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首页> 外文期刊>Plant physiology >Genome-wide classification and evolutionary analysis of the bHLH family of transcription factors in Arabidopsis, poplar, rice, moss, and algae
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Genome-wide classification and evolutionary analysis of the bHLH family of transcription factors in Arabidopsis, poplar, rice, moss, and algae

机译:拟南芥,白杨,水稻,苔藓和藻类中bHLH家族转录因子全基因组分类和进化分析

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Basic helix-loop-helix proteins (bHLHs) are found throughout the three eukaryotic kingdoms and constitute one of the largest families of transcription factors. A growing number of bHLH proteins have been functionally characterized in plants. However, some of these have not been previously classified. We present here an updated and comprehensive classification of the bHLHs encoded by the whole sequenced genomes of Arabidopsis (Arabidopsis thaliana), Populus trichocarpa, Oryza sativa, Physcomitrella patens, and five algae species. We define a plant bHLH consensus motif, which allowed the identification of novel highly diverged atypical bHLHs. Using yeast two-hybrid assays, we confirm that (1) a highly diverged bHLH has retained protein interaction activity and (2) the two most conserved positions in the consensus play an essential role in dimerization. Phylogenetic analysis permitted classification of the 638 bHLH genes identified into 32 subfamilies. Evolutionary and functional relationships within subfamilies are supported by intron patterns, predicted DNA-binding motifs, and the architecture of conserved protein motifs. Our analyses reveal the origin and evolutionary diversification of plant bHLHs through differential expansions, domain shuffling, and extensive sequence divergence. At the functional level, this would translate into different subfamilies evolving specific DNA-binding and protein interaction activities as well as differential transcriptional regulatory roles. Our results suggest a role for bHLH proteins in generating plant phenotypic diversity and provide a solid framework for further investigations into the role carried out in the transcriptional regulation of key growth and developmental processes.
机译:基本的螺旋-环-螺旋蛋白(bHLHs)遍及三个真核界,并构成最大的转录因子家族之一。越来越多的bHLH蛋白已经在植物中进行了功能鉴定。但是,其中一些尚未被预先分类。我们在这里提出了由拟南芥(Arabidopsis thaliana),毛白杨,水稻,稻草,小立碗藓和五个藻类的整个测序基因组编码的bHLHs的更新和全面分类。我们定义了一种植物bHLH共有基序,该基序可以识别新型高度分化的非典型bHLHs。使用酵母双杂交测定法,我们确认(1)高度分歧的bHLH保留了蛋白质相互作用活性,并且(2)共有物中两个最保守的位置在二聚化中起重要作用。通过系统发育分析,可以将638个bHLH基因分类为32个亚家族。内含子模式,预测的DNA结合基序和保守的蛋白质基序结构可支持亚家族内的进化和功能关系。我们的分析通过差异扩展,结构域改组和广泛的序列差异揭示了植物bHLHs的起源和进化多样性。在功能水平上,这将转化为不同的亚家族,这些亚家族发展了特定的DNA结合和蛋白质相互作用活性,以及​​不同的转录调控作用。我们的结果表明bHLH蛋白在产生植物表型多样性中的作用,并为进一步研究关键生长和发育过程的转录调控中的作用提供了坚实的框架。

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