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Biotic and Abiotic Factors Influencing Arsenic Biogeochemistry and Toxicity in Fluvial Ecosystems: A Review

机译:影响河流生态系统砷生物地球化学和毒性的生物和非生物因素:综述

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摘要

This review is focused on the biogeochemistry of arsenic in freshwaters and, especially, on the key role that benthic microalgae and prokaryotic communities from biofilms play together in through speciation, distribution, and cycling. These microorganisms incorporate the dominant iAs (inorganic arsenic) form and may transform it to other arsenic forms through metabolic or detoxifying processes. These transformations have a big impact on the environmental behavior of arsenic because different chemical forms exhibit differences in mobility and toxicity. Moreover, exposure to toxicants may alter the physiology and structure of biofilms, leading to changes in ecosystem function and trophic relations. In this review we also explain how microorganisms (i.e., biofilms) can influence the effects of arsenic exposure on other key constituents of aquatic ecosystems such as fish. At the end, we present two real cases of fluvial systems with different origins of arsenic exposure (natural vs. anthropogenic) that have improved our comprehension of arsenic biogeochemistry and toxicity in freshwaters, the Pampean streams (Argentina) and the Anllóns River (Galicia, Spain). We finish with a briefly discussion of what we consider as future research needs on this topic. This work especially contributes to the general understanding of biofilms influencing arsenic biogeochemistry and highlights the strong impact of nutrient availability on arsenic toxicity for freshwater (micro) organisms.
机译:这篇综述的重点是淡水中砷的生物地球化学,尤其是底栖微藻和生物膜中的原核生物通过形态,分布和循环共同发挥的关键作用。这些微生物掺入了主要的iAs(无机砷)形式,并可能通过代谢或解毒过程将其转化为其他砷形式。这些转变对砷的环境行为有很大影响,因为不同的化学形式表现出迁移率和毒性的差异。此外,接触有毒物质可能会改变生物膜的生理和结构,从而导致生态系统功能和营养关系的变化。在这篇综述中,我们还解释了微生物(即生物膜)如何影响砷暴露对水生生态系统如鱼类等其他关键成分的影响。最后,我们介绍了两个有不同砷暴露源(自然与人为源)的河流系统真实案例,这些案例提高了我们对淡水,Pampean溪流(阿根廷)和Anlons河(加利西亚,西班牙)。最后,我们简要讨论我们对该主题的未来研究需求。这项工作尤其有助于对影响砷生物地球化学的生物膜的一般理解,并强调了养分供应对淡水(微)生物砷毒性的强烈影响。

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