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Effects of Chelating Agents on Trace Metal Speciation and Bioavaiiability

机译:螯合剂对痕量金属形态和生物可获得物的影响

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The effect of chelating agents on metal bioavaiiability is discussed in terms of interactions between metals, chelating agents, microorganisms, aquatic organisms and plants. The statement "chelating agents are not bioavailable" was found not to hold true for all organisms. Microorganisms that are able to degrade chelating agents have specific, species-dependent transporters for their uptake. Some chelates are also as toxic as the free metal ion to microorganisms (e.g. HgEDTA). Exceptions to the free metal ion activity model (FIAM) are also observed for some higher aquatic organisms. Results from hydroponics experiments also clearly showed that metal uptake into plant shoots did not follow the FIAM model in the presence of chelants. Several possible explanations for the observed departures from the FIAM are discussed: the presence of kinetically distinct transport systems for solutes in higher plants including high-affinity ion specific transport systems and indiscriminate apoplastic transport of solutes via breakages in the endodermis, the possible existence of nonspecific uptake sites, as well as the ability of plants to control and regulate ion uptake via shoot-root communication and modifications in the root plasma membranes.
机译:上金属bioavaiiability螯合剂的效果在螯合剂的微生物的水生生物的植物金属之间的相互作用,,和的方面进行讨论。发现“螯合剂不是生物可利用”的陈述不持有所有生物体。能够降解螯合剂的微生物具有特异性的物种依赖性转运蛋白。一些螯合物也像自由金属离子到微生物一样毒性(例如Hgedta)。对于一些更高的水生生物,还观察到游离金属离子活动模型(FIAM)的例外。水培实验的结果也清楚地表明,在螯合剂存在下,金属摄取到植物芽中并未遵循福阿密模型。用于从FIAM所观察到的偏离几种可能的解释进行了讨论:动力学不同运输系统,用于在高等植物中的溶质包括高亲和力离子特定的传输系统,并通过在内皮破损溶质的不加选择的质外体运输的,非特异性的可能存在的存在摄取网站以及植物通过射击传送和根部膜中的修饰来控制和调节离子吸收的能力。

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