Li Yu-Ting, Liu Mei-Jun, Li Ying, Liu Peng, Zhao Shi-Jie, Gao Hui-Yuan, Zhang Zi-Shan
State Key Lab of Crop Biology, College of Life Sciences, Shandong Agricultural University, Tai'an, Shandong Province, China.
College of Agronomy, Shandong Agricultural University, Tai'an, Shandong Province, China.
Plant J. 2020 Oct;104(2):403-415. doi: 10.1111/tpj.14931. Epub 2020 Jul 28.
The mitochondrial alternative pathway (AP) represents an important photoprotective mechanism for the chloroplast, but the temperature sensitivity of its photoprotective role is unknown. In this study, using the aox1a Arabidopsis mutant, the photoprotective role of the AP was verified under various temperatures, and the mechanism underlying the temperature sensitivity of the AP's photoprotective role was clarified. It was observed that the photoprotective role of the AP increased with rising temperature but was absent at low temperature. The photoprotective role of the AP was severely reduced under non-photorespiratory conditions. Disturbance of the AP inhibited the conversion of glycine to serine in mitochondria, which may restrain upstream photorespiratory metabolism and aggravate photoinhibition. With rising temperatures, photorespiration accelerated and the restraint of photorespiration caused by disturbance of the AP also increased, determining the temperature sensitivity of the AP's photoprotective role. We also verified that not only the AP but also the cytochrome pathway in mitochondria contributes to photoprotection by maintaining photorespiration.
线粒体交替途径(AP)是叶绿体重要的光保护机制,但其光保护作用的温度敏感性尚不清楚。在本研究中,利用拟南芥aox1a突变体,在不同温度下验证了AP的光保护作用,并阐明了AP光保护作用温度敏感性的潜在机制。研究发现,AP的光保护作用随温度升高而增强,但在低温下不存在。在非光呼吸条件下,AP的光保护作用严重降低。AP的紊乱抑制了线粒体中甘氨酸向丝氨酸的转化,这可能会抑制上游的光呼吸代谢并加重光抑制。随着温度升高,光呼吸加速,AP紊乱对光呼吸的抑制作用也增强,这决定了AP光保护作用的温度敏感性。我们还证实,线粒体中的AP和细胞色素途径不仅通过维持光呼吸来促进光保护。