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海水中合成聚合物上成熟生物膜群落——特异性或普遍性?

Mature biofilm communities on synthetic polymers in seawater - Specific or general?

机构信息

Alfred-Wegener-Institute Helmholtz Centre for Polar and Marine Research, Biologische Anstalt Helgoland, Helgoland, Germany.

Alfred-Wegener-Institute Helmholtz Centre for Polar and Marine Research, Biologische Anstalt Helgoland, Helgoland, Germany.

出版信息

Mar Environ Res. 2018 Nov;142:147-154. doi: 10.1016/j.marenvres.2018.09.028. Epub 2018 Oct 2.

Abstract

To understand the ecological impacts of the "Plastisphere", those microbes need to be identified that preferentially colonize and interact with synthetic polymer surfaces, as opposed to general surface colonizers. It was hypothesized that the microbial biofilm composition varies distinctly between different substrates. A long-term incubation experiment was conducted (15month) with nine different synthetic polymer films as substrate as well as glass using a natural seawater flow-through system. To identify colonizing microorganisms, 16S and 18SrRNA gene tag sequencing was performed. The microbial biofilms of these diverse artificial surfaces were visualized via scanning electron microscopy. Biofilm communities attached to synthetic polymers are distinct from glass associated biofilms; apparently a more general marine biofilm core community serves as shared core among all synthetic polymers rather than a specific synthetic polymer community. Nevertheless, characteristic and discriminatory taxa of significantly different biofilm communities were identified, indicating their specificity to a given substrate.

摘要

为了了解“塑料体”的生态影响,需要识别那些优先定植和与合成聚合物表面相互作用的微生物,而不是一般的表面定植者。假设微生物生物膜的组成在不同的基质之间有明显的不同。利用自然海水流通系统,进行了一项为期 15 个月的长期孵育实验,以九种不同的合成聚合物薄膜以及玻璃作为基质。为了鉴定定植的微生物,进行了 16S 和 18SrRNA 基因标记测序。通过扫描电子显微镜观察这些不同人工表面的微生物生物膜。附着在合成聚合物上的生物膜群落与玻璃相关的生物膜不同;显然,一个更普遍的海洋生物膜核心群落作为所有合成聚合物之间的共享核心,而不是特定的合成聚合物群落。然而,鉴定出了具有显著不同生物膜群落的特征性和有区别性的分类群,表明它们对特定基质的特异性。

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