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Evolution by duplication: paleopolyploidy events in plants reconstructed by deciphering the evolutionary history of VOZ transcription factors

机译:通过重复的进化:通过解读voz转录因子的进化历史来重建植物的古聚倍性事件

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Facilitated by the rapid progress of sequencing technology, comparative genomic studies in plants have unveiled recurrent whole genome duplication (i.e. polyploidization) events throughout plant evolution. The evolutionary past of plant genes should be analyzed in a background of recurrent polyploidy events in distinctive plant lineages. The Vascular Plant One Zinc-finger (VOZ) gene family encode transcription factors associated with a number of important traits including control of flowering time and photoperiodic pathways, but the evolutionary trajectory of this gene family remains uncharacterized. In this study, we deciphered the evolutionary history of the VOZ gene family by analyses of 107 VOZ genes in 46 plant genomes using integrated methods: phylogenic reconstruction, Ks-based age estimation and genomic synteny comparisons. By scrutinizing the VOZ gene family phylogeny the core eudicot γ event was well circumscribed, and relics of the precommelinid τ duplication event were detected by incorporating genes from oil palm and banana. The more recent T and ρ polyploidy events, closely coincident with the species diversification in Solanaceae and Poaceae, respectively, were also identified. Other important polyploidy events captured included the “salicoid” event in poplar and willow, the “early legume” and “soybean specific” events in soybean, as well as the recent polyploidy event in Physcomitrella patens. Although a small transcription factor gene family, the evolutionary history of VOZ genes provided an outstanding record of polyploidy events in plants. The evolutionary past of VOZ gene family demonstrated a close correlation with critical plant polyploidy events which generated species diversification and provided answer to Darwin’s “abominable mystery”. We deciphered the evolutionary history of VOZ transcription factor family in plants and ancestral polyploidy events in plants were recapitulated simultaneously. This analysis allowed for the generation of an idealized plant gene tree demonstrating distinctive retention and fractionation patterns following polyploidy events.
机译:通过测序技术的快速进展促进,植物中的比较基因组研究在整个植物演进过程中揭开了复发性全基因组重复(即多倍化)事件。在独特的植物谱系中的经常性多倍体事件的背景下,应分析植物基因的进化过去。血管植物一种锌 - 手指(VOZ)基因家族编码与许多重要特征相关的转录因子,包括控制开花时间和光周期途径,但该基因家族的进化轨迹仍然保持不协调。在这项研究中,我们通过使用综合方法分析了46种植物基因组中的107个voz基因的进化历史,通过综合方法:系统发生重建,基于Ks的年龄估计和基因组同步比较。通过仔细筛选Voz基因族来源发育,核心销售γ事件很好地,通过掺入来自油棕和香蕉的基因来检测前髓内τ重复事件的遗物。还确定了最近的T和ρ多倍体事件,分别与Solanaceae和Poaceae的物种多样化密切一致。捕获的其他重要的多倍体事件包括杨树和柳树的“水杨酸”事件,“早期的豆科植物”和大豆的“大豆特定”事件,以及最近的PhysComitrella的多倍体事件。虽然一个小的转录因子基因家族,voz基因的进化史提供了植物中多倍体事件的出色记录。 Voz基因家族的进化过去与临界植物多倍体事件的近似相关,这些事件产生了物种多样化,并为达尔文“可恶的谜团”提供了答案。我们破译了植物中VOZ转录因子家族的进化历史,同时植物中的植物中的祖先多倍体事件。该分析允许产生理想化的植物基因树,其展示了多倍体事件后的独特保留和分馏模式。

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