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探究叶片水势变化过程中 aquaporin 的功能。

Exploring aquaporin functions during changes in leaf water potential.

作者信息

Byrt Caitlin S, Zhang Rose Y, Magrath Isobel, Chan Kai Xun, De Rosa Annamaria, McGaughey Samantha

机构信息

Division of Plant Sciences, Research School of Biology, College of Science, Australian National University, Acton, ACT, Australia.

出版信息

Front Plant Sci. 2023 Aug 8;14:1213454. doi: 10.3389/fpls.2023.1213454. eCollection 2023.

Abstract

Maintenance of optimal leaf tissue humidity is important for plant productivity and food security. Leaf humidity is influenced by soil and atmospheric water availability, by transpiration and by the coordination of water flux across cell membranes throughout the plant. Flux of water and solutes across plant cell membranes is influenced by the function of aquaporin proteins. Plants have numerous aquaporin proteins required for a multitude of physiological roles in various plant tissues and the membrane flux contribution of each aquaporin can be regulated by changes in protein abundance, gating, localisation, post-translational modifications, protein:protein interactions and aquaporin stoichiometry. Resolving which aquaporins are candidates for influencing leaf humidity and determining how their regulation impacts changes in leaf cell solute flux and leaf cavity humidity is challenging. This challenge involves resolving the dynamics of the cell membrane aquaporin abundance, aquaporin sub-cellular localisation and location-specific post-translational regulation of aquaporins in membranes of leaf cells during plant responses to changes in water availability and determining the influence of cell signalling on aquaporin permeability to a range of relevant solutes, as well as determining aquaporin influence on cell signalling. Here we review recent developments, current challenges and suggest open opportunities for assessing the role of aquaporins in leaf substomatal cavity humidity regulation.

摘要

维持叶片组织的最佳湿度对植物生产力和粮食安全至关重要。叶片湿度受土壤和大气水分可利用性、蒸腾作用以及整个植物细胞膜水通量协调的影响。水和溶质在植物细胞膜上的通量受水通道蛋白功能的影响。植物有许多水通道蛋白,它们在各种植物组织中发挥多种生理作用,每种水通道蛋白对膜通量的贡献可通过蛋白质丰度、门控、定位、翻译后修饰、蛋白质 - 蛋白质相互作用和水通道蛋白化学计量的变化来调节。确定哪些水通道蛋白是影响叶片湿度的候选者,并确定它们的调节如何影响叶细胞溶质通量和叶腔湿度的变化具有挑战性。这一挑战涉及解析在植物对水分可利用性变化的响应过程中,叶细胞膜水通道蛋白丰度的动态变化、水通道蛋白亚细胞定位以及叶细胞膜中水通道蛋白的位置特异性翻译后调控,并确定细胞信号传导对水通道蛋白对一系列相关溶质通透性的影响,以及确定水通道蛋白对细胞信号传导的影响。在此,我们综述了近期的进展、当前的挑战,并提出了评估水通道蛋白在叶下气孔腔湿度调节中作用的开放机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ef0/10442719/933c99074e44/fpls-14-1213454-g001.jpg

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