Diverse projected climate change scenarios affect the physiology of broccoli plants to different extents

非生物成分 光合作用 蒸腾作用 植物生理学 非生物胁迫 气候变化 农学 生态生理学 生物 园艺 植物 化学 生态学 生物化学 基因
作者
Mónica Pineda,Matilde Barón,María Luisa Pérez‐Bueno
出处
期刊:Physiologia Plantarum [Wiley]
卷期号:176 (2) 被引量:1
标识
DOI:10.1111/ppl.14269
摘要

Abstract Climate change caused by global warming involves crucial plant growth factors such as atmospheric CO 2 concentration, ambient temperature or water availability. These stressors usually co‐occur, causing intricate alterations in plant physiology and development. This work focuses on how elevated atmospheric CO 2 levels, together with the concomitant high temperature, would affect the physiology of a relevant crop, such as broccoli. Particular attention has been paid to those defence mechanisms that contribute to plant fitness under abiotic stress. Results show that both photosynthesis and leaf transpiration were reduced in plants grown under climate change environments compared to those grown under current climate conditions. Furthermore, an induction of carbohydrate catabolism pointed to a redistribution from primary to secondary metabolism. This result could be related to a reinforcement of cell walls, as well as to an increase in the pool of antioxidants in the leaves. Broccoli plants, a C 3 crop, grown under an intermediate condition showed activation of those adaptive mechanisms, which would contribute to coping with abiotic stress, as confirmed by reduced levels of lipid peroxidation relative to current climate conditions. On the contrary, the most severe climate change scenario exceeded the adaptive capacity of broccoli plants, as shown by the inhibition of growth and reduced vigour of plants. In conclusion, only a moderate increase in atmospheric CO 2 concentration and temperature would not have a negative impact on broccoli crop yields.
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