首页> 美国卫生研究院文献>Genes >Transcriptome Analysis Reveals Important Candidate Genes Related to Nutrient Reservoir Carbohydrate Metabolism and Defence Proteins during Grain Development of Hexaploid Bread Wheat and Its Diploid Progenitors
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Transcriptome Analysis Reveals Important Candidate Genes Related to Nutrient Reservoir Carbohydrate Metabolism and Defence Proteins during Grain Development of Hexaploid Bread Wheat and Its Diploid Progenitors

机译:转录组分析揭示了六倍体面包小麦及其二倍体祖先谷物发育过程中与营养储库碳水化合物代谢和防御蛋白有关的重要候选基因

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摘要

Wheat grain development after anthesis is an important biological process, in which major components of seeds are synthesised, and these components are further required for germination and seed vigour. We have made a comparative RNA-Seq analysis between hexaploid wheat and its individual diploid progenitors to know the major differentially expressed genes (DEGs) involved during grain development. Two libraries from each species were generated with an average of 55.63, 55.23, 68.13, and 103.81 million reads, resulting in 79.3K, 113.7K, 90.6K, and 121.3K numbers of transcripts in AA, BB, DD, and AABBDD genome species respectively. Number of expressed genes in hexaploid wheat was not proportional to its genome size, but marginally higher than that of its diploid progenitors. However, to capture all the transcripts in hexaploid wheat, sufficiently higher number of reads was required. Functional analysis of DEGs, in all the three comparisons, showed their predominance in three major classes of genes during grain development, i.e., nutrient reservoirs, carbohydrate metabolism, and defence proteins; some of them were subsequently validated through real time quantitative Reverse Transcription Polymerase Chain Reaction (qRT-PCR). Further, developmental stage–specific gene expression showed most of the defence protein genes expressed during initial developmental stages in hexaploid contrary to the diploids at later stages. Genes related to carbohydrates anabolism expressed during early stages, whereas catabolism genes expressed at later stages in all the species. However, no trend was observed in case of different nutrient reservoirs gene expression. This data could be used to study the comparative gene expression among the three diploid species and homeologue-specific expression in hexaploid.
机译:花后的小麦籽粒发育是重要的生物学过程,其中种子的主要成分被合成,而这些成分对于发芽和种子活力又是必需的。我们已经对六倍体小麦与其单个二倍体祖细胞进行了比较RNA-Seq分析,以了解谷物发育过程中涉及的主要差异表达基因(DEG)。每个物种产生了两个文库,平均读取了55.63、55.23、68.13和103.81百万次,从而在AA,BB,DD和AABBDD基因组物种中产生了79.3K,113.7K,90.6K和121.3K的转录本数分别。六倍体小麦中表达的基因数量与其基因组大小不成比例,但略高于其二倍体祖细胞。但是,要捕获六倍体小麦中的所有转录本,需要足够高的读取数。在所有三个比较中,对DEG的功能分析表明,它们在谷物发育过程中主要出现在三大类基因中,即营养储库,碳水化合物代谢和防御蛋白。其中一些随后通过实时定量逆转录聚合酶链反应(qRT-PCR)进行了验证。此外,发育阶段特异的基因表达表明,大多数防御蛋白基因在初始发育阶段以六倍体表达,而在后期则为二倍体。在所有物种中,与碳水化合物合成代谢相关的基因在早期表达,而分解代谢基因在后期表达。然而,在不同的营养储库基因表达的情况下,没有观察到趋势。该数据可用于研究三种二倍体物种之间的比较基因表达和六倍体中同源同源物特异性表达。

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