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植物特有的含BURP蛋白家族的分化与正选择

The divergence and positive selection of the plant-specific BURP-containing protein family.

作者信息

Wang Lihui, Wu Ningning, Zhu Yan, Song Wanlu, Zhao Xin, Li Yaxuan, Hu Yingkao

机构信息

College of Life Sciences Capital Normal University Beijing 100048 China.

出版信息

Ecol Evol. 2015 Nov 2;5(22):5394-5412. doi: 10.1002/ece3.1792. eCollection 2015 Nov.

Abstract

BURP domain-containing proteins belong to a plant-specific protein family and have diverse roles in plant development and stress responses. However, our understanding about the genetic divergence patterns and evolutionary rates of these proteins remain inadequate. In this study, 15 plant genomes were explored to elucidate the genetic origins, divergence, and functions of these proteins. One hundred and twenty-five BURP protein-encoding genes were identified from four main plant lineages, including 13 higher plant species. The absence of BURP family genes in unicellular and multicellular algae suggests that this family (1) appeared when plants shifted from relatively stable aquatic environments to land, where conditions are more variable and stressful, and (2) is critical in the adaptation of plants to adverse environments. Promoter analysis revealed that several responsive elements to plant hormones and external environment stresses are concentrated in the promoter region of BURP protein-encoding genes. This finding confirms that these genes influence plant stress responses. Several segmentally and tandem-duplicated gene pairs were identified from eight plant species. Thus, in general, BURP domain-containing genes have been subject to strong positive selection, even though these genes have conformed to different expansion models in different species. Our study also detected certain critical amino acid sites that may have contributed to functional divergence among groups or subgroups. Unexpectedly, all of the critical amino acid residues of functional divergence and positive selection were exclusively located in the C-terminal region of the BURP domain. In conclusion, our results contribute novel insights into the genetic divergence patterns and evolutionary rates of BURP proteins.

摘要

含BURP结构域的蛋白质属于植物特有的蛋白质家族,在植物发育和应激反应中具有多种作用。然而,我们对这些蛋白质的遗传分化模式和进化速率的了解仍然不足。在本研究中,我们探究了15种植物基因组,以阐明这些蛋白质的遗传起源、分化和功能。从四个主要植物谱系(包括13个高等植物物种)中鉴定出了125个编码BURP蛋白的基因。单细胞和多细胞藻类中不存在BURP家族基因,这表明该家族(1)在植物从相对稳定的水生环境转移到条件更具变化性和压力的陆地时出现,(2)对植物适应不利环境至关重要。启动子分析表明,几种对植物激素和外部环境胁迫的响应元件集中在编码BURP蛋白的基因的启动子区域。这一发现证实了这些基因影响植物应激反应。从八个植物物种中鉴定出了几个片段重复和串联重复的基因对。因此,总体而言,含BURP结构域的基因受到了强烈的正选择,尽管这些基因在不同物种中符合不同的扩张模式。我们的研究还检测到了某些可能导致组或亚组间功能分化的关键氨基酸位点。出乎意料的是,功能分化和正选择的所有关键氨基酸残基都仅位于BURP结构域的C末端区域。总之,我们的结果为BURP蛋白的遗传分化模式和进化速率提供了新的见解。

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