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萨索皮萨诺地热田环境中有多种生物代表,并展示了特定栖息地的适应性。

Sasso Pisano Geothermal Field Environment Harbours Diverse Representatives and Illustrates Habitat-Specific Adaptations.

作者信息

Arif Sania, Willenberg Corinna, Dreyer Annika, Nacke Heiko, Hoppert Michael

机构信息

Department of General Microbiology, Institute of Microbiology and Genetics, University of Göttingen, Grisebachstraße 8, 37077 Göttingen, Germany.

Department of Genomic and Applied Microbiology, Institute of Microbiology and Genetics, University of Göttingen, Grisebachstraße 8, 37077 Göttingen, Germany.

出版信息

Microorganisms. 2021 Jun 29;9(7):1402. doi: 10.3390/microorganisms9071402.

Abstract

The hydrothermal steam environment of Sasso Pisano (Italy) was selected to investigate the associated microbial community and its metabolic potential. In this context, 16S and 18S rRNA gene partial sequences of thermophilic prokaryotes and eukaryotes inhabiting hot springs and fumaroles as well as mesophilic microbes colonising soil and water were analysed by high-throughput amplicon sequencing. The eukaryotic and prokaryotic communities from hot environments clearly differ from reference microbial communities of colder soil sites, though showed high abundances in various hot spring samples and a few soil samples. This indicates that the hydrothermal steam environments of Sasso Pisano represent not only a vast reservoir of thermophilic but also mesophilic members of this class. Metabolic functional profiling revealed that the hot spring microbiome exhibits a higher capability to utilise methane and aromatic compounds and is more diverse in its sulphur and nitrogen metabolism than the mesophilic soil microbial consortium. In addition, heavy metal resistance-conferring genes were significantly more abundant in the hot spring microbiome. The eukaryotic diversity at a fumarole indicated high abundances of primary producers (unicellular red algae: ), consumers ( sp.), and endoparasite ( sp.), which helps to hypothesise a simplified food web at this hot and extremely nutrient-deprived acidic environment.

摘要

选择意大利萨索皮萨诺的热液蒸汽环境来研究相关的微生物群落及其代谢潜力。在此背景下,通过高通量扩增子测序分析了栖息于温泉和喷气孔的嗜热原核生物和真核生物以及定殖于土壤和水体的嗜温微生物的16S和18S rRNA基因部分序列。来自高温环境的真核生物和原核生物群落明显不同于较冷土壤地点的参考微生物群落,不过在各种温泉样本和一些土壤样本中显示出高丰度。这表明萨索皮萨诺的热液蒸汽环境不仅代表了这类嗜热微生物的巨大储存库,也代表了嗜温微生物的巨大储存库。代谢功能谱分析表明,温泉微生物组利用甲烷和芳香化合物的能力更高,并且其硫和氮代谢比嗜温土壤微生物群落更加多样化。此外,赋予重金属抗性的基因在温泉微生物组中明显更为丰富。一个喷气孔处的真核生物多样性表明初级生产者(单细胞红藻: )、消费者( 种)和内寄生虫( 种)丰度很高,这有助于推测在这个炎热且极度贫营养的酸性环境中的一个简化食物网。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e95/8306680/a93d0cb2758c/microorganisms-09-01402-g001.jpg

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