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Freshwater phytoplankton: biotransformation of inorganic arsenic to methylarsenic and organoarsenic

机译:淡水浮游植物:无机砷的生物转化砷与甲基arsenic和有机节

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The biotransformation and detoxification mechanisms of arsenic (As) species have been active research topics because of their significance to environmental and human health. Biotransformation of As in phytoplankton has been extensively studied. However, how different growth phases of phytoplankton impact As biotransformation in them remains uncertain. This study investigated the biotransformation of As species in freshwater phytoplankton at different growth phases to ascertain at which growth phase different types of biotransformation occur. At the logarithmic growth phase, arsenate (AssupV/sup) (90%) and arsenite (AssupIII/sup) (80%) predominated in culture media when phytoplankton were exposed to 20 nmol Lsup-1/sup and 1.0 μmol Lsup-1/sup of AssupV/sup, respectively, and methylarsenic (methylAs) species were not detected in them at all. Intracellular As was mainly present in inorganic forms (iAs) at the logarithmic phase, while substantial amounts of organoarsenic (orgAs) species were detected at the stationary phase. At the stationary phase, AssupV/sup comprised the majority of the total As in culture media, followed by AssupIII/sup and methylAs, although the methylation of AssupV/sup occurred slowly at the stationary phase. Biotransformation of AssupV/sup into AssupIII/sup and As methylation inside phytoplankton cells occurred mainly at the logarithmic phase, while the biotransformation of As into complex orgAs compounds occurred at the stationary phase. Phytoplankton rapidly released iAs and methylAs species out of their cells at the logarithmic phase, while orgAs mostly remained inside their cells.
机译:由于其对环境和人类健康的意义,砷(AS)物种的生物转化和排毒机制是积极的研究主题。在浮游植物中的生物转化已经过度研究。然而,如何将浮游植物的生长阶段不同,因为它们中的生物转化仍然是不确定的。本研究调查了在不同生长阶段的淡水浮游植物中的物种的生物转化,以确定发生生长相位不同类型的生物转化。在对数生长阶段,当浮游植物暴露于培养基时,砷酸盐(作为 v )(> 90%)和砷酸盐(作为 iii )(> 80%)占主导地位20nmol L -1-1和1.0μmol1 -1 / sup>分别在它们中分别没有检测到 v 和甲基arsenic(甲基)物种全部。细胞内主要存在于对数阶段的无机形式(IAS)中存在,而在固定阶段检测到大量有机静脉(ORGA)物种。在固定相时,随着 v 包含大部分总量,如培养基中的大部分,其次作为 III 和甲基α,尽管作为 v的甲基化sup>在固定阶段缓慢发生。作为 v 作为 iii 和作为浮游植物细胞内甲基化的生物转化,主要在对数相中发生,而作为复合的ORGAS化合物的生物转化在固定阶段发生。 Phytoplankton在对数阶段的细胞中快速释放的IAS和甲基物质,而ORGA主要留在其细胞内。

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