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Thermophilic bacterial communities inhabiting the microbial mats of indifferent and chalybeate (iron‐rich) thermal springs: Diversity and biotechnological analysis

机译:居住在冷漠和Chabebeate(富铁)温泉微生物垫上的嗜热细菌群落:多样性和生物技术分析

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摘要

Microbial mats are occasionally reported in thermal springs and information on such mats is very scarce. In this study, microbial mats were collected from two hot springs (Brandvlei (BV) and Calitzdorp (CA)), South Africa and subjected to scanning electron microscopy (SEM) and targeted 16S rRNA gene amplicon analysis using Next Generation Sequencing (NGS). Spring water temperature was 55°C for Brandvlei and 58°C for Calitzdorp while the pH of both springs was slightly acidic, with an almost identical pH range (6.2–6.3). NGS analysis resulted in a total of 4943 reads, 517 and 736 OTUs for BV and CA at, respectively, a combined total of 14 different phyla in both samples, 88 genera in CA compared to 45 in BV and 37.64% unclassified sequences in CA compared to 27.32% recorded in BV. Dominant bacterial genera in CA microbial mat were Proteobacteria (29.19%), Bacteroidetes (9.41%), Firmicutes (9.01%), Cyanobacteria (6.89%), Actinobacteria (2.65%), Deinococcus‐Thermus (2.57%), and Planctomycetes (1.94%) while the style="fixed-case">BV microbial mat was dominated by Bacteroidetes (47.3%), Deinococcus‐Thermus (12.35%), Proteobacteria (7.98%), and Planctomycetes (2.97%). Scanning electron microscopy results showed the presence of microbial filaments possibly resembling cyanobacteria, coccids, rod‐shaped bacteria and diatoms in both microbial mats. Dominant genera that were detected in this study have been linked to different biotechnological applications including hydrocarbon degradation, glycerol fermentation, anoxic‐fermentation, dehalogenation, and biomining processes. Overall, the results of this study exhibited thermophilic bacterial community structures with high diversity in microbial mats, which have a potential for biotechnological exploitation.
机译:温泉中有时会报告微生物垫,而有关此类垫的信息非常稀少。在这项研究中,从南非的两个温泉(Brandvlei(BV)和Calitzdorp(CA))收集了微生物垫,并进行了扫描电子显微镜(SEM)和使用下一代测序(NGS)的靶向16S rRNA基因扩增子分析。 Brandvlei的泉水温度为55°C,Calitzdorp的泉水温度为58°C,而两个泉的pH值均为弱酸性,pH范围几乎相同(6.2-6.3)。 NGS分析得出总共有4943个读数,BV和CA分别有517和736个OTU,两个样品中总共有14种不同的门,CA中有88个属,而BV中有45个属,CA中有37.64%的未分类序列以BV计为27.32%。 CA微生物垫中的主要细菌属是变形杆菌(29.19%),拟杆菌(9.41%),硬毛菌(9.01%),蓝细菌(6.89%),放线菌(2.65%),嗜热球菌-嗜热菌(2.57%)和放线菌(1.94) %),而 style =“ fixed-case”> BV 微生物垫则由拟杆菌(47.3%),嗜热球菌(1inoinococcus-Thermus)(12.35%),变形杆菌(7.98%)和扁平菌(2.97%)占主导地位。 。扫描电子显微镜结果表明,在两个微生物垫中都存在可能类似于蓝细菌,球菌,棒状细菌和硅藻的微生物细丝。在这项研究中发现的优势属已与不同的生物技术应用相关,包括烃降解,甘油发酵,缺氧发酵,脱卤和生物开采过程。总的来说,这项研究的结果显示出在微生物垫中具有高度多样性的嗜热细菌群落结构,这具有生物技术开发的潜力。

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