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首页> 外文期刊>Journal of Experimental Botany >Insights into Populus XIP aquaporins: evolutionary expansion, protein functionality, and environmental regulation.
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Insights into Populus XIP aquaporins: evolutionary expansion, protein functionality, and environmental regulation.

机译:对 Populus XIP水通道蛋白的认识:进化扩展,蛋白质功能和环境调节。

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摘要

A novel category of major intrinsic proteins which share weak similarities with previously identified aquaporin subfamilies was recently identified in land plants, and named X (for unrecognized) intrinsic proteins (XIPs). Because XIPs are still ranked as uncharacterized proteins, their further molecular characterization is required. Herein, a systematic fine-scale analysis of XIP sequences found in flowering plant databases revealed that XIPs are found in at least five groups. The phylogenetic relationship of these five groups with the phylogenetic organization of angiosperms revealed an original pattern of evolution for the XIP subfamily through distinct angiosperm taxon-specific clades. Of all flowering plant having XIPs, the genus Populus encompasses the broadest panel and the highest polymorphism of XIP isoforms, with nine PtXIP sequences distributed within three XIP groups. Comprehensive PtXIP gene expression patterns showed that only two isoforms (PtXIP2;1 and PtXIP3;2) were transcribed in vegetative tissues. However, their patterns are contrasted, PtXIP2;1 was ubiquitously accumulated whereas PtXIP3;2 was predominantly detected in wood and to a lesser extent in roots. Furthermore, only PtXIP2;1 exhibited a differential expression in leaves and stems of drought-, salicylic acid-, or wounding-challenged plants. Unexpectedly, the PtXIPs displayed different abilities to alter water transport upon expression in Xenopus laevis oocytes. PtXIP2;1 and PtXIP3;3 transported water while other PtXIPs did not.
机译:最近在陆地植物中鉴定了一种新型的主要内在蛋白,其与先前鉴定的水通道蛋白亚家族具有弱相似性,并将其命名为X(未识别)内在蛋白(XIP)。由于XIP仍被列为未表征的蛋白质,因此需要对其进行进一步的分子表征。在本文中,对开花植物数据库中发现的XIP序列的系统精细分析表明,在至少五个组中发现了XIP。这五个群体与被子植物的系统发育关系之间的系统发育关系揭示了通过独特的被子植物分类单元进化出的XIP亚科的原始进化模式。在所有具有XIP的开花植物中,杨(Populus)属涵盖了XIP同工型的最宽面板和最高多态性,在三个XIP组中分布了9个Pt XIP序列。全面的 PtXIP 基因表达模式表明,在营养组织中仅转录了两个同工型( PtXIP2; 1 和 PtXIP3; 2 )。但是,它们的模式却相反, PtXIP2; 1 普遍存在,而 PtXIP3; 2 主要在木材中检出,而在根部检出的程度较小。此外,只有 Pt XIP2; 1在干旱,水杨酸或受伤的植物的叶片和茎中显示出差异表达。出乎意料的是, Pt XIP在Xenopus laevis 卵母细胞中表达后表现出不同的改变水运输的能力。 Pt XIP2; 1和 Pt XIP3; 3输送水,而其他PtXIP则不。

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