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Distribution of Microorganisms in Deep-Sea Hydrothermal Vent Chimneys Investigated by Whole-Cell Hybridization and Enrichment Culture of Thermophilic Subpopulations

机译:通过嗜热亚群的全细胞杂交和富集培养研究深海热液通风口烟囱中微生物的分布

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摘要

The microbial community structure of hydrothermal vent chimneys was evaluated by the combined use of enrichment cultures and whole-cell hybridizations with fluorescently labeled 16S rRNA-based oligonucleotide probes. Chimneys were collected during the Microsmoke cruise on the Mid-Atlantic Ridge and were subsampled on board and stored under reduced conditions or fixed. For estimation of culturable thermophiles, selective media were inoculated by dilution series of the samples and incubated at 65, 80, and 95(deg)C. To analyze the microbial diversity of the samples, cells were extracted from the fixed chimney structure samples and hybridized with domain- and kingdom-specific probes. Quantification of the extracted cells was assessed by whole-cell hybridization on membrane filters. By both methods, the largest amounts of microorganisms were found in the upper and outer parts of the chimneys, although even the inner parts contained culturable and detectable amounts of cells. Different morphotypes of thermophilic and hyperthermophilic microorganisms were enriched and detected in samples. Our data clearly indicate that the morphological diversity observed by using whole-cell hybridization is much larger than that assessed by use of culture-based enrichments. This new approach, including culture-independent and -dependent methods to study hydrothermal vent chimneys, showed an uneven distribution of a diverse microbial community. Application of lower-level specific probes for known families and genera within each domain by our approach will be useful to reveal the real extent and nature of the chimney microbial diversity and to support cultivation attempts.
机译:通过结合使用富集培养和与荧光标记的基于16S rRNA的寡核苷酸探针进行全细胞杂交,评估了热液通风口烟囱的微生物群落结构。烟囱是在大西洋中脊的微烟巡游期间收集的,并在船上进行二次采样,并在减少的条件下存放或固定放置。为了估计可培养的嗜热菌,通过一系列稀释样品接种选择培养基,并在65、80和95℃下孵育。为了分析样品的微生物多样性,从固定的烟囱结构样品中提取细胞,并与结构域和王国特定探针杂交。通过在膜滤器上进行全细胞杂交来评估提取细胞的定量。通过这两种方法,在烟囱的上部和外部都发现了数量最多的微生物,尽管即使内部也含有可培养和可检测量的细胞。在样品中富集和检测了不同形态的嗜热和超嗜热微生物。我们的数据清楚地表明,使用全细胞杂交观察到的形态多样性要比使用基于培养物的富集所评估的形态多样性大得多。这种新的方法,包括研究热液喷口烟囱的与文化无关的方法和与文化无关的方法,显示了各种微生物群落的不均匀分布。通过我们的方法,对每个域中已知家族和属的低水平特异性探针的应用将有助于揭示烟囱微生物多样性的真实范围和性质,并支持耕作尝试。

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