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Distinct Growth Strategies of Soil Bacteria as Revealed by Large-Scale Colony Tracking

机译:大规模菌落追踪揭示了不同的土壤细菌生长策略

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Our understanding of microbial ecology has been significantly furthered in recent years by advances in sequencing techniques, but comprehensive surveys of the phenotypic characteristics of environmental bacteria remain rare. Such phenotypic data are crucial for understanding the microbial strategies for growth and the diversity of microbial ecosystems. Here, we describe a high-throughput measurement of the growth of thousands of bacterial colonies using an array of flat-bed scanners coupled with automated image analysis. We used this system to investigate the growth properties of members of a microbial community from untreated soil. The system provides high-quality measurements of the number of CFU, colony growth rates, and appearance times, allowing us to directly study the distribution of these properties in mixed environmental samples. We find that soil bacteria display a wide range of growth strategies which can be grouped into several clusters that cannot be reduced to any of the classical dichotomous divisions of soil bacteria, e.g., into copiotophs and oligotrophs. We also find that, at early times, cells are most likely to form colonies when other, nearby colonies are present but not too dense. This maximization of culturability at intermediate plating densities suggests that the previously observed tendency for high density to lead to fewer colonies is partly offset by the induction of colony formation caused by interactions between microbes. These results suggest new types of growth classification of soil bacteria and potential effects of species interactions on colony growth.
机译:近年来,随着测序技术的进步,我们对微生物生态学的理解有了很大的提高,但是对环境细菌表型特征的全面调查仍然很少。这种表型数据对于理解微生物生长和微生物生态系统多样性的策略至关重要。在这里,我们描述了使用一系列平板扫描仪结合自动图像分析对数千个细菌菌落生长进行的高通量测量。我们使用该系统来研究未经处理的土壤中微生物群落成员的生长特性。该系统提供了CFU数量,菌落生长速率和出现时间的高质量测量结果,使我们能够直接研究混合环境样品中这些特性的分布。我们发现土壤细菌显示出广泛的生长策略,这些策略可分为几类,而不能归结为土壤细菌的任何经典二分法,例如,共生菌和寡养生物。我们还发现,在早期,当附近存在其他菌落但密度不太高时,细胞最有可能形成菌落。在中等接种密度下这种可培养性的最大化表明,先前观察到的高密度导致较少菌落的趋势被微生物之间相互作用引起的菌落形成的诱导部分抵消。这些结果表明土壤细菌的新型生长分类以及物种相互作用对菌落生长的潜在影响。

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