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植物中 aquaporins 的分子生理学

Molecular physiology of aquaporins in plants.

作者信息

Maurel C, Javot H, Lauvergeat V, Gerbeau P, Tournaire C, Santoni V, Heyes J

机构信息

Biochimie et Physiologie Moléculaire des Plantes, Agro-M/CNRS/INRA/UM2, Montpellier, France.

出版信息

Int Rev Cytol. 2002;215:105-48. doi: 10.1016/s0074-7696(02)15007-8.

Abstract

In plants, membrane channels of the major intrinsic protein (MIP) super-family exhibit a high diversity with, for instance, 35 homologues in the model species Arabidopsis thaliana. As has been found in other organisms, plant MIPs function as membrane channels permeable to water (aquaporins) and in some cases to small nonelectrolytes. The aim of the present article is to integrate into plant physiology what has been recently learned about the molecular and functional properties of aquaporins in plants. Exhaustive compilation of data in the literature shows that the numerous aquaporin isoforms of plants have specific expression patterns throughout plant development and in response to environmental stimuli. The diversity of aquaporin homologues in plants can also be explained in part by their presence in multiple subcellular compartments. In recent years, there have been numerous reports that describe the activity of water channels in purified membrane vesicles, in isolated organelles or protoplasts, and in intact plant cells or even tissues. Altogether, these data suggest that the transport of water and solutes across plant membranes concerns many facets of plant physiology. Because of the high degree of compartmentation of plant cells, aquaporins may play a critical role in cell osmoregulation. Water uptake in roots represents a typical process in which to investigate the role of aquaporins in transcellular water transport, and the mechanisms and regulations involved are discussed.

摘要

在植物中,主要内在蛋白(MIP)超家族的膜通道具有高度多样性,例如在模式植物拟南芥中有35个同源物。正如在其他生物体中所发现的那样,植物MIPs作为对水(水通道蛋白)以及在某些情况下对小分子非电解质具有通透性的膜通道发挥作用。本文的目的是将最近关于植物水通道蛋白的分子和功能特性的知识整合到植物生理学中。对文献数据的详尽汇编表明,植物中众多的水通道蛋白异构体在植物发育过程中以及对环境刺激的响应中具有特定的表达模式。植物中水通道蛋白同源物的多样性也可以部分地由它们在多个亚细胞区室中的存在来解释。近年来,有许多报道描述了水通道在纯化的膜泡、分离的细胞器或原生质体以及完整的植物细胞甚至组织中的活性。总之,这些数据表明水和溶质跨植物膜的运输涉及植物生理学的许多方面。由于植物细胞的高度区室化,水通道蛋白可能在细胞渗透调节中起关键作用。根中的水分吸收是研究水通道蛋白在跨细胞水分运输中的作用的一个典型过程,文中还讨论了其中涉及的机制和调控。

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