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Manganese Reduction by Microbes from Oxic Regions of the Lake Vanda (Antarctica) Water Column

机译:旺达湖(南极洲)水柱含氧区微生物对锰的还原作用

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摘要

Depth profiles of metals in Lake Vanda, a permanently ice-covered, stratified Antarctic lake, suggest the importance of particulate manganese oxides in the scavenging, transport, and release of metals. Since manganese oxides can be solubilized by manganese-reducing bacteria, microbially mediated manganese reduction was investigated in Lake Vanda. Microbes concentrated from oxic regions of the water column, encompassing a peak of soluble manganese [Mn(II)], reduced synthetic manganese oxides (MnO2) when incubated aerobically. Pure cultures of manganese-reducing bacteria were readily isolated from waters collected near the oxic Mn(II) peak. Based on phylogenetic analysis of the 16S rRNA gene sequence, most of the isolated manganese reducers belong to the genus Carnobacterium. Cultures of a phylogenetically representative strain of Carnobacterium reduced synthetic MnO2 in the presence of sodium azide, as was seen in field assays. Unlike anaerobes that utilize manganese oxides as terminal electron acceptors in respiration, isolates of the genus Carnobacterium reduced Mn(IV) via a diffusible compound under oxic conditions. The release of adsorbed trace metals accompanying the solubilization of manganese oxides may provide populations of Carnobacterium with a source of nutrients in this extremely oligotrophic environment.
机译:万达湖(一个永久被冰覆盖,分层的南极湖)中金属的深度剖面表明,颗粒状锰氧化物在金属的清除,运输和释放中的重要性。由于氧化锰可以被还原锰的细菌溶解,因此在万达湖进行了微生物介导的锰还原研究。微生物从水柱的含氧区域集中,包括一个可溶性锰[Mn(II)]的峰,需氧孵育时会还原合成的锰氧化物(MnO2)。从含氧Mn(II)峰附近收集的水中很容易分离出纯锰还原菌。根据对16S rRNA基因序列的系统发育分析,大多数分离出的锰还原剂都属于食肉杆菌属。如在野外试验中所见,在叠氮化钠的存在下,肉毒杆菌属的系统发育代表性菌株的培养还原了合成的MnO2。与在呼吸中利用锰氧化物作为末端电子受体的厌氧菌不同,食肉杆菌属的分离物在有氧条件下通过可扩散的化合物还原了Mn(IV)。在极度贫营养的环境中,伴随着锰氧化物的溶解而释放的吸附痕量金属可能为食肉杆菌提供了营养的来源。

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