Ancestral polyploidy in seed plants and angiosperms

生物 基因组 基因 植物 开花植物 多倍体 进化生物学 植物进化 遗传学 倍性
作者
Yuannian Jiao,Norman J. Wickett,Saravanaraj Ayyampalayam,André S. Chanderbali,Lena Landherr,Paula E. Ralph,Lynn P. Tomsho,Yi Hu,Haiying Liang,Pamela S. Soltis,Pamela S. Soltis,Sandra W. Clifton,Scott E. Schlarbaum,Stephan C. Schuster,Hong Mā,Jim Leebens‐Mack,Claude W. dePamphilis
出处
期刊:Nature [Nature Portfolio]
卷期号:473 (7345): 97-100 被引量:2363
标识
DOI:10.1038/nature09916
摘要

Whole-genome duplication (WGD), or polyploidy, followed by gene loss and diploidization has long been recognized as an important evolutionary force in animals, fungi and other organisms, especially plants. The success of angiosperms has been attributed, in part, to innovations associated with gene or whole-genome duplications, but evidence for proposed ancient genome duplications pre-dating the divergence of monocots and eudicots remains equivocal in analyses of conserved gene order. Here we use comprehensive phylogenomic analyses of sequenced plant genomes and more than 12.6 million new expressed-sequence-tag sequences from phylogenetically pivotal lineages to elucidate two groups of ancient gene duplications-one in the common ancestor of extant seed plants and the other in the common ancestor of extant angiosperms. Gene duplication events were intensely concentrated around 319 and 192 million years ago, implicating two WGDs in ancestral lineages shortly before the diversification of extant seed plants and extant angiosperms, respectively. Significantly, these ancestral WGDs resulted in the diversification of regulatory genes important to seed and flower development, suggesting that they were involved in major innovations that ultimately contributed to the rise and eventual dominance of seed plants and angiosperms.
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