Assessment of microbial communities from cold mine environments and subsequent enrichment, isolation and characterization of putative antimony- or copper-metabolizing microorganisms

Francisca Prieto-Fernández, Stefan Lambert, Katharina Kujala
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Abstract

Mining activities, even in arctic regions, create waste materials releasing metals and metalloids, which have an impact on the microorganisms inhabiting their surroundings. Some species can persist in these areas through tolerance to meta(loid)s via, e.g., metabolic transformations. Due to the interaction between microorganisms and meta(loid)s, interest in the investigation of microbial communities and their possible applications (like bioremediation or biomining) has increased. The main goal of the present study was to identify, isolate, and characterize microorganisms, from subarctic mine sites, tolerant to the metalloid antimony (Sb) and the metal copper (Cu). During both summer and winter, samples were collected from Finnish mine sites (site A and B, tailings, and site C, a water-treatment peatland) and environmental parameters were assessed. Microorganisms tolerant to Sb and Cu were successfully enriched under low temperatures (4°C), creating conditions that promoted the growth of aerobic and fermenting metal(loid) tolerating or anaerobic metal(loid) respiring organism. Microbial communities from the environment and Sb/Cu-enriched microorganisms were studied via 16S rRNA amplicon sequencing. Site C had the highest number of taxa and for all sites, an expected loss of biodiversity occurred when enriching the samples, with genera like Prauserella, Pseudomonas or Clostridium increasing their relative abundances and others like Corynebacterium or Kocuria reducing in relative abundance. From enrichments, 65 putative Sb- and Cu-metabolizing microorganisms were isolated, showing growth at 0.1 mM to 10 mM concentrations and 0°C to 40°C temperatures. 16S rRNA gene sequencing of the isolates indicated that most of the putative anaerobically Sb-respiring tolerators were related to the genus Clostridium. This study represents the first isolation, to our knowledge, of putative Sb-metabolizing cold-tolerant microorganisms and contributes to the understanding of metal (loid)-tolerant microbial communities in Arctic mine sites.
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评估寒冷矿山环境中的微生物群落,随后对推定的抗锑或铜代谢微生物进行富集、分离和鉴定
采矿活动,即使是在北极地区,也会产生释放金属和类金属的废料,对周围环境中的微生物产生影响。一些物种可以通过新陈代谢转化等方式耐受元(金属)物质,从而在这些地区存活下来。由于微生物与元藻类之间的相互作用,人们对微生物群落的研究及其可能的应用(如生物修复或生物采矿)越来越感兴趣。本研究的主要目标是从亚北极矿址中鉴定、分离和描述耐受类金属锑(Sb)和金属铜(Cu)的微生物。在夏季和冬季,从芬兰矿区(矿区 A 和 B,尾矿;矿区 C,水处理泥炭地)采集了样本,并对环境参数进行了评估。在低温(4°C)条件下,成功富集了耐受锑和铜的微生物,创造了促进耐受金属(loid)的需氧和发酵微生物或厌氧金属(loid)呼吸微生物生长的条件。通过 16S rRNA 扩增子测序对环境中的微生物群落和富含 Sb/Cu 的微生物群落进行了研究。在所有地点中,C 地点的类群数量最多,在富集样本时,生物多样性出现了预期的损失,Prauserella、Pseudomonas 或 Clostridium 等属的相对丰度增加,而 Corynebacterium 或 Kocuria 等属的相对丰度降低。从富集物中分离出 65 种推定的锑和铜代谢微生物,它们在 0.1 mM 至 10 mM 浓度和 0°C 至 40°C 温度条件下生长。分离物的 16S rRNA 基因测序表明,大多数推定的厌氧 Sb 耐受菌与梭状芽孢杆菌属有关。据我们所知,这项研究首次分离出了可能代谢锑的耐寒微生物,有助于了解北极矿区耐金属(loid)微生物群落。
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