Bioengineering Department, University of California, San Diego, La Jolla, California 92093, USA.
Microbiol Mol Biol Rev. 2009 Dec;73(4):712-29. doi: 10.1128/MMBR.00027-09.
Over the last few decades, advances in cultivation-independent methods have significantly contributed to our understanding of microbial diversity and community composition in the environment. At the same time, cultivation-dependent methods have thrived, and the growing number of organisms obtained thereby have allowed for detailed studies of their physiology and genetics. Still, most microorganisms are recalcitrant to cultivation. This review not only conveys current knowledge about different isolation and cultivation strategies but also discusses what implications can be drawn from pure culture work for studies in microbial ecology. Specifically, in the light of single-cell individuality and genome heterogeneity, it becomes important to evaluate population-wide measurements carefully. An overview of various approaches in microbial ecology is given, and the cell as a central unit for understanding processes on a community level is discussed.
在过去的几十年中,培养独立性方法的进步极大地促进了我们对环境中微生物多样性和群落组成的理解。与此同时,培养依赖性方法也蓬勃发展,由此获得的越来越多的生物体使对其生理学和遗传学的详细研究成为可能。尽管如此,大多数微生物仍难以培养。本篇综述不仅传达了关于不同分离和培养策略的最新知识,还讨论了从纯培养工作中可以为微生物生态学研究得出哪些启示。具体来说,鉴于单细胞的个体性和基因组的异质性,仔细评估全种群的测量结果变得非常重要。本文概述了微生物生态学的各种方法,并讨论了细胞作为理解群落水平上过程的核心单元。