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蛋白酶在决定气孔发育和调节气孔孔径中的作用:综述

The Role of Proteases in Determining Stomatal Development and Tuning Pore Aperture: A Review.

作者信息

Fanourakis Dimitrios, Nikoloudakis Nikolaos, Pappi Polyxeni, Markakis Emmanouil, Doupis Georgios, Charova Spyridoula N, Delis Costas, Tsaniklidis Georgios

机构信息

Department of Agriculture, School of Agricultural Sciences, Hellenic Mediterranean University, Estavromenos, Heraklion, 71500 Crete, Greece.

Giannakakis SA, Export Fruits and Vegetables, Tympaki, 70200 Crete, Greece.

出版信息

Plants (Basel). 2020 Mar 8;9(3):340. doi: 10.3390/plants9030340.

Abstract

Plant proteases, the proteolytic enzymes that catalyze protein breakdown and recycling, play an essential role in a variety of biological processes including stomatal development and distribution, as well as, systemic stress responses. In this review, we summarize what is known about the participation of proteases in both stomatal organogenesis and on the stomatal pore aperture tuning, with particular emphasis on their involvement in numerous signaling pathways triggered by abiotic and biotic stressors. There is a compelling body of evidence demonstrating that several proteases are directly or indirectly implicated in the process of stomatal development, affecting stomatal index, density, spacing, as well as, size. In addition, proteases are reported to be involved in a transient adjustment of stomatal aperture, thus orchestrating gas exchange. Consequently, the proteases-mediated regulation of stomatal movements considerably affects plants' ability to cope not only with abiotic stressors, but also to perceive and respond to biotic stimuli. Even though the determining role of proteases on stomatal development and functioning is just beginning to unfold, our understanding of the underlying processes and cellular mechanisms still remains far from being completed.

摘要

植物蛋白酶是催化蛋白质分解和循环利用的蛋白水解酶,在包括气孔发育与分布以及系统性应激反应在内的多种生物学过程中发挥着重要作用。在本综述中,我们总结了蛋白酶在气孔器官发生和气孔孔径调节方面的已知情况,特别强调了它们参与由非生物和生物应激源触发的众多信号通路。有大量令人信服的证据表明,几种蛋白酶直接或间接参与气孔发育过程,影响气孔指数、密度、间距以及大小。此外,据报道蛋白酶参与气孔孔径的瞬时调节,从而协调气体交换。因此,蛋白酶介导的气孔运动调节不仅极大地影响植物应对非生物应激源的能力,还影响其感知和响应生物刺激的能力。尽管蛋白酶对气孔发育和功能的决定性作用才刚刚开始显现,但我们对其潜在过程和细胞机制的理解仍远未完成。

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