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Global transcriptome analysis uncovers the gene co-expression regulation network and key genes involved in grain development of wheat (Triticum aestivum L.)

机译:全球转录组分析揭示了基因共表达调控网络和参与小麦籽粒发育的关键基因(Triticum aestivum L.)

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摘要

Wheat grain development is a robust biological process that largely determines grain quality and yield. In this study, we investigated the grain transcriptome of winter wheat cv. Xiaoyan-6 at four developmental stages (5, 10, 15, and 20 days post-anthesis), using high-throughput RNA sequencing (RNA-Seq). We identified 427 grain-specific transcription factors (TFs) and 1653 differentially expressed TFs during grain development as well as a grain co-expression regulation network (GrainNet) of the TFs and their predicted co-expressed genes. Our study identified ten putative key TFs and the predicted regulatory genes of these TFs in wheat grain development of Xiaoyan-6. The analysis was given a firm basis through the study of additional wheat tissues, including root, stem, leaf, flag leaf, grain, spikes (from wheat plants at booting or heading stages) to provide a dataset of 92,478 high-confidence protein-coding genes that were mostly evenly distributed among subgenomes, but unevenly distributed across each of the chromosomes or each of the seven homeologous groups. Within this larger framework of the transcriptomes, we identified 4659 grain-specific genes (SEGs) and 26,500 differentially expressed genes (DEGs) throughout grain development stages tested. The SEGs identified mainly associate with regulation and signaling-related biological processes, while the DEGs mainly involve in cellular component organization or biogenesis and nutrient reservoir activity during grain development of Xiaoyan-6. This study establishes new targets for modifying genes related to grain development and yield, to fine-tune expression in different varieties and environments.Electronic supplementary materialThe online version of this article (10.1007/s10142-019-00678-z) contains supplementary material, which is available to authorized users.
机译:小麦籽粒发育是一个强大的生物过程,在很大程度上决定着谷物的质量和单产。在这项研究中,我们调查了冬小麦简历的谷物转录组。使用高通量RNA测序(RNA-Seq)在四个发育阶段(花后5、10、15和20天)的Xiaoyan-6。我们鉴定了427个谷物特异性转录因子(TFs)和1653个差异表达的TFs,以及这些TFs及其预测的共表达基因的谷物共表达调控网络(GrainNet)。我们的研究确定了小yan 6小麦籽粒发育过程中的十个推定关键TF和这些TF的预测调控基因。通过研究其他小麦组织,包括根,茎,叶,旗叶,谷物,穗状花序(来自小麦在启动或抽穗期),为提供92,478个高可信度蛋白质编码数据集提供了坚实的基础这些基因大多在亚基因组之间平均分配,但在每个染色体或七个同源组中均分布不均。在这个更大的转录组框架内,我们在测试的整个谷物发育阶段鉴定了4659个谷物特异性基因(SEG)和26,500个差异表达基因(DEG)。鉴定出的SEG主要与调控和信号相关的生物过程有关,而DEGs主要涉及小烟6籽粒发育过程中的细胞成分组织或生物发生和养分储藏库活动。这项研究建立了修饰与谷物发育和产量相关的基因的新靶标,以微调在不同品种和环境中的表达。电子补充材料本文的在线版本(10.1007 / s10142-019-00678-z)包含补充材料,其中适用于授权用户。

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