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Direct Effects of UV-B Radiation on the Freshwater Heterotrophic Nanoflagellate Paraphysomonas sp.

机译:UV-B辐射对淡水异养纳米鞭毛虫副藻属的直接影响

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摘要

The formation of DNA photoproducts in organisms exposed to ambient levels of UV-B radiation can lead to death and/or reduced population growth in aquatic systems. Dependence on photoenzymatic repair to reverse DNA damage caused by UV-B radiation is demonstrated for Paraphysomonas sp., a member of a widely distributed genus of heterotrophic nanoflagellates. At 20__, Paraphysomonas sp. was exposed to a range of UV-B intensities encountered in natural systems. Populations of the flagellate survived and grew in a dose-dependent manner, but only when simultaneously exposed to photorepair radiation (PRR). In contrast, flagellates exposed to UV-B at 15__ suffered 100 mortality except at the lowest UV-B level (with PRR) tested, which suggested a photorepair temperature optimum above 15__. After acute UV-B exposures, DNA damage (measured as the formation of pyrimidine dimers) was reduced only in organisms that underwent subsequent exposure to PRR. Populations kept in the dark after UV-B exposure maintained the initial levels of pyrimidine dimers. These results are the first to demonstrate the reliance of a heterotrophic flagellate on photoenzymatic DNA repair for survival from UV-B exposure.
机译:在暴露于环境水平的UV-B辐射的生物体中形成DNA光产物可导致水生系统中的死亡和/或种群增长减少。Paraphysomonas sp.(一种广泛分布的异养纳米鞭毛虫属的成员)证明了对光酶修复的依赖性,以逆转由 UV-B 辐射引起的 DNA 损伤。在20__时,Paraphysomonas sp.暴露于自然系统中遇到的一系列UV-B强度。鞭毛种群以剂量依赖性方式存活和生长,但前提是同时暴露于光修复辐射(PRR)。相比之下,暴露于15__的UV-B的鞭毛虫死亡率为100%,除了最低的UV-B水平(PRR)测试,这表明光修复温度在15__以上为最佳。在急性UV-B暴露后,DNA损伤(以嘧啶二聚体的形成来衡量)仅在随后暴露于PRR的生物体中减少。UV-B暴露后保持在黑暗中的种群保持了嘧啶二聚体的初始水平。这些结果首次证明了异养鞭毛对光酶DNA修复的依赖性,以从UV-B暴露中存活。

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