首页> 美国卫生研究院文献>DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes >Genome-wide analysis of cis-regulatory element structure and discovery of motif-driven gene co-expression networks in grapevine
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Genome-wide analysis of cis-regulatory element structure and discovery of motif-driven gene co-expression networks in grapevine

机译:全基因组的顺式调控元件结构分析和基元驱动的葡萄基因共表达网络的发现

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摘要

Coordinated transcriptional and metabolic reprogramming ensures a plant’s continued growth and survival under adverse environmental conditions. Transcription factors (TFs) act to modulate gene expression through complex cis-regulatory element (CRE) interactions. Genome-wide analysis of known plant CREs was performed for all currently predicted protein-coding gene promoters in grapevine (Vitis vinifera L.). Many CREs such as abscisic acid (ABA)-responsive, drought-responsive, auxin-responsive, and evening elements, exhibit bona fide CRE properties such as strong position bias towards the transcription start site (TSS) and over-representation when compared with random promoters. Genes containing these CREs are enriched in a large repertoire of plant biological pathways. Large-scale transcriptome analyses also show that these CREs are highly implicated in grapevine development and stress response. Numerous CRE-driven modules in condition-specific gene co-expression networks (GCNs) were identified and many of these modules were highly enriched for plant biological functions. Several modules corroborate known roles of CREs in drought response, pathogen defense, cell wall metabolism, and fruit ripening, whereas others reveal novel functions in plants. Comparisons with Arabidopsis suggest a general conservation in promoter architecture, gene expression dynamics, and GCN structure across species. Systems analyses of CREs provide insights into the grapevine cis-regulatory code and establish a foundation for future genomic studies in grapevine.
机译:协调的转录和代谢重编程可确保植物在不利环境条件下的持续生长和存活。转录因子(TFs)通过复杂的顺式调控元件(CRE)相互作用来调节基因表达。对葡萄(Vitis vinifera L.)中所有当前预测的蛋白质编码基因启动子进行了已知植物CRE的全基因组分析。与随机因素相比,许多CRE(例如脱落酸(ABA)响应,干旱响应,植物生长素响应和傍晚元素)显示出真正的CRE属性,例如朝向转录起始位点(TSS)的强烈位置偏向和过度表达发起人。包含这些CRE的基因在植物生物学途径的丰富库中富集。大规模转录组分析还显示,这些CRE与葡萄的发育和胁迫反应高度相关。在条件特定的基因共表达网络(GCN)中鉴定了许多CRE驱动的模块,其中许多模块高度丰富了植物的生物学功能。几个模块证实了CRE在干旱反应,病原体防御,细胞壁代谢和果实成熟中的已知作用,而其他模块则揭示了植物中的新功能。与拟南芥的比较表明,整个物种在启动子结构,基因表达动力学和GCN结构方面具有一般的保守性。对CRE的系统分析为了解葡萄的顺式调控法规提供了见识,并为未来的葡萄基因组研究奠定了基础。

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