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草莓新水通道蛋白的鉴定、底物预测及其在不同组织和果实发育过程中的表达

Identification and substrate prediction of new aquaporins and expression in different tissues and during strawberry fruit development.

作者信息

Merlaen Britt, De Keyser Ellen, Van Labeke Marie-Christine

机构信息

1Plant Production, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, 9000 Gent, Belgium.

Flanders Research Institute for Agriculture Fisheries and Food (ILVO), Plant Sciences Unit, Caritasstraat 39, 9090 Melle, Belgium.

出版信息

Hortic Res. 2018 Apr 1;5:20. doi: 10.1038/s41438-018-0019-0. eCollection 2018.

Abstract

The newly identified aquaporin coding sequences presented here pave the way for further insights into the plant-water relations in the commercial strawberry (). Aquaporins are water channel proteins that allow water to cross (intra)cellular membranes. In , few of them have been identified hitherto, hampering the exploration of the water transport regulation at cellular level. Here, we present new aquaporin coding sequences belonging to different subclasses: plasma membrane intrinsic proteins subtype 1 and subtype 2 (PIP1 and PIP2) and tonoplast intrinsic proteins (TIP). The classification is based on phylogenetic analysis and is confirmed by the presence of conserved residues. Substrate-specific signature sequences (SSSSs) and specificity-determining positions (SDPs) predict the substrate specificity of each new aquaporin. Expression profiling in leaves, petioles and developing fruits reveals distinct patterns, even within the same (sub)class. Expression profiles range from leaf-specific expression over constitutive expression to fruit-specific expression. Both upregulation and downregulation during fruit ripening occur. Substrate specificity and expression profiles suggest that functional specialization exists among aquaporins belonging to a different but also to the same (sub)class.

摘要

本文中新鉴定出的水通道蛋白编码序列为进一步深入了解商业草莓()中的植物-水分关系铺平了道路。水通道蛋白是允许水穿过(细胞内)细胞膜的水通道蛋白。在 中,迄今为止仅鉴定出少数几种,这阻碍了在细胞水平上对水分运输调节的探索。在这里,我们展示了属于不同亚类的新水通道蛋白编码序列:质膜内在蛋白亚型1和亚型2(PIP1和PIP2)以及液泡膜内在蛋白(TIP)。分类基于系统发育分析,并通过保守残基的存在得到证实。底物特异性特征序列(SSSSs)和特异性决定位置(SDPs)预测了每个新水通道蛋白的底物特异性。在叶片、叶柄和发育中的果实中的表达谱分析揭示了不同的模式,即使在同一(亚)类中也是如此。表达谱范围从叶片特异性表达、组成型表达到果实特异性表达。在果实成熟过程中既有上调也有下调。底物特异性和表达谱表明,属于不同但也属于同一(亚)类的水通道蛋白之间存在功能特化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8912/5880810/724995d06de5/41438_2018_19_Fig1_HTML.jpg

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