Vishwakarma Kanchan, Upadhyay Neha, Kumar Nitin, Yadav Gaurav, Singh Jaspreet, Mishra Rohit K, Kumar Vivek, Verma Rishi, Upadhyay R G, Pandey Mayank, Sharma Shivesh
Department of Biotechnology, Motilal Nehru National Institute of Technology Allahabad, India.
Department of Biotechnology, Motilal Nehru National Institute of TechnologyAllahabad, India; Centre for Medical Diagnostic and Research, Motilal Nehru National Institute of TechnologyAllahabad, India.
Front Plant Sci. 2017 Feb 20;8:161. doi: 10.3389/fpls.2017.00161. eCollection 2017.
Abiotic stress is one of the severe stresses of environment that lowers the growth and yield of any crop even on irrigated land throughout the world. A major phytohormone abscisic acid (ABA) plays an essential part in acting toward varied range of stresses like heavy metal stress, drought, thermal or heat stress, high level of salinity, low temperature, and radiation stress. Its role is also elaborated in various developmental processes including seed germination, seed dormancy, and closure of stomata. ABA acts by modifying the expression level of gene and subsequent analysis of - and -acting regulatory elements of responsive promoters. It also interacts with the signaling molecules of processes involved in stress response and development of seeds. On the whole, the stress to a plant can be susceptible or tolerant by taking into account the coordinated activities of various stress-responsive genes. Numbers of transcription factor are involved in regulating the expression of ABA responsive genes by acting together with their respective -acting elements. Hence, for improvement in stress-tolerance capacity of plants, it is necessary to understand the mechanism behind it. On this ground, this article enlightens the importance and role of ABA signaling with regard to various stresses as well as regulation of ABA biosynthetic pathway along with the transcription factors for stress tolerance.
非生物胁迫是环境的严重胁迫之一,即使在全世界的灌溉土地上,也会降低任何作物的生长和产量。一种主要的植物激素脱落酸(ABA)在应对各种胁迫方面起着至关重要的作用,如重金属胁迫、干旱、热胁迫、高盐度、低温和辐射胁迫。其作用也体现在包括种子萌发、种子休眠和气孔关闭在内的各种发育过程中。ABA通过改变基因的表达水平以及随后对响应启动子的顺式作用调控元件的分析来发挥作用。它还与参与种子应激反应和发育过程的信号分子相互作用。总体而言,考虑到各种应激反应基因的协同活动,植物对胁迫可能敏感或耐受。许多转录因子通过与它们各自的顺式作用元件共同作用来参与调控ABA响应基因的表达。因此,为了提高植物的抗逆能力,有必要了解其背后的机制。基于此,本文阐述了ABA信号在各种胁迫方面的重要性和作用,以及ABA生物合成途径的调控和参与胁迫耐受的转录因子。