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首页> 外文期刊>Marine biotechnology >Monitoring Microbial Community Composition by Fluorescence In Situ Hybridization During Cultivation of the Marine Cold-Water Sponge Geodia barretti
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Monitoring Microbial Community Composition by Fluorescence In Situ Hybridization During Cultivation of the Marine Cold-Water Sponge Geodia barretti

机译:海洋冷水海绵Geodia barretti培养过程中通过荧光原位杂交监测微生物群落组成

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摘要

To determine the stability and specificity of microbes associated with the marine cold-water sponge Geodia barretti during cultivation, we compared the microbial community of freshly retrieved specimens to that of cultivated explants by fluorescence in situ hybridization (FISH). G. barretti hosts a specific homogeneous microbial community in its mesohyl, which is maintained during a cultivation period of 8 months. In 10-day-old explants, bright colonies of unusually large bacterial cells, located predominantly at canal walls, were observed in addition to the common bacteria. Bacteria of the aberrant type included both lineages present in whole sponges and foreign ones, notably numerous genera of sulfate-reducing bacteria. We assume that these represent infectious bacteria that eluded the innate immune system of the sponge. Explants that resist these microbial attacks during the critical phase of cultivation eliminate infectious bacteria. The intrinsic microbial community of G. barretti is not affected by these infections and remains persistent over a cultivation period of at least several months.
机译:为了确定与海洋冷水海绵Geodia barretti相关的微生物在培养过程中的稳定性和特异性,我们通过荧光原位杂交(FISH)比较了刚取回的标本与培养的外植体的微生物群落。 G. barretti在其mesohyl中拥有一个特定的均质微生物群落,该群落在8个月的培养期内得以维持。在10天大的外植体中,除了常见的细菌外,还观察到主要位于管壁的异常大的细菌细胞的明亮菌落。异常类型的细菌既包括整个海绵中的谱系,也包括外来海绵中的谱系,特别是许多硫酸盐还原菌属。我们假定它们代表了传染性细菌,而这些细菌是海绵固有的免疫系统所无法企及的。在培养的关键阶段抵抗这些微生物侵袭的外植体消除了传染性细菌。 G. barretti的固有微生物群落不受这些感染的影响,并且在至少几个月的培养期内保持持久。

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