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首页> 外文期刊>Mineralogical Magazine >Potential role of the Fe(III) - reducing bacteria Geobacter and Geothrix in controlling arsenic solubility in Bengal delta sediments
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Potential role of the Fe(III) - reducing bacteria Geobacter and Geothrix in controlling arsenic solubility in Bengal delta sediments

机译:减少Fe(III)的细菌Geobacter和Geothrix在控制孟加拉三角洲沉积物中砷溶解度方面的潜在作用

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Previous studies from our laboratory have suggested a role for indigenous metal-reducing bacteria in the reduction of sediment-bound As(V), and have also shown that a stable enrichment culture of Fe(III)-reducing bacteria was able to mobilize arsenic (as As(III)) from sediments collected from West Bengal (Islam et al., 2004). To identify the Fe(III)-reducing bacteria that may play a role in the reduction of As(V) and mobilization of As(III), we made a detailed molecular analysis of this enrichment culture. It was dominated by a close relative of Geothrix fermentans, but the type strain of this organism was unable to conserve energy for growth via the dissimilatory reduction of As(V), or reduce As(V) present in a defined medium containing fumarate as the electron acceptor. Furthermore, when the cells were grown using soluble Fe(III)-citrate as an electron acceptor in the presence of As(V), bacterial Fe(III) reduction resulted in the precipitation of the Fe(II)-bearing mineral vivianite in 2 weeks. This was accompanied by the efficient removal of As from solution. These results demonstrate that Geothrix fermentans, in common with other key Fe(III)-reducing bacteria such as Geobacter sulfurreducens, does not reduce As(V) enzymatically, but can capture arsenic in Fe(II) minerals formed during respiration using Fe(III) as an electron acceptor. Thus, the reduction of arsenic-bearing Fe(III) oxide minerals is not sufficient to mobilize arsenic, but may result in the formation of Fe(II) biominerals that could potentially act as sinks for arsenic in sediments. Additional mechanisms, including dissimilatory As(V) reduction by other specialist anaerobic bacteria, are implicated in the mobilization of arsenic from sediments.
机译:我们实验室的先前研究表明,本地还原金属细菌在减少与沉积物结合的As(V)中的作用,并且还表明,稳定的富集Fe(III)细菌的培养物能够动员砷(从西孟加拉邦收集到的沉积物中的砷(Ⅲ)形式(Islam等,2004)。为了确定还原Fe(III)的细菌可能在As(V)的还原和As(III)的动员中发挥作用,我们对该浓缩培养进行了详细的分子分析。它是由近缘的Geothrix fermentans所主导,但是这种生物的类型菌株无法通过异化还原As(V)或还原存在于含有富马酸酯作为特定成分的培养基中的As(V)来保存生长所需的能量。电子受体。此外,当在As(V)存在下使用可溶性柠檬酸三价铁(III)作为电子受体生长细胞时,细菌中的Fe(III)还原导致含Fe(II)的矿物Vivianite沉淀。周。这伴随着从溶液中有效去除砷。这些结果表明,与其他关键的减少Fe(III)的关键细菌(如Geobacter sulphreducens)一样,Geothrix fermentans不会酶促还原As(V),但可以捕获在呼吸过程中使用Fe(III)形成的Fe(II)矿物中的砷。 )作为电子受体。因此,减少含砷的Fe(III)氧化物矿物不足以动员砷,但可能导致形成Fe(II)生物矿物,而这些矿物可能充当沉积物中砷的汇。其他机制,包括其他专门厌氧细菌的异化As(V)还原,与从沉积物中迁移砷有关。

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