The roles of photorespiration and alternative electron acceptors in the responses of photosynthesis to elevated temperatures in cowpea

光呼吸 光合作用 光防护 鲁比斯科 电子受体 固碳 水槽(地理) 生物物理学 同化(音韵学) 化学 植物 光化学 电子传输链 叶绿体 生物 C4光合作用 哲学 地图学 地理 语言学
作者
Isaac Osei-Bonsu,Alan M. McClain,Berkley J. Walker,Thomas D. Sharkey,David Kramer
出处
期刊:Plant Cell and Environment [Wiley]
卷期号:44 (7): 2290-2307 被引量:10
标识
DOI:10.1111/pce.14026
摘要

We explored the effects, on photosynthesis in cowpea (Vigna unguiculata) seedlings, of high temperature and light-environmental stresses that often co-occur under field conditions and can have greater impact on photosynthesis than either by itself. We observed contrasting responses in the light and carbon assimilatory reactions, whereby in high temperature, the light reactions were stimulated while CO2 assimilation was substantially reduced. There were two striking observations. Firstly, the primary quinone acceptor (QA ), a measure of the regulatory balance of the light reactions, became more oxidized with increasing temperature, suggesting increased electron sink capacity, despite the reduced CO2 fixation. Secondly, a strong, O2 -dependent inactivation of assimilation capacity, consistent with down-regulation of rubisco under these conditions. The dependence of these effects on CO2 , O2 and light led us to conclude that both photorespiration and an alternative electron acceptor supported increased electron flow, and thus provided photoprotection under these conditions. Further experiments showed that the increased electron flow was maintained by rapid rates of PSII repair, particularly at combined high light and temperature. Overall, the results suggest that photodamage to the light reactions can be avoided under high light and temperatures by increasing electron sink strength, even when assimilation is strongly suppressed.
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