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植物碱性螺旋-环-螺旋蛋白的系统发育分析

Phylogenetic analysis of plant basic helix-loop-helix proteins.

作者信息

Buck Michael J, Atchley William R

机构信息

Department of Genetics and The Center for Computational Biology, North Carolina State University, Campus Box 7614, Raleigh, NC 27695-7614, USA.

出版信息

J Mol Evol. 2003 Jun;56(6):742-50. doi: 10.1007/s00239-002-2449-3.

Abstract

The basic helix-loop-helix (bHLH) family of proteins is a group of functionally diverse transcription factors found in both plants and animals. These proteins evolved early in eukaryotic cells before the split of animals and plants, but appear to function in 'plant-specific' or 'animal-specific' processes. In animals bHLH proteins are involved in regulation of a wide variety of essential developmental processes. On the contrary, bHLH proteins have not been extensively studied in plants. Those that have been characterized function in anthocyanin biosynthesis, phytochrome signaling, globulin expression, fruit dehiscence, carpel and epidermal development. We have identified 118 different bHLH genes in the completely sequenced Arabidopsis thaliana genome and 131 bHLH genes in the rice genome. Here we report a phylogenetic analysis of these genes, including 46 genes from other plant species and a classification of these proteins into 15 distinct plant clades. Results imply a polyphyletic origin for the plant bHLH proteins related only by their bHLH DNA binding motif. We suggest that plant bHLH proteins are under weaker selective constraints than their animal counterparts and that lineage specific expansions and subfunctionalization have fashioned regulatory proteins for plant specific functions.

摘要

基本螺旋-环-螺旋(bHLH)蛋白家族是一类在植物和动物中均存在的功能多样的转录因子。这些蛋白在动植物分化之前的真核细胞早期就已进化产生,但似乎在“植物特异性”或“动物特异性”过程中发挥作用。在动物中,bHLH蛋白参与多种重要发育过程的调控。相反,bHLH蛋白在植物中尚未得到广泛研究。已鉴定出的植物bHLH蛋白在花青素生物合成、光敏色素信号传导、球蛋白表达、果实开裂、心皮和表皮发育中发挥作用。我们在全序列测定的拟南芥基因组中鉴定出118个不同的bHLH基因,在水稻基因组中鉴定出131个bHLH基因。在此,我们报告了对这些基因的系统发育分析,包括来自其他植物物种的46个基因,并将这些蛋白分类为15个不同的植物进化枝。结果表明,植物bHLH蛋白仅通过其bHLH DNA结合基序相关,具有多系起源。我们认为,植物bHLH蛋白受到的选择限制比动物中的同类蛋白弱,并且谱系特异性扩增和亚功能化塑造了具有植物特定功能的调控蛋白。

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