Stannek Lorena, Egelkamp Richard, Gunka Katrin, Commichau Fabian M
Department of General Microbiology, Georg-August University.
J Vis Exp. 2014 Jan 18(83):e51196. doi: 10.3791/51196.
Many microorganisms such as bacteria proliferate extremely fast and the populations may reach high cell densities. Small fractions of cells in a population always have accumulated mutations that are either detrimental or beneficial for the cell. If the fitness effect of a mutation provides the subpopulation with a strong selective growth advantage, the individuals of this subpopulation may rapidly outcompete and even completely eliminate their immediate fellows. Thus, small genetic changes and selection-driven accumulation of cells that have acquired beneficial mutations may lead to a complete shift of the genotype of a cell population. Here we present a procedure to monitor the rapid clonal expansion and elimination of beneficial and detrimental mutations, respectively, in a bacterial cell population over time by cocultivation of fluorescently labeled individuals of the Gram-positive model bacterium Bacillus subtilis. The method is easy to perform and very illustrative to display intraspecies competition among the individuals in a bacterial cell population.
许多微生物,如细菌,繁殖速度极快,其种群数量可能达到很高的细胞密度。种群中的一小部分细胞总会积累对细胞有害或有益的突变。如果突变的适应性效应为亚群提供了强大的选择性生长优势,那么这个亚群的个体可能会迅速胜过甚至完全消除其直接同类。因此,小的基因变化以及获得有益突变的细胞在选择作用下的积累可能会导致细胞群体基因型的完全转变。在此,我们展示一种方法,通过对革兰氏阳性模式细菌枯草芽孢杆菌的荧光标记个体进行共培养,来监测细菌细胞群体中有益和有害突变随时间的快速克隆扩增和消除情况。该方法易于操作,对于展示细菌细胞群体中个体间的种内竞争非常直观。