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外源褪黑素强烈影响烟草的动态光合作用并增强其水-水循环。

Exogenous melatonin strongly affects dynamic photosynthesis and enhances water-water cycle in tobacco.

作者信息

Sun Hu, Wang Xiao-Qian, Zeng Zhi-Lan, Yang Ying-Jie, Huang Wei

机构信息

Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Front Plant Sci. 2022 Aug 3;13:917784. doi: 10.3389/fpls.2022.917784. eCollection 2022.

Abstract

Melatonin (MT), an important phytohormone synthesized naturally, was recently used to improve plant resistance against abiotic and biotic stresses. However, the effects of exogenous melatonin on photosynthetic performances have not yet been well clarified. We found that spraying of exogenous melatonin (100 μM) to leaves slightly affected the steady state values of CO assimilation rate ( ), stomatal conductance ( ) and mesophyll conductance ( ) under high light in tobacco leaves. However, this exogenous melatonin strongly delayed the induction kinetics of and , leading to the slower induction speed of . During photosynthetic induction, is mainly limited by biochemistry in the absence of exogenous melatonin, but by CO diffusion conductance in the presence of exogenous melatonin. Therefore, exogenous melatonin can aggravate photosynthetic carbon loss during photosynthetic induction and should be used with care for crop plants grown under natural fluctuating light. Within the first 10 min after transition from low to high light, photosynthetic electron transport rates (ETR) for and photorespiration were suppressed in the presence of exogenous melatonin. Meanwhile, an important alternative electron sink, namely water-water cycle, was enhanced to dissipate excess light energy. These results indicate that exogenous melatonin upregulates water-water cycle to facilitate photoprotection. Taking together, this study is the first to demonstrate that exogenous melatonin inhibits dynamic photosynthesis and improves photoprotection in higher plants.

摘要

褪黑素(MT)是一种自然合成的重要植物激素,最近被用于提高植物对非生物和生物胁迫的抗性。然而,外源褪黑素对光合性能的影响尚未得到充分阐明。我们发现,向烟草叶片喷施外源褪黑素(100 μM)对高光下的CO2同化速率( )、气孔导度( )和叶肉导度( )的稳态值有轻微影响。然而,这种外源褪黑素强烈延迟了 和 的诱导动力学,导致 的诱导速度较慢。在光合诱导过程中,在没有外源褪黑素的情况下, 主要受生物化学限制,而在有外源褪黑素的情况下,受CO2扩散导度限制。因此,外源褪黑素会加剧光合诱导过程中的光合碳损失,对于在自然波动光照下生长的作物应谨慎使用。在从低光过渡到高光后的前10分钟内,在有外源褪黑素的情况下, 的光合电子传递速率(ETR)和光呼吸受到抑制。同时,一个重要的替代电子汇,即水-水循环,被增强以消散多余的光能。这些结果表明,外源褪黑素上调水-水循环以促进光保护。综上所述,本研究首次证明外源褪黑素抑制高等植物的动态光合作用并改善光保护。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0844/9381976/2d77979b4e53/fpls-13-917784-g001.jpg

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