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联合元基因组分析揭示了面包小麦(Triticum aestivum L.)籽粒膳食纤维含量的候选基因。

Combined meta-genomics analyses unravel candidate genes for the grain dietary fiber content in bread wheat (Triticum aestivum L.).

机构信息

INRA-University Blaise Pascal, UMR1095 Génétique, Diversité et Ecophysiologie des Céréales, 234 Avenue du Brézet, 63100, Clermont-Ferrand, France.

出版信息

Funct Integr Genomics. 2011 Mar;11(1):71-83. doi: 10.1007/s10142-010-0183-2. Epub 2010 Aug 10.

Abstract

Grain dietary fiber content in wheat not only affects its end use and technological properties including milling, baking and animal feed but is also of great importance for health benefits. In this study, integration of association genetics (seven detected loci on chromosomes 1B, 3A, 3D, 5B, 6B, 7A, 7B) and meta-QTL (three consensus QTL on chromosomes 1B, 3D and 6B) analyses allowed the identification of seven chromosomal regions underlying grain dietary fiber content in bread wheat. Based either on a diversity panel or on bi-parental populations, we clearly demonstrate that this trait is mainly driven by a major locus located on chromosome 1B associated with a log of p value >13 and a LOD score >8, respectively. In parallel, we identified 73 genes differentially expressed during the grain development and between genotypes with contrasting grain fiber contents. Integration of quantitative genetics and transcriptomic data allowed us to propose a short list of candidate genes that are conserved in the rice, sorghum and Brachypodium chromosome regions orthologous to the seven wheat grain fiber content QTL and that can be considered as major candidate genes for future improvement of the grain dietary fiber content in bread wheat breeding programs.

摘要

小麦中的谷物膳食纤维含量不仅影响其最终用途和技术特性,包括碾磨、烘焙和动物饲料,而且对健康益处也非常重要。在这项研究中,关联遗传学(在染色体 1B、3A、3D、5B、6B、7A 和 7B 上检测到的七个位点)和荟萃 QTL(染色体 1B、3D 和 6B 上的三个共识 QTL)分析的整合允许鉴定面包小麦中谷物膳食纤维含量的七个染色体区域。基于多样性面板或双亲群体,我们清楚地表明,该性状主要由位于染色体 1B 上的一个主要位点驱动,该位点与对数 p 值>13 和 LOD 得分>8 相关。同时,我们鉴定了在籽粒发育过程中以及在具有不同籽粒纤维含量的基因型之间差异表达的 73 个基因。数量遗传学和转录组数据的整合使我们能够提出一个候选基因的简短列表,这些基因在与七个小麦谷物纤维含量 QTL 同源的水稻、高粱和短柄草染色体区域中是保守的,并且可以被认为是未来提高面包小麦谷物膳食纤维含量的主要候选基因。

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