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扩张种群中突变“ jackpot ”事件过剩的空间卢里亚-德尔布吕克实验揭示。

Excess of mutational jackpot events in expanding populations revealed by spatial Luria-Delbrück experiments.

机构信息

Department of Physics, University of California, Berkeley, California 94720, USA.

Department of Integrative Biology, University of California, Berkeley, California 94720, USA.

出版信息

Nat Commun. 2016 Oct 3;7:12760. doi: 10.1038/ncomms12760.

Abstract

The genetic diversity of growing cellular populations, such as biofilms, solid tumours or developing embryos, is thought to be dominated by rare, exceptionally large mutant clones. Yet, the emergence of these mutational jackpot events is only understood in well-mixed populations, where they stem from mutations that arise during the first few cell divisions. To study jackpot events in spatially structured populations, we track mutant clones in microbial populations using fluorescence microscopy and population sequencing. High-frequency mutations are found to be massively enriched in microbial colonies compared with well-shaken liquid cultures, as a result of late-occurring mutations surfing at the edge of range expansions. Thus, jackpot events can be generated not only when mutations arise early but also when they occur at favourable locations, which exacerbates their role in adaptation and disease. In particular, because spatial competition with the wild type keeps most mutant clones in a quiescent state, strong selection pressures that kill the wild type promote drug resistance.

摘要

不断增长的细胞群体(如生物膜、实体瘤或胚胎)的遗传多样性被认为主要由罕见的、特大的突变体克隆所主导。然而,这些突变“ jackpot ”事件的出现仅在充分混合的群体中得到理解,它们源于在最初的几次细胞分裂过程中产生的突变。为了在空间结构的群体中研究 jackpot 事件,我们使用荧光显微镜和群体测序来追踪微生物群体中的突变体克隆。与充分摇匀的液体培养物相比,高频率的突变在微生物菌落中大量富集,这是由于在范围扩展的边缘发生的后期突变所导致。因此, jackpot 事件不仅可以在早期发生突变时产生,也可以在有利的位置发生突变时产生,这加剧了它们在适应和疾病中的作用。特别是,由于与野生型的空间竞争使大多数突变体克隆处于静止状态,因此杀死野生型的强烈选择压力会促进耐药性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cca/5059437/fff9a3e5c134/ncomms12760-f1.jpg

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