Radha Beena, Sunitha Nagenahalli Chandrappa, Sah Rameswar P, T P Md Azharudheen, Krishna G K, Umesh Deepika Kumar, Thomas Sini, Anilkumar Chandrappa, Upadhyay Sameer, Kumar Awadhesh, Ch L N Manikanta, S Behera, Marndi Bishnu Charan, Siddique Kadambot H M
Department of Plant Physiology, Kerala Agricultural University-College of Agriculture, Vellayani, Thiruvananthapuram, Kerala, India.
Department of Genetics and Plant Breeding, University of Agricultural Sciences, Bangalore, Karnataka, India.
Front Plant Sci. 2023 Jan 11;13:996514. doi: 10.3389/fpls.2022.996514. eCollection 2022.
Abiotic stresses adversely affect rice yield and productivity, especially under the changing climatic scenario. Exposure to multiple abiotic stresses acting together aggravates these effects. The projected increase in global temperatures, rainfall variability, and salinity will increase the frequency and intensity of multiple abiotic stresses. These abiotic stresses affect paddy physiology and deteriorate grain quality, especially milling quality and cooking characteristics. Understanding the molecular and physiological mechanisms behind grain quality reduction under multiple abiotic stresses is needed to breed cultivars that can tolerate multiple abiotic stresses. This review summarizes the combined effect of various stresses on rice physiology, focusing on grain quality parameters and yield traits, and discusses strategies for improving grain quality parameters using high-throughput phenotyping with approaches.
非生物胁迫对水稻产量和生产力产生不利影响,尤其是在气候变化的情况下。同时暴露于多种非生物胁迫会加剧这些影响。预计全球气温升高、降雨变化和盐度增加将提高多种非生物胁迫的频率和强度。这些非生物胁迫影响水稻生理并降低谷物品质,尤其是碾磨品质和蒸煮特性。为培育能够耐受多种非生物胁迫的品种,需要了解多种非生物胁迫下谷物品质下降背后的分子和生理机制。本综述总结了各种胁迫对水稻生理的综合影响,重点关注谷物品质参数和产量性状,并讨论了使用高通量表型分析方法改善谷物品质参数的策略。