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表面质粒转移的动力学

Dynamics of plasmid transfer on surfaces.

作者信息

Simonsen L

机构信息

Department of Zoology, University of Massachusetts, Amherst 01003.

出版信息

J Gen Microbiol. 1990 Jun;136(6):1001-7. doi: 10.1099/00221287-136-6-1001.

Abstract

A protocol was developed to study the dynamics of growth and plasmid transfer in surface populations of bacteria. This method allows for quantitative estimates of cell population densities over time, as well as microscopic observations of colony growth and interactions. Using this 'surface slide system' (SSS), the dynamics of the plasmid R1 and its permanently derepressed mutant R1drd19 in surface cultures of Escherichia coli K12 was examined. In surface culture, the stationary-phase cell densities were constant over a wide range of initial cell density (= colony density) and comparable to those obtained in liquid culture. For high initial cell densities, where the cells formed a confluent layer at stationary phase, the kinetics of growth and plasmid transfer was similar to that obtained in liquid culture, and the relative yields of R1drd19 and R1 transconjugants were similar in the two habitats. In surface culture, however, R1drd19 transconjugant yield was profoundly affected, and R1 transfer to a lesser extent, by colony density. In contrast, liquid matings were virtually unaffected by initial cell density. The transfer advantage of the permanently depressed over the repressed plasmid was much less apparent for lower colony densities. I propose a hypothesis for plasmid transfer between colonies that explains these observations as a consequence of the geometry of the surface habitat and the effect of transitory derepression of the synthesis of pili.

摘要

我们制定了一项方案来研究细菌表面群体的生长动力学和质粒转移。该方法能够对细胞群体密度随时间的变化进行定量估计,同时也能对菌落生长和相互作用进行微观观察。利用这种“表面载玻片系统”(SSS),我们研究了质粒R1及其永久去阻遏突变体R1drd19在大肠杆菌K12表面培养物中的动力学。在表面培养中,稳定期细胞密度在很宽的初始细胞密度(=菌落密度)范围内保持恒定,且与液体培养中获得的细胞密度相当。对于高初始细胞密度,即细胞在稳定期形成汇合层的情况,生长和质粒转移的动力学与液体培养中相似,并且在这两种培养环境中,R1drd19和R1转接合子的相对产量相似。然而,在表面培养中,菌落密度对R1drd19转接合子产量有深远影响,对R1转移的影响较小。相比之下,液体交配几乎不受初始细胞密度的影响。对于较低的菌落密度,永久去阻遏质粒相对于阻遏质粒的转移优势不太明显。我提出了一个关于菌落间质粒转移的假说,该假说将这些观察结果解释为表面生境几何形状以及菌毛合成瞬时去阻遏效应的结果。

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