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首页> 外文期刊>Forest Science >Response of the Photosynthesis and Antioxidant Systems to High-Temperature Stress in Euonymus japonicus Seedlings
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Response of the Photosynthesis and Antioxidant Systems to High-Temperature Stress in Euonymus japonicus Seedlings

机译:大叶卫矛幼苗光合作用和抗氧化系统对高温胁迫的响应

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To uncover the adaptive mechanisms of photosynthesis under high temperatures (HTs), changes in the activity of ribulose-1,5-bisphosphate carboxylase/oxygenase (rubisco), the photosynthetic electron transport system, and antioxidant system were examined in a subtropical forest tree seedling, Euonymus japonicus. Compared with the control, the activity of rubisco and the quantum yield of photosystem (PS) II electron transport (Phi(PSII)) decreased in HT-treated seedlings, whereas energy-dependent quenching of chlorophyll (Chl) fluorescence (qE) increased. An analysis of the redox change of P700 and the oxygen uptake by PSI indicated that the cyclic electron transport around PSI operated at high rates in E. japonicus seedlings exposed to HT conditions. Furthermore, the levels of reactive oxygen species (ROS), the activities of superoxide dismutase, and the activities of ascorbate peroxidase were increased in HT-treated seedlings. Therefore, it is likely that an enzyme-based water-water cycle was initiated in E. japonicus seedlings in response to HT stress and that the HT-induced ROS might play an important function in HT conditions. Enhancement of cyclic electron transport around PSI and water-water cycles might help maintain a transthylakoid energy potential under HT conditions. This coordinated defense may play an important role in adaptation of E. japonicus cells to HT. FOR. SOI. 56(2): 172-180.
机译:为了揭示高温下(HTs)光合作用的适应机制,在亚热带林木幼苗中研究了核糖-1,5-双磷酸羧化酶/加氧酶(rubisco)的活性,光合电子传输系统和抗氧化剂系统的变化。 ,大叶黄杨。与对照相比,HT处理的幼苗的Rubisco活性和光系统(PS)II电子传递的量子产率(Phi(PSII))降低,而叶绿素(Chl)荧光(qE)的能量依赖性猝灭提高。对P700的氧化还原变化和PSI的氧吸收的分析表明,在暴露于HT条件下的日本粳稻幼苗中,PSI周围的循环电子传递以较高的速率运转。此外,HT处理的幼苗中活性氧(ROS)水平,超氧化物歧化酶活性和抗坏血酸过氧化物酶活性均增加。因此,很可能在大叶蝉幼苗中响应HT胁迫而启动了基于酶的水-水循环,并且HT诱导的ROS在HT条件下可能起重要作用。围绕PSI和水-水循环的循环电子传输的增强可能有助于在HT条件下维持跨类囊体能量势。这种协调的防御可能在日本血吸虫细胞适应HT中起重要作用。对于。所以我。 56(2):172-180。

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