种质资源
热应力
生物
农业
特质
生物技术
农学
计算机科学
生态学
动物科学
程序设计语言
作者
Bo Liu,Lei Song,Xuan Deng,Yongen Lu,Michal Lieberman‐Lazarovich,Sergey Shabala,Bo Ouyang
标识
DOI:10.1016/j.scienta.2023.112435
摘要
Global warming is one of the most concerning challenges that human beings are facing. The occurrence and intensity of heat stress events are expected only to increase, with a major negative impact on agricultural production systems. Tomato is one of the most important vegetable crops worldwide, but it is highly sensitive to heat stress. Genetic improvement of heat tolerance will be critical for the sustainable production of tomato. Here, we provide an update on various aspects of tomato heat stress response and tolerance, including the various indicators used in heat tolerance evaluation, germplasm and quantitative trait loci, physiological mechanisms and molecular basis of tomato heat tolerance. Finally, we highlight the main challenges and the required future efforts in tomato heat tolerance research.
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