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在假单胞菌生长微菌落中整合和共轭元件激活的生活史分析。

Life history analysis of integrative and conjugative element activation in growing microcolonies of Pseudomonas.

机构信息

Department of Fundamental Microbiology, University of Lausanne, Bâtiment Biophore, Quartier UNIL-Sorge, Lausanne, Switzerland.

出版信息

J Bacteriol. 2014 Apr;196(7):1425-34. doi: 10.1128/JB.01333-13. Epub 2014 Jan 24.

Abstract

Integrative and conjugative elements (ICE) are in some ways parasitic mobile DNA that propagate vertically through replication with the bacterial host chromosome but at low frequencies can excise and invade new recipient cells through conjugation and reintegration (horizontal propagation). The factors that contribute to successful horizontal propagation are not very well understood. Here, we study the influence of host cell life history on the initiation of transfer of a model ICE named ICEclc in bacteria of the genus Pseudomonas. We use time-lapse microscopy of growing and stationary-phase microcolonies of ICEclc bearing cells in combination with physiological staining and gene reporter analysis in stationary-phase suspended cells. We provide evidence that cell age and cell lineage are unlikely to play a role in the decision to initiate the ICEclc transfer program. In contrast, cells activating ICEclc show more often increased levels of reactive oxygen species and membrane damage than nonactivating cells, suggesting that some form of biochemical damage may make cells more prone to ICEclc induction. Finally, we find that ICEclc active cells appear spatially at random in a microcolony, which may have been a selective advantage for maximizing ICEclc horizontal transmission to new recipient species.

摘要

整合子-接合元件(ICE)在某些方面是寄生性移动 DNA,通过与细菌宿主染色体的复制垂直传播,但在低频率下可以通过接合和再整合(水平传播)切除并侵入新的受体细胞。促成成功水平传播的因素还不是很清楚。在这里,我们研究了宿主细胞的生活史对模型 ICE(命名为 ICEclc)在假单胞菌属细菌中转移的起始的影响。我们使用生长和静止期微菌落的延时显微镜观察 ICEclc 携带细胞,并结合静止期悬浮细胞的生理染色和基因报告分析。我们提供的证据表明,细胞年龄和细胞谱系不太可能在决定启动 ICEclc 转移程序中发挥作用。相比之下,激活 ICEclc 的细胞比非激活细胞更经常显示出更高水平的活性氧和膜损伤,这表明某种形式的生化损伤可能使细胞更容易诱导 ICEclc。最后,我们发现 ICEclc 活性细胞在微菌落中随机出现,这可能是最大限度地将 ICEclc 横向传播给新受体物种的一种选择性优势。

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