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用于抗非生物胁迫作物的光生物技术:最新进展与前景

Photobiotechnology for abiotic stress resilient crops: Recent advances and prospects.

作者信息

Gururani Mayank Anand

机构信息

Biology Department, College of Science, UAE University, Al Ain, United Arab Emirates.

出版信息

Heliyon. 2023 Sep 15;9(9):e20158. doi: 10.1016/j.heliyon.2023.e20158. eCollection 2023 Sep.

Abstract

Massive crop failures worldwide are caused by abiotic stress. In plants, adverse environmental conditions cause extensive damage to the overall physiology and agronomic yield at various levels. Phytochromes are photosensory phosphoproteins that absorb red (R)/far red (FR) light and play critical roles in different physiological and biochemical responses to light. Considering the role of phytochrome in essential plant developmental processes, genetically manipulating its expression offers a promising approach to crop improvement. Through modulated phytochrome-mediated signalling pathways, plants can become more resistant to environmental stresses by increasing photosynthetic efficiency, antioxidant activity, and expression of genes associated with stress resistance. Plant growth and development in adverse environments can be improved by understanding the roles of phytochromes in stress tolerance characteristics. A comprehensive overview of recent findings regarding the role of phytochromes in modulating abiotic stress by discussing biochemical and molecular aspects of these mechanisms of photoreceptors is offered in this review.

摘要

全球范围内的大规模作物歉收是由非生物胁迫造成的。在植物中,不利的环境条件会在各个层面上对整体生理和农艺产量造成广泛损害。光敏色素是一种光感受磷蛋白,可吸收红光(R)/远红光(FR),并在对光的不同生理和生化反应中发挥关键作用。鉴于光敏色素在植物基本发育过程中的作用,对其表达进行基因操纵为作物改良提供了一种有前景的方法。通过调节光敏色素介导的信号通路,植物可以通过提高光合效率、抗氧化活性以及与抗逆性相关基因的表达来增强对环境胁迫的抵抗力。通过了解光敏色素在胁迫耐受特性中的作用,可以改善植物在不利环境中的生长和发育。本综述通过讨论这些光感受器机制的生化和分子方面,全面概述了关于光敏色素在调节非生物胁迫中作用的最新研究结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37b6/10559926/dd0cb1d69772/gr1.jpg

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