Light increases resistance of thylakoid membranes to thermal inactivation.

IF 2.7 3区 生物学 Q2 PLANT SCIENCES Journal of Plant Research Pub Date : 2024-10-02 DOI:10.1007/s10265-024-01584-7
Elena Lovyagina, Oksana Luneva, Aleksey Loktyushkin, Boris Semin
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Abstract

In the region of slightly acidic pH (рН 5.7), the manganese cluster in oxygen-evolving complex of photosystem II (PSII) is more resistant to exogenous reductants. The effect of such pH on the heat inactivation efficiency of the electron transport chain (O2 evolution and 2,6-dichlorophenolindophenol reduction) in PSII membranes and thylakoid membranes was investigated. Under thylakoid membranes illumination accompanied by lumen acidification, their resistance to heat inactivation increases. In the presence of protonophores, the rate of heat inactivation increases, which seems to be associated not with the protonophore mechanism, but with structural and/or functional changes in membranes. In PSII membrane preparations, the efficiency of the oxygen evolution inhibition at pH 5.7 is also lower than at pH 6.5. The role of reactive oxygen species in thermal inactivation of photosynthetic membranes was investigated using a lipophilic cyclic hydroxylamine ESR spin probe.

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光能增强类囊体膜对热失活的抵抗力。
在微酸性 pH 值(рН 5.7)区域,光系统 II(PSII)氧进化复合体中的锰簇对外源还原剂的抵抗力更强。研究了这种 pH 值对 PSII 膜和类木质膜中电子传递链(O2 演化和 2,6-二氯苯酚靛酚还原)热失活效率的影响。在伴随着内腔酸化的光照下,类木质膜对热失活的抵抗力增强。在质子团存在的情况下,热失活速率增加,这似乎与质子团机制无关,而是与膜的结构和/或功能变化有关。在 PSII 膜制备过程中,pH 值为 5.7 时抑制氧进化的效率也低于 pH 值为 6.5 时。利用亲脂性环羟胺 ESR 自旋探针研究了活性氧在光合膜热失活中的作用。
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来源期刊
Journal of Plant Research
Journal of Plant Research 生物-植物科学
CiteScore
5.40
自引率
3.60%
发文量
59
审稿时长
1 months
期刊介绍: The Journal of Plant Research is an international publication that gathers and disseminates fundamental knowledge in all areas of plant sciences. Coverage extends to every corner of the field, including such topics as evolutionary biology, phylogeography, phylogeny, taxonomy, genetics, ecology, morphology, physiology, developmental biology, cell biology, molecular biology, biochemistry, biophysics, bioinformatics, and systems biology. The journal presents full-length research articles that describe original and fundamental findings of significance that contribute to understanding of plants, as well as shorter communications reporting significant new findings, technical notes on new methodology, and invited review articles.
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