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Photochemical effects on microbial activity in natural waters: the interaction of reactive oxygen species and dissolved organic matter

机译:光化学对天然水中微生物活性的影响:活性氧与溶解有机物的相互作用

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摘要

Bacterial utilization of dissolved organic matter (DOM) in surface waters is closely linked to photochemical transformations of DOM. Photochemically produced reactive oxygen species (ROS) play a central role in many photochemical reactions, but the role of ROS for the photochemical facilitation of bacterial utilization of DOM is previously not known. We exposed lake water with high DOM concentrations to simulated sunlight, with and without the addition of ROS scavengers, and quantified the effect on the production of CO2, the loss of DOM absorbance, and bacterial growth. The photodegradation of DOM through microbial-photochemical interactions was dependent on the action of ROS. The use of ROS scavengers in irradiations of the lake water revealed that photobleaching below 300 nm and the production Of CO2 are highly dependent on the action of ROS. Photobleaching and CO2 production in irradiated waters decreased significantly with the addition of ROS scavengers, but post-irradiation bacterial growth in the samples containing an ROS scavenger increased significantly above those without. The decrease in ROS activity (CO2 production) likely caused an accumulation of bioavailable DOM and enhanced microbial processes. Rapid degradation of DOM through the action of ROS would be especially important in high DOM systems. The high photochemical ROS activity may counterbalance the positive effects on bacterial activity of DOM photolysis into bioavailable molecules. (C) 2003 Federation of European Microbiological Societies. Published by Elsevier B.V. All rights reserved. [References: 25]
机译:地表水中细菌对溶解性有机物(DOM)的利用与DOM的光化学转化密切相关。光化学产生的活性氧(ROS)在许多光化学反应中起着核心作用,但以前尚不知道ROS在光化学促进DOM细菌利用中的作用。在有和没有添加ROS清除剂的情况下,我们将高DOM浓度的湖水暴露在模拟的阳光下,并量化了对CO2产生,DOM吸收损失和细菌生长的影响。通过微生物-光化学相互作用对DOM的光降解取决于ROS的作用。在湖水的辐照中使用ROS清除剂表明,在300 nm以下的光漂白和CO2的产生高度依赖于ROS的作用。添加ROS清除剂后,辐照水中的光漂白和CO2产生显着降低,但是含ROS清除剂的样品在辐照后细菌的生长显着高于未添加ROS的样品。 ROS活性(CO2产生)的降低可能导致生物可利用DOM的积累和微生物过程的增强。在高级DOM系统中,通过ROS的作用使DOM快速降级尤为重要。高的光化学ROS活性可以抵消DOM光解为生物利用分子对细菌活性的积极影响。 (C)2003年欧洲微生物学会联合会。由Elsevier B.V.发布。保留所有权利。 [参考:25]

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