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植物中渗透感受器的研究。

The quest for osmosensors in plants.

机构信息

Stress Physiology and Molecular Biology Laboratory, School of Life Sciences, Jawaharlal Nehru University, New Delhi, India.

International Centre for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi, India.

出版信息

J Exp Bot. 2020 Jan 7;71(2):595-607. doi: 10.1093/jxb/erz263.

Abstract

Osmotic stress has severe effects on crop productivity. Since climate change is predicted to exacerbate this problem, the development of new crops that are tolerant to osmotic stresses, especially drought and salinity stress, is required. However, only limited success has been achieved to date, primarily because of the lack of a clear understanding of the mechanisms that facilitate osmosensing. Here, we discuss the potential mechanisms of osmosensing in plants. We highlight the roles of proteins such as receptor-like kinases, which sense stress-induced cell wall damage, mechanosensitive calcium channels, which initiate a calcium-induced stress response, and phospholipase C, a membrane-bound enzyme that is integral to osmotic stress perception. We also discuss the roles of aquaporins and membrane-bound histidine kinases, which could potentially detect changes in extracellular osmolarity in plants, as they do in prokaryotes and lower eukaryotes. These putative osmosensors have the potential to serve as master regulators of the osmotic stress response in plants and could prove to be useful targets for the selection of osmotic stress-tolerant crops.

摘要

渗透胁迫对作物生产力有严重影响。由于预计气候变化会加剧这一问题,因此需要开发新的作物品种,使其能够耐受渗透胁迫,特别是干旱和盐胁迫。然而,迄今为止,仅取得了有限的成功,这主要是因为人们对促进渗透感应的机制缺乏清晰的认识。在这里,我们讨论了植物中渗透感应的潜在机制。我们强调了受体样激酶等蛋白质的作用,这些蛋白质可以感知应激诱导的细胞壁损伤;机械敏感钙通道,它启动钙诱导的应激反应;以及质膜结合酶磷脂酶 C,它是渗透胁迫感知的重要组成部分。我们还讨论了水通道蛋白和质膜结合组氨酸激酶的作用,它们可能在植物中检测到细胞外渗透压的变化,就像在原核生物和低等真核生物中一样。这些推测的渗透感受器有可能成为植物渗透胁迫反应的主要调节因子,并可能成为选择耐渗透胁迫作物的有用目标。

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