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An in situ method for cultivating microorganisms using a double encapsulation technique

机译:利用双包膜技术原位培养微生物的方法

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The lack of cultured microorganisms represents a bottleneck for advancement in microbiology. The development of novel culturing techniques is, therefore, a crucial step in our understanding of microbial diversity in general, and the role of such diversity in the environment, in particular. This study presents an innovative method for cultivating microorganisms by encapsulating them within agar spheres, which are then encased in a polysulfonic polymeric membrane and incubated in a simulated or natural environment. This method stimulates growth of the entrapped microorganisms by allowing them access to essential nutrients and cues from the environment. It allows for the discovery of microorganisms from dilutions that are 10-100-fold greater than possible with conventional plating techniques. Analysis of microorganisms grown in such spheres incubated in and on a number of different substrates yielded numerous novel ribotypes. For example, spheres incubated on the mucus surface of a Fungiid coral yielded numerous ribotypes, with only 50% sharing similarity (85-96%) to previously identified microorganisms. This suggests that many of the species represent novel ribotypes. Hence, the technique reported here advances our ability to retrieve and successfully culture microorganisms and provides an innovative tool to access unknown microbial diversity.
机译:缺乏培养的微生物代表了微生物学发展的瓶颈。因此,新型培养技术的发展是我们总体上了解微生物多样性,尤其是这种多样性在环境中的作用的关键步骤。这项研究提出了一种通过将细菌封装在琼脂球中来培养微生物的创新方法,然后将其包裹在聚磺酸聚合物膜中并在模拟或自然环境中孵育。该方法通过允许被捕获的微生物从环境中获取必需的养分和线索来刺激其生长。它允许从稀释中发现微生物,其稀释度是常规平板技术的10-100倍。分析在这样的球体中生长的微生物,这些球体在许多不同的底物中和在其上温育,产生了许多新颖的核糖型。例如,在真菌真菌的粘液表面上温育的球体产生了许多核糖型,只有50%与先前鉴定的微生物具有相似性(85-96%)。这表明许多物种代表新的核糖型。因此,这里报道的技术提高了我们检索和成功培养微生物的能力,并提供了一种创新的工具来访问未知的微生物多样性。

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