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Diversifying Evolution of the Ubiquitin-26S Proteasome System in Brassicaceae and Poaceae

机译:十字花科和禾本科中泛素-26S蛋白酶体系统的多样化进化。

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摘要

Genome amplification and sequence divergence provides raw materials to allow organismal adaptation. This is exemplified by the large expansion of the ubiquitin-26S proteasome system (UPS) in land plants, which primarily rely on intracellular signaling and biochemical metabolism to combat biotic and abiotic stresses. While a handful of functional genomic studies have demonstrated the adaptive role of the UPS in plant growth and development, many UPS members remain unknown. In this work, we applied a comparative genomic study to address the functional divergence of the UPS at a systematic level. We first used a closing-target-trimming annotation approach to identify most, if not all, UPS members in six species from each of two evolutionarily distant plant families, Brassicaceae and Poaceae. To reduce age-related errors, the two groups of species were selected based on their similar chronological order of speciation. Through size comparison, chronological expansion inference, evolutionary selection analyses, duplication mechanism prediction, and functional domain enrichment assays, we discovered significant diversities within the UPS, particularly between members from its three largest ubiquitin ligase gene families, the F-box (FBX), the Really Interesting New Gene (RING), and the Bric-a-Brac/Tramtrack/Broad Complex (BTB) families, between Brassicaceae and Poaceae. Uncovering independent Arabidopsis and Oryza genus–specific subclades of the 26S proteasome subunits from a comprehensive phylogenetic analysis further supported a diversifying evolutionary model of the UPS in these two genera, confirming its role in plant adaptation.
机译:基因组扩增和序列差异为生物适应提供了原材料。陆地植物中泛素-26S蛋白酶体系统(UPS)的大规模扩展就是例证,这主要依靠细胞内信号传导和生化代谢来对抗生物和非生物胁迫。尽管少数功能基因组学研究证明了UPS在植物生长和发育中的适应性作用,但许多UPS成员仍然未知。在这项工作中,我们进行了比较基因组研究,以系统地解决UPS的功能分歧。我们首先使用封闭目标修剪注释方法来识别来自两个进化距离很远的植物科(十字花科和禾本科)中六个物种中的大多数(如果不是全部)UPS成员。为了减少与年龄相关的错误,根据物种的相似时间顺序选择了两组物种。通过大小比较,按时间顺序扩展的推论,进化选择分析,复制机制预测和功能域富集测定,我们发现UPS内部存在显着多样性,尤其是其三个最大的泛素连接酶基因家族F-box(FBX)成员之间,十字花科和禾本科之间的真正有趣的新基因(RING)和Bric-a-Brac / Tramtrack / Broad复合体(BTB)家族。通过全面的系统发育分析发现26S蛋白酶体亚基的独立拟南芥属和Oryza属特异性亚群,进一步支持了这两个属中UPS的多样化进化模型,证实了其在植物适应中的作用。

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