The influence of cationic antiseptics on the processes of light energy conversion in various photosynthetic pigment-protein complexes

IF 2.9 3区 生物学 Q2 PLANT SCIENCES
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引用次数: 0

Abstract

The widespread use of disinfectants and antiseptics, and consequently their release into the environment, determines the relevance of studying their potential impact on the main producers of organic matter on the planet—photosynthetic organisms. The review examines the effects of some biguanides and quaternary ammonium compounds, octenidine, miramistin, chlorhexidine, and picloxidine, on the functioning of the photosynthetic apparatus of various organisms (Strakhovskaya et al. in Photosynth Res 147:197–209, 2021; Knox et al. in Photosynth Res 153:103, 2022; Paschenko et al. in Photosynth Res 155:93–105, 2023a, Photosynth Res 2023b). A common feature of these antiseptics is the combination of hydrophobic and hydrophilic regions in the molecules, the latter carrying a positive charge(s). The comparison of the results obtained with intact bacterial membrane vesicles (chromatophores) and purified pigment-protein complexes (photosystem II and I) of oxygenic organisms allows us to draw conclusions about the mechanisms of the cationic antiseptic action on the functional properties of the components of the photosynthetic apparatus.

阳离子防腐剂对各种光合色素-蛋白质复合物中光能转换过程的影响
摘要 消毒剂和防腐剂的广泛使用及其在环境中的释放,决定了研究它们对地球上主要有机物生产者--光合生物--的潜在影响具有现实意义。本综述研究了一些双胍类和季铵化合物、辛烯啶、米拉米星、洗必泰和吡咯西丁对各种生物光合装置功能的影响(Strakhovskaya 等人,发表于《Photosynth Res》147:197-209, 2021 年;Knox 等人,发表于《Photosynth Res》153:103, 2022 年;Paschenko 等人,发表于《Photosynth Res》155:93-105, 2023 年a,《Photosynth Res》2023 年b)。这些防腐剂的共同特点是分子中疏水和亲水区域的结合,后者带有正电荷。通过对完整的细菌膜囊(色素体)和纯化的含氧生物色素-蛋白质复合物(光合系统 II 和 I)的研究结果进行比较,我们可以得出阳离子防腐剂对光合装置各组成部分的功能特性产生作用的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Photosynthesis Research
Photosynthesis Research 生物-植物科学
CiteScore
6.90
自引率
8.10%
发文量
91
审稿时长
4.5 months
期刊介绍: Photosynthesis Research is an international journal open to papers of merit dealing with both basic and applied aspects of photosynthesis. It covers all aspects of photosynthesis research, including, but not limited to, light absorption and emission, excitation energy transfer, primary photochemistry, model systems, membrane components, protein complexes, electron transport, photophosphorylation, carbon assimilation, regulatory phenomena, molecular biology, environmental and ecological aspects, photorespiration, and bacterial and algal photosynthesis.
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