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六倍体普通小麦籽粒转录组中的基因组互作。

Genome interplay in the grain transcriptome of hexaploid bread wheat.

机构信息

Plant Genome and Systems Biology, Helmholtz Center Munich, 85764 Neuherberg, Germany.

Department of Plant Sciences/Centre for Integrative Genetics, The Norwegian University of Life Sciences (NMBU), 1432 Åas, Norway.

出版信息

Science. 2014 Jul 18;345(6194):1250091. doi: 10.1126/science.1250091.

Abstract

Allohexaploid bread wheat (Triticum aestivum L.) provides approximately 20% of calories consumed by humans. Lack of genome sequence for the three homeologous and highly similar bread wheat genomes (A, B, and D) has impeded expression analysis of the grain transcriptome. We used previously unknown genome information to analyze the cell type-specific expression of homeologous genes in the developing wheat grain and identified distinct co-expression clusters reflecting the spatiotemporal progression during endosperm development. We observed no global but cell type- and stage-dependent genome dominance, organization of the wheat genome into transcriptionally active chromosomal regions, and asymmetric expression in gene families related to baking quality. Our findings give insight into the transcriptional dynamics and genome interplay among individual grain cell types in a polyploid cereal genome.

摘要

异源六倍体面包小麦(Triticum aestivum L.)提供了人类约 20%的热量摄入。三个同源且高度相似的面包小麦基因组(A、B 和 D)缺乏基因组序列,这阻碍了对谷物转录组表达的分析。我们利用先前未知的基因组信息,分析了发育中的小麦籽粒中同源基因的细胞类型特异性表达,并确定了反映胚乳发育过程中时空进展的不同共表达簇。我们观察到没有全局的,但有细胞类型和阶段依赖性的基因组优势,小麦基因组组织成转录活跃的染色体区域,以及与烘焙质量相关的基因家族的不对称表达。我们的研究结果为多倍体谷物基因组中单个籽粒细胞类型之间的转录动态和基因组相互作用提供了深入的了解。

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