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Genome-Wide Survey of the Soybean GATA Transcription Factor Gene Family and Expression Analysis under Low Nitrogen Stress

机译:低氮胁迫下大豆GATA转录因子基因家族的全基因组调查及表达分析

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摘要

GATA transcription factors are transcriptional regulatory proteins that contain a characteristic type-IV zinc finger DNA-binding domain and recognize the conserved GATA motif in the promoter sequence of target genes. Previous studies demonstrated that plant GATA factors possess critical functions in developmental control and responses to the environment. To date, the GATA factors in soybean (Glycine max) have yet to be characterized. Thus, this study identified 64 putative GATA factors from the entire soybean genomic sequence. The chromosomal distributions, gene structures, duplication patterns, phylogenetic tree, tissue expression patterns, and response to low nitrogen stress of the 64 GATA factors in soybean were analyzed to further investigate the functions of these factors. Results indicated that segmental duplication predominantly contributed to the expansion of the GATA factor gene family in soybean. These GATA proteins were phylogenetically clustered into four distinct subfamilies, wherein their gene structure and motif compositions were considerably conserved. A comparative phylogenetic analysis of the GATA factor zinc finger domain sequences in soybean, Arabidopsis (Arabidopsis thaliana), and rice (Oryza sativa) revealed four major classes. The GATA factors in soybean exhibited expression diversity among different tissues; some of these factors showed tissue-specific expression patterns. Numerous GATA factors displayed upregulation or downregulation in soybean leaf in response to low nitrogen stress, and two GATA factors GATA44 and GATA58 were likely to be involved in the regulation of nitrogen metabolism in soybean. Overexpression of GmGATA44 complemented the reduced chlorophyll phenotype of the Arabidopsis ortholog AtGATA21 mutant, implying that GmGATA44 played an important role in modulating chlorophyll biosynthesis. Overall, our study provides useful information for the further analysis of the biological functions of GATA factors in soybean and other crops.
机译:GATA转录因子是转录调节蛋白,其包含特征性的IV型锌指DNA结合结构域,并识别靶基因启动子序列中的保守GATA基序。先前的研究表明,植物GATA因子在发育控制和对环境的响应中具有关键功能。迄今为止,大豆(Glycine max)中的GATA因子尚未鉴定。因此,本研究从整个大豆基因组序列中鉴定出64个推定的GATA因子。分析了大豆中64种GATA因子的染色体分布,基因结构,重复模式,系统发育树,组织表达模式以及对低氮胁迫的响应,以进一步研究这些因子的功能。结果表明,节段重复主要促进了大豆中GATA因子基因家族的扩展。这些GATA蛋白在系统发育上聚集成四个不同的亚家族,其中它们的基因结构和基序组成非常保守。大豆,拟南芥(Arabidopsis thaliana)和水稻(Oryza sativa)中GATA因子锌指结构域序列的比较系统发育分析揭示了四个主要类别。大豆中的GATA因子在不同组织之间表现出表达多样性;这些因素中的一些表现出组织特异性表达模式。响应低氮胁迫,大豆叶片中有许多GATA因子显示上调或下调,而两个GATA因子GATA44和GATA58可能参与了大豆氮代谢的调节。 GmGATA44的过表达补充了拟南芥直系同源基因AtGATA21突变体降低的叶绿素表型,这暗示GmGATA44在调节叶绿素的生物合成中起重要作用。总体而言,我们的研究为进一步分析GATA因子在大豆和其他农作物中的生物学功能提供了有用的信息。

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