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Schrödinger’s microbes: Tools for distinguishing the living from the dead in microbial ecosystems

机译:薛定ding的微生物:区分微生物生态系统中生与死的工具

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摘要

While often obvious for macroscopic organisms, determining whether a microbe is dead or alive is fraught with complications. Fields such as microbial ecology, environmental health, and medical microbiology each determine how best to assess which members of the microbial community are alive, according to their respective scientific and/or regulatory needs. Many of these fields have gone from studying communities on a bulk level to the fine-scale resolution of microbial populations within consortia. For example, advances in nucleic acid sequencing technologies and downstream bioinformatic analyses have allowed for high-resolution insight into microbial community composition and metabolic potential, yet we know very little about whether such community DNA sequences represent viable microorganisms. In this review, we describe a number of techniques, from microscopy- to molecular-based, that have been used to test for viability (live/dead determination) and/or activity in various contexts, including newer techniques that are compatible with or complementary to downstream nucleic acid sequencing. We describe the compatibility of these viability assessments with high-throughput quantification techniques, including flow cytometry and quantitative PCR (qPCR). Although bacterial viability-linked community characterizations are now feasible in many environments and thus are the focus of this critical review, further methods development is needed for complex environmental samples and to more fully capture the diversity of microbes (e.g., eukaryotic microbes and viruses) and metabolic states (e.g., spores) of microbes in natural environments.
机译:虽然对于宏观生物通常很明显,但是确定微生物是死亡还是存活充满了并发症。微生物生态学,环境健康和医学微生物学等领域均根据其各自的科学和/或法规需求,确定如何最佳地评估哪些微生物群落还活着。这些领域中的许多领域已从对社区的整体研究到对财团内部微生物种群的精细解析。例如,核酸测序技术和下游生物信息学分析的进步允许对微生物群落组成和代谢潜力进行高分辨率的了解,但我们对这类群落DNA序列是否代表存活的微生物知之甚少。在这篇综述中,我们描述了从显微技术到分子技术的多种技术,这些技术已用于测试各种情况下的生存能力(活/死确定)和/或活性,包括与之兼容或互补的较新技术。下游核酸测序。我们描述了这些可行性评估与高通量定量技术(包括流式细胞仪和定量PCR(qPCR))的兼容性。尽管细菌生存能力相关的社区表征现在在许多环境中都是可行的,因此是本次综述的重点,但仍需要对复杂的环境样品进行进一步的方法开发,以更充分地捕获微生物(例如真核微生物和病毒)的多样性,自然环境中微生物的代谢状态(例如,孢子)。

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