The evolution of gene regulatory networks controlling Arabidopsis thaliana L. trichome development

生物 基因调控网络 毛状体 拟南芥 进化生物学 分子进化 进化发育生物学 植物进化 系统发育树 系统发育学 功能分歧 拟南芥 基因 计算生物学 遗传学 基因家族 植物 基因表达 突变体 基因组
作者
Alexey Doroshkov,Dmitrii K. Konstantinov,Д. А. Афонников,Konstantin Gunbin
出处
期刊:BMC Plant Biology [Springer Nature]
卷期号:19 (S1) 被引量:48
标识
DOI:10.1186/s12870-019-1640-2
摘要

The variation in structure and function of gene regulatory networks (GRNs) participating in organisms development is a key for understanding species-specific evolutionary strategies. Even the tiniest modification of developmental GRN might result in a substantial change of a complex morphogenetic pattern. Great variety of trichomes and their accessibility makes them a useful model for studying the molecular processes of cell fate determination, cell cycle control and cellular morphogenesis. Nowadays, a large number of genes regulating the morphogenesis of A. thaliana trichomes are described. Here we aimed at a study the evolution of the GRN defining the trichome formation, and evaluation its importance in other developmental processes. In study of the evolution of trichomes formation GRN we combined classical phylogenetic analysis with information on the GRN topology and composition in major plants taxa. This approach allowed us to estimate both times of evolutionary emergence of the GRN components which are mainly proteins, and the relative rate of their molecular evolution. Various simplifications of protein structure (based on the position of amino acid residues in protein globula, secondary structure type, and structural disorder) allowed us to demonstrate the evolutionary associations between changes in protein globules and speciations/duplications events. We discussed their potential involvement in protein-protein interactions and GRN function. We hypothesize that the divergence and/or the specialization of the trichome-forming GRN is linked to the emergence of plant taxa. Information about the structural targets of the protein evolution in the GRN may predict switching points in gene networks functioning in course of evolution. We also propose a list of candidate genes responsible for the development of trichomes in a wide range of plant species.
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