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野生细菌倍增时间的分布。

The distribution of bacterial doubling times in the wild.

机构信息

School of Life Sciences, University of Sussex, Brighton BN1 9QG, UK.

Nuffield Department of Medicine, University of Oxford, John Radcliffe Hospital, Oxford OX3 9DU, UK.

出版信息

Proc Biol Sci. 2018 Jun 13;285(1880). doi: 10.1098/rspb.2018.0789.

Abstract

Generation time varies widely across organisms and is an important factor in the life cycle, life history and evolution of organisms. Although the doubling time (DT) has been estimated for many bacteria in the laboratory, it is nearly impossible to directly measure it in the natural environment. However, an estimate can be obtained by measuring the rate at which bacteria accumulate mutations per year in the wild and the rate at which they mutate per generation in the laboratory. If we assume the mutation rate per generation is the same in the wild and in the laboratory, and that all mutations in the wild are neutral, an assumption that we show is not very important, then an estimate of the DT can be obtained by dividing the latter by the former. We estimate the DT for five species of bacteria for which we have both an accumulation and a mutation rate estimate. We also infer the distribution of DTs across all bacteria from the distribution of the accumulation and mutation rates. Both analyses suggest that DTs for bacteria in the wild are substantially greater than those in the laboratory, that they vary by orders of magnitude between different species of bacteria and that a substantial fraction of bacteria double very slowly in the wild.

摘要

代时在不同生物中差异很大,是生物生命周期、生活史和进化的重要因素。尽管已经在实验室中估算了许多细菌的倍增时间(DT),但在自然环境中几乎不可能直接测量它。然而,可以通过测量野生细菌每年积累突变的速度和实验室中每代细菌突变的速度来估算。如果我们假设每一代的突变率在野外和实验室中是相同的,并且野外的所有突变都是中性的,这是我们证明的一个假设,并不是非常重要,那么通过将后者除以前者,就可以得到 DT 的估算值。我们对五种具有积累率和突变率估算值的细菌进行了 DT 的估算。我们还从积累率和突变率的分布中推断出所有细菌的 DT 分布。这两个分析都表明,野生细菌的 DT 明显大于实验室中的 DT,不同种细菌的 DT 差异巨大,并且相当一部分细菌在野外生长缓慢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5026/6015860/2a98a745333d/rspb20180789-g1.jpg

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