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Genome-wide analyses of direct target genes of four rice NAC-domain transcription factors involved in drought tolerance

机译:涉及耐旱性的四个水稻NAC结构域转录因子直接靶基因的全基因组分析

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Plant stress responses and mechanisms determining tolerance are controlled by diverse sets of genes. Transcription factors (TFs) have been implicated in conferring drought tolerance under drought stress conditions, and the identification of their target genes can elucidate molecular regulatory networks that orchestrate tolerance mechanisms. We generated transgenic rice plants overexpressing the 4 rice TFs, OsNAC5, 6, 9, and 10, under the control of the root-specific RCc3 promoter. We showed that they were tolerant to drought stress with reduced loss of grain yield under drought conditions compared with wild type plants. To understand the molecular mechanisms underlying this tolerance, we here performed chromatin immunoprecipitation (ChIP)-Seq and RNA-Seq analyses to identify the direct target genes of the OsNAC proteins using the RCc3:6MYC-OsNAC expressing roots. A total of 475 binding loci for the 4 OsNAC proteins were identified by cross-referencing their binding to promoter regions and the expression levels of the corresponding genes. The binding loci were distributed among the promoter regions of 391 target genes that were directly up-regulated by one of the OsNAC proteins in four RCc3:6MYC-OsNAC transgenic lines. Based on gene ontology (GO) analysis, the direct target genes were related to transmembrane/transporter activity, vesicle, plant hormones, carbohydrate metabolism, and TFs. The direct targets of each OsNAC range from 4.0–8.7% of the total number of up-regulated genes found in the RNA-Seq data sets. Thus, each OsNAC up-regulates a set of direct target genes that alter root system architecture in the RCc3:OsNAC plants to confer drought tolerance. Our results provide a valuable resource for functional dissection of the molecular mechanisms of drought tolerance. Many of the target genes, including transmembrane/transporter, vesicle related, auxin/hormone related, carbohydrate metabolic processes, and transcription factor genes, that are up-regulated by OsNACs act as the cellular components which would alter the root architectures of RCc3:OsNACs for drought tolerance.
机译:植物胁迫反应和确定耐受性的机制由多种基因控制。在干旱胁迫条件下,转录因子(TFs)与赋予干旱耐受性有关,对它们的靶基因的鉴定可以阐明协调耐受机制的分子调控网络。我们在根特异性RCc3启动子的控制下,生成了过表达4种水稻TFs OsNAC5、6、9和10的转基因水稻植物。我们表明,与野生型植物相比,它们在干旱条件下耐受干旱,减少了谷物产量的损失。为了了解这种耐受性的分子机制,我们在这里进行了染色质免疫沉淀(ChIP)-Seq和RNA-Seq分析,以使用表达RCc3:6MYC-OsNAC的根鉴定OsNAC蛋白的直接靶基因。通过交叉引用它们与启动子区域的结合以及相应基因的表达水平,鉴定出总共475个针对4个OsNAC蛋白的结合基因座。结合基因座分布在四个RCc3:6MYC-OsNAC转基因株系中的391个靶基因的启动子区域之间,这些基因直接由一种OsNAC蛋白上调。根据基因本体论(GO)分析,直接靶基因与跨膜/转运蛋白活性,囊泡,植物激素,碳水化合物代谢和TF相关。每个OsNAC的直接靶标范围是RNA-Seq数据集中发现的上调基因总数的4.0-8.7%。因此,每个OsNAC上调了一组直接靶基因,这些基因改变了RCc3:OsNAC植物的根系结构,赋予了耐旱性。我们的研究结果为功能分析抗旱分子机制提供了宝贵的资源。 OsNAC上调的许多靶基因,包括跨膜/转运蛋白,囊泡相关,生长素/激素相关,糖类代谢过程和转录因子基因,都是细胞成分,可改变RCc3:OsNAC的根结构。耐旱。

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