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首页> 外文期刊>Frontiers in Plant Science >Global analysis of WRKY transcription factor superfamily in Setaria identifies potential candidates involved in abiotic stress signaling
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Global analysis of WRKY transcription factor superfamily in Setaria identifies potential candidates involved in abiotic stress signaling

机译: Setaria 中WRKY转录因子超家族的全局分析确定了参与非生物胁迫信号传导的潜在候选者

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摘要

Transcription factors (TFs) are major players in stress signaling and constitute an integral part of signaling networks. Among the major TFs, WRKY proteins play pivotal roles in regulation of transcriptional reprogramming associated with stress responses. In view of this, genome- and transcriptome-wide identification of WRKY TF family was performed in the C_(4)model plants, Setaria italica (SiWRKY) and S. viridis (SvWRKY), respectively. The study identified 105 SiWRKY and 44 SvWRKY proteins that were computationally analyzed for their physicochemical properties. Sequence alignment and phylogenetic analysis classified these proteins into three major groups, namely I, II, and III with majority of WRKY proteins belonging to group II (53 SiWRKY and 23 SvWRKY), followed by group III (39 SiWRKY and 11 SvWRKY) and group I (10 SiWRKY and 6 SvWRKY). Group II proteins were further classified into 5 subgroups (IIa to IIe) based on their phylogeny. Domain analysis showed the presence of WRKY motif and zinc finger-like structures in these proteins along with additional domains in a few proteins. All SiWRKY genes were physically mapped on the S. italica genome and their duplication analysis revealed that 10 and 8 gene pairs underwent tandem and segmental duplications, respectively. Comparative mapping of SiWRKY and SvWRKY genes in related C_(4)panicoid genomes demonstrated the orthologous relationships between these genomes. In silico expression analysis of SiWRKY and SvWRKY genes showed their differential expression patterns in different tissues and stress conditions. Expression profiling of candidate SiWRKY genes in response to stress (dehydration and salinity) and hormone treatments (abscisic acid, salicylic acid, and methyl jasmonate) suggested the putative involvement of SiWRKY066 and SiWRKY082 in stress and hormone signaling. These genes could be potential candidates for further characterization to delineate their functional roles in abiotic stress signaling.
机译:转录因子(TFs)是压力信号的主要参与者,并构成信号网络的组成部分。在主要的TF中,WRKY蛋白在调控与应激反应相关的转录重编程中起关键作用。鉴于此,分别在C_(4)模型植物Setaria italica(SiWRKY)和S. viridis(SvWRKY)中进行了WRKY TF家族全基因组和转录组的鉴定。该研究鉴定了105种SiWRKY和44种SvWRKY蛋白,并对其进行了理化性质的计算分析。序列比对和系统发育分析将这些蛋白分为三个主要组,即I,II和III,其中大部分WRKY蛋白属于II组(53 SiWRKY和23 SvWRKY),其次是III组(39 SiWRKY和11 SvWRKY)和组我(10 SiWRKY和6 SvWRKY)。根据系统发育史,第二组蛋白被进一步分为5个亚组(IIa至IIe)。结构域分析表明,这些蛋白中存在WRKY基序和锌指状结构,以及少数蛋白中的其他结构域。所有SiWRKY基因都被物理定位在意大利链霉菌基因组上,并且它们的重复分析表明分别有10和8个基因对进行了串联和分段重复。 SiWRKY和SvWRKY基因在相关C_(4)pan基因组中的比较作图证明了这些基因组之间的直系同源关系。 SiWRKY和SvWRKY基因的计算机表达分析表明,它们在不同组织和应激条件下的差异表达模式。应答压力(脱水和盐度)和激素处理(脱落酸,水杨酸和茉莉酸甲酯)的候选SiWRKY基因的表达谱表明,SiWRKY066和SiWRKY082可能参与了压力和激素信号传导。这些基因可能是潜在的候选者,以进一步表征其在非生物胁迫信号中的功能。

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