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TCP转录因子早于陆地植物的出现。

TCP transcription factors predate the emergence of land plants.

作者信息

Navaud Olivier, Dabos Patrick, Carnus Elodie, Tremousaygue Dominique, Hervé Christine

机构信息

CNRS UMR2594/INRA UMR441, Laboratoire des Interactions Plantes Microorganismes, BP 52627 Chemin de borde rouge, F-31326 Castanet-Tolosan, France.

出版信息

J Mol Evol. 2007 Jul;65(1):23-33. doi: 10.1007/s00239-006-0174-z. Epub 2007 Jun 12.

Abstract

TCP proteins are plant-specific transcription factors identified so far only in angiosperms and shown to be involved in specifying plant morphologies. However, the functions of these proteins remain largely unknown. Our study is the first phylogenetic analysis comparing the TCP genes from higher and lower plants, and it dates the emergence of the TCP family to before the split of the Zygnemophyta. EST database analysis and CODEHOP PCR amplification revealed TCP genes in basal land plant genomes and also in their close freshwater algal relatives. Based on an extensive survey of TCP genes, families of TCP proteins were characterized in the Arabidopsis thaliana, poplar, rice, club-moss, and moss genomes. The phylogenetic trees indicate a continuous expansion of the TCP family during the diversification of the Phragmoplastophyta and a similar degree of expansion in several angiosperm lineages. TCP paralogues were identified in all genomes studied, and Ks values indicate that TCP genes expanded during genome duplication events. MEME and SIMPLE analyses detected conserved motifs and low-complexity regions, respectively, outside of the TCP domain, which reinforced the previous description of a "mosaic" structure of TCP proteins.

摘要

TCP蛋白是迄今仅在被子植物中发现的植物特异性转录因子,已证明其参与植物形态的特异性调控。然而,这些蛋白的功能在很大程度上仍不清楚。我们的研究是首次对高等植物和低等植物的TCP基因进行系统发育分析,结果表明TCP家族在双星藻纲分化之前就已出现。EST数据库分析和简并寡核苷酸引物聚合酶链反应(CODEHOP PCR)扩增揭示了基部陆地植物基因组及其近缘淡水藻类中的TCP基因。基于对TCP基因的广泛调查,在拟南芥、杨树、水稻、石松和苔藓基因组中对TCP蛋白家族进行了特征分析。系统发育树表明,在有丝分裂器植物多样化过程中,TCP家族不断扩张,并且在几个被子植物谱系中扩张程度相似。在所研究的所有基因组中均鉴定出TCP旁系同源基因,Ks值表明TCP基因在基因组复制事件期间发生了扩张。MEME和SIMPLE分析分别在TCP结构域之外检测到保守基序和低复杂性区域,这进一步证实了之前对TCP蛋白“镶嵌”结构的描述。

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