首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Extreme spatial and temporal variability of hydrothermal microbial mat communities along the Mariana Island Arc and southern Mariana back-arc system
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Extreme spatial and temporal variability of hydrothermal microbial mat communities along the Mariana Island Arc and southern Mariana back-arc system

机译:沿着马里亚纳岛弧和马里亚纳南部弧后系统的热液微生物垫群落的极端时空变异

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Twenty-five microbial communities were sampled from 18 different hydrothermal systems located at seven different sites along the Mariana Island Arc and at a single site from the southern Mariana Spreading Center over a 3-year period. Terminal restriction fragment length polymorphism (T-RFLP) analysis of the small subunit rRNA gene revealed that the microbial community diversity is much greater along the Mariana Arc/back-arc than at either hot spot volcanoes or mid-ocean ridges along the same spatial scale. Cluster analysis of T-RFLP fingerprints reveals the microbial communities formed three distinct clusters designated Mariana clusters I, II, and III. Microbial communities in Mariana Cluster I are all associated with iron-rich microbial mats and are dominated by members of the ζ-Proteobacteria and by unique phylotypes clustering deeply in the δ-Proteobacteria and within the Nitrospira division. Mariana Cluster II communities are all from shallow hydrothermal systems and mostly from colder sediments or microbial mats that are dominated by putative heterotrophic phylotypes usually associated with seawater and sediments not generally associated with hydrothermal fluid inputs. Mariana Cluster III is generally from much hotter vent sites and is dominated by sulfur-oxidizing -Proteobacteria. Quantitative-polymerase chain reaction (Q-PCR) of Archaeal abundance reveal that all of the microbial communities are dominated by members of the Bacterial domain. Sampling of microbial mats from Iceberg Vent at NW Rota-1 in 2004 and again in 2006 reveal the community has shown a transition from Caminibacter group -Proteobacteria phylotypes to a mixed population of Caminibacter, Sulfurovum, and Sulfurimonas group -Proteobacteria.
机译:在三年内,从18个不同的热液系统中采样了25个微生物群落,这些系统位于马里亚纳岛弧沿线的七个不同地点,以及马里亚纳南部扩散中心的一个地点。对小亚基rRNA基因的末端限制性片段长度多态性(T-RFLP)分析显示,在相同的空间尺度上,马里亚纳弧/后弧沿线的微生物群落多样性要比热点火山或大洋中脊的微生物群落多样性大得多。 T-RFLP指纹的聚类分析显示,微生物群落形成了三个不同的簇,分别命名为Mariana簇I,II和III。 Mariana集群I中的微生物群落都与富含铁的微生物垫相关联,并由ζ变形杆菌的成员以及在δ变形杆菌中和硝化螺菌菌群内深处聚集的独特系统型主导。 Mariana Cluster II群落全部来自浅层热液系统,并且大多来自较冷的沉积物或微生物垫,这些沉积物或微生物垫主要由通常与海水有关的推定异养型系统型和通常与热液输入无关的沉积物组成。 Mariana Cluster III通常来自更热的通风口,并且以硫氧化性变形杆菌为主导。古细菌丰度的定量聚合酶链反应(Q-PCR)表明,所有微生物群落均以细菌域成员为主。 2004年和2006年在NW Rota-1的Iceberg Vent进行的微生物垫采样显示,该社区已显示出从Caminibacter组-Proteobacteria系统型向Caminibacter,Sulfurovum和Sulpurimonas组-Proteobacteria的混合种群过渡。

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