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New insight into comprehensive analysis of INDETERMINATE DOMAIN (IDD) gene family in rice

机译:对稻米综合分析(IDD)基因家族综合分析的新洞察

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The INDETERMINATE DOMAIN (IDD) transcription factor (TF), as a family of plant-specific zinc-finger proteins, regulates a variety of development processes and abiotic stresses in plants. IDD genes have been identified and characterized in other plants, however, the rice IDD family genes have not been investigated at genome-wide. In this study, 15 OsIDD genes were identified in rice genome and phylogenetically classified into two groups. Conserved motifs and potential interaction protein analysis about OsIDD proteins were carried out. Exon-intron structures, cis-acting elements and expression profiles of OsIDD genes were also examined. Exon-intron structures analysis revealed that overall structures of OsIDD genes were relatively conserved although they contained different numbers of introns. Cis-acting elements analysis suggested that most OsIDD gene transcripts could be induced by various abiotic stresses and phytohormones. The expression patterns of OsIDD genes were detected by qRT-PCR under cold and drought conditions, and by exogenous auxin (2,4-D), gibberellin (GA(3)), and abscisic acid (ABA) treatments, respectively. The results showed that the OsIDDs might play essential roles under abiotic stresses and hormone responses. Distinct expression profiles in tissues/organs suggested that OsIDDs might be involved in different development processes in rice. More interestingly, the prediction of protein-protein interactions (PPIs) revealed OsIDDs could cooperate with some histone modifiers. Yeast two-hybrid assays were performed and confirmed it. Collectively, these results provide a foundation for further elucidation on the molecular mechanisms of OsIDD genes and advance our understanding of their biological function in rice.
机译:作为植物特异性锌手指蛋白的家族,不确定的结构域(IDD)转录因子(TF)调节植物中的各种发育过程和非生物胁迫。已经鉴定并在其他植物中鉴定并表征了IDD基因,但是,稻米IDD家族基因尚未在基因组上进行研究。在本研究中,将15个OSIDD基因鉴定在水稻基因组中,并将文源分为两组。进行了保守的基序和关于疏水蛋白蛋白的潜在相互作用蛋白质分析。还检查了外显子系统结构,顺式作用元素和疏腹基因的表达谱。外显子系统结构分析显示,疏排基因的整体结构相对节省,尽管它们包含不同数量的内含子。顺式作用元素分析表明,大多数疏水基因转录物可以由各种非生物应激和植物激素诱导。通过QRT-PCR在冷和干旱条件下检测到OSIDD基因的表达模式,并分别通过外源性助产素(2,4-D),嗜酸盐蛋白(Ga(3))和脱落酸(ABA)处理。结果表明,疏水管奥德人可能在非生物应激和激素反应下发挥基本作用。组织/器官中明显的表达谱表明,OSIDDS可能参与水稻中的不同发展过程。更有趣的是,蛋白质 - 蛋白质相互作用(PPI)的预测显示疏水剂可以与一些组蛋白改性剂配合。进行酵母双杂化测定并证实。总的来说,这些结果为进一步阐明了对疏水基因的分子机制以及推进水稻生物功能的理解进一步阐明的基础。

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