Combined high light and heat stress induced complex response in tomato with better leaf cooling after heat priming

启动(农业) 光合作用 类胡萝卜素 热应力 光强度 叶绿素 园艺 光系统II 叶绿素a 化学 生物 植物 动物科学 苗木 光学 物理
作者
Rong Zhou,Xiaqing Yu,Xiangnan Li,Thayna Mendanha,Eva Rosenqvist,Carl‐Otto Ottosen
出处
期刊:Plant Physiology and Biochemistry [Elsevier]
卷期号:151: 1-9 被引量:35
标识
DOI:10.1016/j.plaphy.2020.03.011
摘要

Light and temperature are two primary environmental factors for plant growth and development. The response of plants to multiple stresses of high light intensity and heat stress are complex. The priming effects of high light and heat stress on improving heat tolerance of plants need to be further illuminated. This study aimed to explain the effect of high light intensity, high temperature and their combination on tomato and clarify the response of tomato to heat stress after priming. Tomato plants were treated under control, high light, heat stress and the combination for the first-round treatments, followed by recurring heat stress as the second-round treatments. For the first-round treatments, the net photosynthetic rate (PN) of the plants at individual high light and individual high temperature on day four significantly increased and decreased, respectively, as compared with control. Combined stress caused significant reduction in Fv/Fm (maximum quantum efficiency of photosystem II) and chlorophyll content as well as increase in carotenoids and carbohydrates content. No significant difference in the PN was observed in tomato with and without priming; however, heat priming did improve the heat avoidance ability by increasing evaporation and decreasing leaf temperature. Overall, the high light affected the physiological response of tomatoes at heat stress. The tomato plants developed their defense systems including chlorophyll loss and synthesis of carotenoids to protect themselves from multiple stresses. Our work provided new insights into the understanding of plants response to high light and heat stress.
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