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抗坏血酸在光化学和热阶段均能减轻高羊茅光系统II中热胁迫造成的损伤。

Ascorbic Acid Alleviates Damage from Heat Stress in the Photosystem II of Tall Fescue in Both the Photochemical and Thermal Phases.

作者信息

Chen Ke, Zhang Minna, Zhu Huihui, Huang Meiyu, Zhu Qing, Tang Diyong, Han Xiaole, Li Jinlin, Sun Jie, Fu Jinmin

机构信息

College of Resources and Environmental Science, South-Central University for NationalitiesWuhan, China.

Key Laboratory of Plant Germplasm Enhancement and Specialty Agriculture, Wuhan Botanical Garden, The Chinese Academy of SciencesWuhan, China.

出版信息

Front Plant Sci. 2017 Aug 8;8:1373. doi: 10.3389/fpls.2017.01373. eCollection 2017.

Abstract

L-Ascorbate (Asc) plays important roles in plant development, hormone signaling, the cell cycle and cellular redox system, etc. The higher content of Asc in plant chloroplasts indicates its important role in the photosystem. The objective of this study was to study the roles of Asc in tall fescue leaves against heat stress. After a heat stress treatment, we observed a lower value of the maximum quantum yield for primary photochemistry (φ), which reflects the inhibited activity of the photochemical phase of photosystem II (PSII). Moreover, we observed a higher value of efficiency of electron transfer from Q to photosystem I acceptors (δ), which reflects elevated activity of the thermal phase of the photosystem of the tall fescue. The addition of Asc facilitate the behavior of the photochemical phase of the PSII by lowering the ROS content as well as that of the alternative electron donor to provide electron to the tyrosine residue of the D1 protein. Additionally, exogenous Asc reduces the activity of the thermal phase of the photosystem, which could contribute to the limitation of energy input into the photosystem in tall fescue against heat stress. Synthesis of the Asc increased under heat stress treatment. However, under heat stress this regulation does not occur at the transcription level and requires further study.

摘要

L-抗坏血酸(Asc)在植物发育、激素信号传导、细胞周期和细胞氧化还原系统等方面发挥着重要作用。植物叶绿体中较高的Asc含量表明其在光系统中具有重要作用。本研究的目的是研究Asc在高羊茅叶片抗热胁迫中的作用。经过热胁迫处理后,我们观察到初级光化学最大量子产额(φ)的值较低,这反映了光系统II(PSII)光化学阶段的活性受到抑制。此外,我们观察到从Q到光系统I受体的电子传递效率(δ)的值较高,这反映了高羊茅光系统热阶段的活性升高。添加Asc通过降低活性氧含量以及替代电子供体的含量来促进PSII光化学阶段的行为,从而为D1蛋白的酪氨酸残基提供电子。此外,外源Asc降低了光系统热阶段的活性,这可能有助于限制高羊茅光系统在热胁迫下的能量输入。在热胁迫处理下,Asc的合成增加。然而,在热胁迫下,这种调节并非发生在转录水平,需要进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c99/5550716/fe225f7e53be/fpls-08-01373-g001.jpg

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