Lau Su-Ee, Hamdan Mohd Fadhli, Pua Teen-Lee, Saidi Noor Baity, Tan Boon Chin
Centre for Research in Biotechnology for Agriculture, University of Malaya, Kuala Lumpur 50603, Malaysia.
Department of Cell and Molecular Biology, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, Serdang 43400, Malaysia.
Plants (Basel). 2021 Feb 13;10(2):360. doi: 10.3390/plants10020360.
Water deficit caused by drought is a significant threat to crop growth and production. Nitric oxide (NO), a water- and lipid-soluble free radical, plays an important role in cytoprotection. Apart from a few studies supporting the role of NO in drought responses, little is known about this pivotal molecular amendment in the regulation of abiotic stress signaling. In this review, we highlight the knowledge gaps in NO roles under drought stress and the technical challenges underlying NO detection and measurements, and we provide recommendations regarding potential avenues for future investigation. The modulation of NO production to alleviate abiotic stress disturbances in higher plants highlights the potential of genetic manipulation to influence NO metabolism as a tool with which plant fitness can be improved under adverse growth conditions.
干旱导致的水分亏缺是作物生长和产量的重大威胁。一氧化氮(NO)是一种水溶性和脂溶性自由基,在细胞保护中发挥重要作用。除了少数支持NO在干旱响应中作用的研究外,对于这种关键分子修饰在非生物胁迫信号调节中的作用知之甚少。在本综述中,我们强调了干旱胁迫下NO作用方面的知识空白以及NO检测和测量背后的技术挑战,并提供了关于未来潜在研究途径的建议。调节NO生成以减轻高等植物中的非生物胁迫干扰,凸显了基因操作作为一种工具影响NO代谢的潜力,利用该工具可在不利生长条件下提高植物适应性。