Rong Zi-Yi, Jiang Dao-Ju, Cao Jin-Li, Hashem Abeer, Abd Allah Elsayed Fathi, Alsayed Mashail Fahad, Harsonowati Wiwiek, Wu Qiang-Sheng
College of Horticulture and Gardening, Yangtze University, Jingzhou, China.
Shashi Substation, Jingzhou Municipal Bureau of Natural Resources and Planning, Jingzhou, China.
Front Microbiol. 2022 Aug 1;13:967851. doi: 10.3389/fmicb.2022.967851. eCollection 2022.
Ascorbate-glutathione cycle is an important pathway for plants to scavenge reactive oxygen species (ROS) under environmental stress conditions. The objective of this study was to investigate the effects of the endophytic fungus on biomass, chlorophyll concent, ROS levels, antioxidant enzyme activities, and ascorbate-glutathione cycle in white clover under ample water and water stress conditions. The results showed that 46 days of soil water stress distinctly promoted root colonization by . Under water stress, inoculation significantly promoted shoot and root biomass, total chlorophyll content, and activities of superoxide dismutases (SOD; e.g., Fe-SOD and Cu/Zn-SOD) and peroxidase in roots, coupled with a decrease in malondialdehyde content in roots. In the ascorbate-glutathione cycle of roots, also significantly increased the activity of ascorbate peroxidase and glutathione reductase activities in water-stressed white clover, along with the increase in reduced ascorbic acid and reduced/oxidized glutathione contents, thus accelerating the ascorbate-glutathione cycle in inoculated plants to scavenge more ROS (e.g., hydrogen peroxide). As a result, enhanced the tolerance of white clover in response to water stress by enhancing antioxidant enzyme activities and accelerating the ascorbate-glutathione cycle.
抗坏血酸-谷胱甘肽循环是植物在环境胁迫条件下清除活性氧(ROS)的重要途径。本研究的目的是调查内生真菌对充足水分和水分胁迫条件下白三叶生物量、叶绿素含量、ROS水平、抗氧化酶活性以及抗坏血酸-谷胱甘肽循环的影响。结果表明,46天的土壤水分胁迫显著促进了[内生真菌名称未给出]在根部的定殖。在水分胁迫下,接种[内生真菌名称未给出]显著促进了地上部和根部生物量、总叶绿素含量以及根部超氧化物歧化酶(如铁超氧化物歧化酶和铜/锌超氧化物歧化酶)和过氧化物酶的活性,同时根部丙二醛含量降低。在根部的抗坏血酸-谷胱甘肽循环中,[内生真菌名称未给出]还显著提高了水分胁迫下白三叶中抗坏血酸过氧化物酶和谷胱甘肽还原酶的活性,同时还原型抗坏血酸和还原型/氧化型谷胱甘肽含量增加,从而加速了接种植物中的抗坏血酸-谷胱甘肽循环以清除更多的ROS(如过氧化氢)。结果,[内生真菌名称未给出]通过增强抗氧化酶活性和加速抗坏血酸-谷胱甘肽循环提高了白三叶对水分胁迫的耐受性。