Department of Biology, Northeastern University, Boston, Massachusetts, USA.
NovoBiotic Pharmaceuticals, Cambridge, Massachusetts, USA.
Nat Protoc. 2017 Oct;12(10):2232-2242. doi: 10.1038/nprot.2017.074. Epub 2017 Sep 29.
Most microbial species remain uncultivated, and modifying artificial nutrient media brings only an incremental increase in cultivability. We reasoned that an alternative way to cultivate species with unknown requirements is to use naturally occurring combinations of growth factors. To achieve this, we moved cultivation into the microbes' natural habitat by placing cells taken from varying environmental samples into diffusion chambers, which are then returned to nature for incubation. By miniaturizing the chambers and placing only one to several cells into each chamber, we can grow and isolate microorganisms in axenic culture in one step. We call this cultivation platform the 'isolation chip', or 'ichip'. This platform has been shown to increase microbial recovery from 5- to 300-fold, depending on the study. Furthermore, it provides access to a unique set of microbes that are inaccessible by standard cultivation. Here we provide a simple protocol for building and applying ichips for environmental cultivation of soil bacteria as an example; the protocol consists of (i) preparing the ichip; (ii) collecting an environmental sample; (iii) serially diluting cells and loading them into the ichip; (iv) returning the ichip to the environment for incubation; (v) retrieving the ichip and harvesting grown material; and (vi) domestication of the ichip-derived colonies for growth in the laboratory. The ichip's full assembly and deployment is a relatively simple procedure that, with experience, takes ∼2-3 h. After in situ incubation, retrieval of the ichip and processing of its contents will take ∼1-4 h, depending on which specific procedures are used.
大多数微生物物种仍未被培养,而修改人工营养培养基只能带来可培养性的增量增加。我们推断,培养具有未知需求的物种的另一种方法是使用自然发生的生长因子组合。为了实现这一目标,我们通过将取自不同环境样本的细胞放入扩散室中,将培养转移到微生物的自然栖息地,然后将扩散室放回自然环境中进行孵育。通过使腔室微型化并在每个腔室中仅放置一个到几个细胞,我们可以在一步中进行无菌培养和分离微生物。我们称这个培养平台为“隔离芯片”或“ichip”。研究表明,根据研究的不同,这种培养平台可以将微生物的回收率提高 5 到 300 倍。此外,它还可以获得一组无法通过标准培养获得的独特微生物。在这里,我们提供了一个简单的协议,用于构建和应用 ichip 来进行土壤细菌的环境培养,作为一个例子;该协议包括(i)制备 ichip;(ii)收集环境样本;(iii)对细胞进行连续稀释并将其加载到 ichip 中;(iv)将 ichip 返回环境中进行孵育;(v)检索 ichip 并收获生长材料;以及(vi)对 ichip 衍生的菌落进行驯化,以在实验室中生长。ichip 的完整组装和部署是一个相对简单的过程,经验丰富的话,大约需要 2-3 小时。原位孵育后,检索 ichip 并处理其内容需要大约 1-4 小时,具体取决于使用的具体程序。