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Phytoplankton response to UV-generated hydrogen peroxide from natural organic matter

机译:浮游植物对天然有机物紫外线产生的过氧化氢的反应

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In aquatic systems, natural organic matter (NOM) and in particular humic substances effectively absorb the ultraviolet (UV)/visible light spectrum of solar radiation and act as a photoprotective filter for organisms. Simultaneously, UV contributes to the generation of potentially harmful reactive oxygen species (ROS). Dose-response experiments were conducted on cyanobacteria and green algae with hydrogen peroxide (H_2O_2) as a long-lived representative of ROS. Delayed fluorescence (DF) decay kinetics was used as a non-invasive tool to follow changes of phytoplankton activity in real time. In order to investigate phototoxicity and photoprotection by NOM on phytoplankton, we exposed algae to UV-pre-irradiated NOM and direct UV excitation. Cyanobacteria responded to H_2O_2 concentrations as low as 10~(-7) M, while green algae were 2 orders of magnitude less sensitive. UV irradiation of medium with NOM generated H_2O_2 concentrations of 1.5 ×10~(-7) to 3.6 ×10~(-7) M. When exposed to these concentrations, only the DF of cyanobacteria led to a measurable effect while that of green algae did not change. The addition of NOM protected all phytoplankton from direct UV irradiation, but cyanobacteria benefitted less. From this we conclude that UV-irradiated water enriched with NOM can adversely affect the physiology of
机译:在水生系统中,天然有机物(NOM)尤其是腐殖质有效吸收太阳辐射的紫外线(UV)/可见光谱,并充当有机体的光保护过滤器。同时,紫外线有助于产生潜在有害的活性氧(ROS)。在蓝细菌和绿藻上以过氧化氢(H_2O_2)作为ROS的长寿代表进行了剂量反应实验。延迟荧光(DF)衰减动力学被用作实时监测浮游植物活动变化的非侵入性工具。为了研究NOM对浮游植物的光毒性和光保护作用,我们将藻类暴露于紫外线预辐照的NOM并直接进行紫外线激发。蓝细菌对低至10〜(-7)M的H_2O_2浓度有反应,而绿藻的敏感性降低了2个数量级。用NOM培养基进行紫外线照射会产生H_2O_2浓度为1.5×10〜(-7)至3.6×10〜(-7)M。当暴露在这些浓度下时,只有蓝细菌的DF导致可测量的效果,而绿藻的DF导致可测量的效果。没有改变。 NOM的添加可保护所有浮游植物免受直接紫外线辐射,但蓝细菌的受益较少。据此我们得出结论,富含NOM的紫外线辐射的水会不利地影响食盐的生理。

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