang, Xin Guan, Jichun Tian, Tangyuan Ning, Kexin Fan, Hao Li, Qianqian Liu, Dongxue Wang, Jiansheng Chen
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Abstract

Wheat (Triticum aestivum L.) flour mixing properties are essential quality parameters in the dough development process. Limited research on superior alleles for mixing properties has restricted their molecular improvement, and other factors related to the complex traits have been ignored. A molecular map of 9576 polymorphic markers in the RIL population (F8:9) (Shannong01-35/Gaocheng9411) was constructed to evaluate mixing property effects in three environments. The parents were selected with markedly distinct high-molecular-weight glutenin subunits (HMW-GS). This study not only evaluated mixing properties using conventional unconditional QTL mapping but also evaluated the relationships between protein-related traits using conditional QTL mapping. The analyses identified most additive QTLs for major mixing properties on chromosomes 1A, 1B, and 1D. Two major loci (1A.1-15 and 1D-1) associated with mixing properties have confirmed the important contributions of Glu-A1 and Glu-D1 to wheat quality at the QTL level, which were mainly affected by the gluten index. Another important locus, 1B.1-24 (associated with midline peak value and midline peak width, with high phenotypic variations explained), might represent a new variation distinct from Glu-B1. The favored alleles came from Gaocheng9411. Several mixing properties shared the same QTLs (1B.1-6 and 1A.1-15), indicating tight linkage or pleiotropism. Genotype-by-environment (G×E) interactions were also investigated in the present study. The QTL results in our study may improve our understanding of the genetic interrelationships between mixing properties and protein-related traits.

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小麦粉混合特性的遗传分析使用无条件和条件QTL映射。
小麦(Triticum aestivum L.)面粉的混合特性是面团发育过程中重要的质量参数。对混合性能优越等位基因的研究有限,限制了其分子改良,且忽略了与复杂性状相关的其他因素。构建RIL群体(F8:9)(山农01-35/高城9411)9576个多态性标记的分子图谱,评价其在三种环境下的混搭效应。所选亲本具有明显不同的高分子量谷蛋白亚基(HMW-GS)。本研究不仅利用传统的无条件QTL定位评价了混合特性,而且利用条件QTL定位评价了蛋白质相关性状之间的关系。分析发现了1A、1B和1D染色体上主要混合特性的大多数可加性qtl。两个主要的基因座(1A。与混合特性相关的1-15和1D-1)证实了Glu-A1和Glu-D1在QTL水平上对小麦品质的重要贡献,主要受面筋指数的影响。另一个重要的位点,1B。1-24(与中线峰值和中线峰宽相关,解释了高表型变异)可能代表不同于glu1 - b1的新变异。受青睐的等位基因来自高城9411。几个混合特性共享相同的qtl (1B)。1-6和1a -1 -15),表明紧密联系或多效性。本研究还研究了基因型-环境(G×E)相互作用。本研究的QTL结果可以提高我们对混合性状与蛋白质相关性状之间遗传相互关系的认识。
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来源期刊
自引率
0.00%
发文量
11
审稿时长
12 weeks
期刊介绍: Journal of Genomics publishes papers of high quality in all areas of gene, genetics, genomics, proteomics, metabolomics, DNA/RNA, computational biology, bioinformatics, and other relevant areas of research and application. Articles published by the journal are rigorously peer-reviewed. Types of articles include: Research paper, Short research communication, Review or mini-reviews, Commentary, Database, Software.
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