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Evaluation of plate count methods for determination of maximum specific growth rate in mixed microbial communities, and its possible application for diversity assessment

机译:确定混合微生物群落最大比生长率的平板计数方法的评价及其在多样性评估中的应用

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Two plate count methods are proposed for direct assessment of the maximum specific growth rate (#mu#_m) of bacteria in mixed communities. An estimate of #mu#_m of individual colonies is obtained by plating samples on an agar medium and determining either the time required to form macroscopically visible colonies, T_v (diameter <= 0.2 mm), or the linear radial growth rate, K_r, of single colonies. In accordance with theoretical models, a linear relationship was found between #mu#_m determined in liquid culture and 1/T_v, and between #mu#_m and K_r. Empirical relationships were established for these relationships. The time required to form a visible colony was 17 +- 9 h longer for cells in the stationary growth phase, whereas the linear radial growth rate was not affected by the physiological state of the cells. The proposed plate count methods are simple and applicable for describing the community structure, and for estimating the frequency distribution of maximum specific growth rates in mixed communities. By using this frequency distribution it is possible to calculate diversity indexes and to assign a microbial community a position on an r/K-gradient.
机译:提出了两种平板计数方法,用于直接评估混合社区中细菌的最大比生长速率(#mu#_m)。通过将样品铺在琼脂培养基上,并确定形成肉眼可见的菌落所需的时间T_v(直径<= 0.2 mm)或线虫的线性径向生长率K_r,可得出单个菌落的估计值#mu#_m。单个殖民地。根据理论模型,在液体培养中确定的#mu#_m和1 / T_v之间以及#mu#_m和K_r之间发现线性关系。建立了这些关系的经验关系。对于处于静止生长期的细胞,形成可见菌落所需的时间要长17±9小时,而线性径向生长速率不受细胞生理状态的影响。提出的板块计数方法简单易行,可用于描述群落结构,并估计混合群落中最大比生长率的频率分布。通过使用这种频率分布,可以计算多样性指数并为微生物群落分配r / K梯度的位置。

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