Floyd Sandra K, Ryan Joseph G, Conway Stephanie J, Brenner Eric, Burris Kellie P, Burris Jason N, Chen Tao, Edger Patrick P, Graham Sean W, Leebens-Mack James H, Pires J Chris, Rothfels Carl J, Sigel Erin M, Stevenson Dennis W, Neal Stewart C, Wong Gane Ka-Shu, Bowman John L
School of Biological Sciences, Monash University, Melbourne, Victoria 3800, Australia.
School of Botany, University of Melbourne, Melbourne, Victoria 3010, Australia.
Mol Phylogenet Evol. 2014 Dec;81:159-73. doi: 10.1016/j.ympev.2014.06.017. Epub 2014 Sep 27.
It is commonly believed that gene duplications provide the raw material for morphological evolution. Both the number of genes and size of gene families have increased during the diversification of land plants. Several small proteins that regulate transcription factors have recently been identified in plants, including the LITTLE ZIPPER (ZPR) proteins. ZPRs are post-translational negative regulators, via heterodimerization, of class III Homeodomain Leucine Zipper (C3HDZ) proteins that play a key role in directing plant form and growth. We show that ZPR genes originated as a duplication of a C3HDZ transcription factor paralog in the common ancestor of euphyllophytes (ferns and seed plants). The ZPRs evolved by degenerative mutations resulting in loss all of the C3HDZ functional domains, except the leucine zipper that modulates dimerization. ZPRs represent a novel regulatory module of the C3HDZ network unique to the euphyllophyte lineage, and their origin correlates to a period of rapid morphological changes and increased complexity in land plants. The origin of the ZPRs illustrates the significance of gene duplications in creating developmental complexity during land plant evolution that likely led to morphological evolution.
人们普遍认为基因复制为形态进化提供了原材料。在陆地植物多样化的过程中,基因数量和基因家族的大小都有所增加。最近在植物中发现了几种调节转录因子的小蛋白质,包括小拉链(ZPR)蛋白。ZPRs是通过异源二聚化对III类同源结构域亮氨酸拉链(C3HDZ)蛋白进行翻译后负调控的因子,C3HDZ蛋白在指导植物形态和生长中起关键作用。我们发现ZPR基因起源于真叶植物(蕨类植物和种子植物)共同祖先中C3HDZ转录因子旁系同源基因的一次复制。ZPRs通过退化性突变进化而来,导致除了调节二聚化的亮氨酸拉链外,所有C3HDZ功能域都丢失了。ZPRs代表了真叶植物谱系特有的C3HDZ网络的一个新的调控模块,它们的起源与陆地植物快速形态变化和复杂性增加的时期相关。ZPRs的起源说明了基因复制在陆地植物进化过程中创造发育复杂性方面的重要性,而这种复杂性可能导致了形态进化。