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The effect of heavy metals and other environmental conditions on the anaerobic phosphate metabolism of Acinetobacter johnsonii

机译:重金属和其他环境条件对johnsonii厌氧磷代谢的影响

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A strain of Acinetobacter with potential for bioremediation of heavy metal-contaminated waters was isolated from a wastewater-treatment plant operating an enhanced biological phosphate removal process. NMR and extractive methods showed that polyphosphate accumulated aerobically was degraded under anaerobic conditions both in the presence and absence of cadmium or uranium (0·2–0·5 mM). NMR showed that free phosphate was formed at the expense of polyphosphate, and an extractive technique indicated that this reaction could be stimulated by the presence of UO22+ under these conditions. Energy-dispersive X-ray microanalysis demonstrated that only cadmium could enter the cells, and co-localized with intra-cellular granules containing phosphate and other divalent metals. The effects of other environmental parameters on the anaerobic phosphate metabolism were also investigated. Between pH 5·5 and 8·0, phosphate release increased with increasing pH. Between 4°C and 37°C, phosphate release increased with increasing temperature. The presence of nitrate at concentrations of 10 mM and above inhibited anoxic phosphate release, but supplying tungstate in the growth medium prior to anoxic incubation reduced the production of active nitrate reductase and alleviated this effect.
机译:从操作增强的生物磷酸盐去除方法的废水处理厂中分离出具有重金属污染水域生物修复潜力的一系列传神用菌。 NMR和萃取方法表明,在存在和不存在镉或铀(0·2-0·5mm)的情况下,在厌氧条件下,多磷酸盐在厌氧条件下降解。 NMR表明,以多磷酸盐的牺牲为代价形成游离磷酸,并表明在这些条件下可以通过UO22 +的存在刺激该反应。能量分散X射线微基分析表明,只有镉可以进入细胞,并与含有磷酸盐和其他二价金属的细胞内颗粒共同定位。还研究了其他环境参数对厌氧磷酸盐代谢的影响。在pH5·5和8·0之间,磷酸盐释放随着pH的增加而增加。在4°C和37℃之间,磷酸盐释放随温度的增加而增加。浓度为10mm和更高浓度的硝酸盐抑制缺氧磷酸盐释放,但在缺氧孵育之前在生长培养基中供应钨酸盐,减少了活性硝酸盐还原酶的产生并减轻了这种效果。

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