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首页> 外文期刊>Applied and Environmental Microbiology >Ecological Advantages of Autolysis during the Development and Dispersal of Pseudoalteromonas tunicata Biofilms
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Ecological Advantages of Autolysis during the Development and Dispersal of Pseudoalteromonas tunicata Biofilms

机译:拟真拟南芥生物膜发育和扩散过程中自溶的生态优势

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In the ubiquitous marine bacterium Pseudoalteromonas tunicata, subpopulations of cells are killed by the production of an autocidal protein, AlpP, during biofilm development. Our data demonstrate an involvement of this process in two parameters, dispersal and phenotypic diversification, which are of importance for the ecology of this organism and for its survival within the environment. Cell death in P. tunicata wild-type biofilms led to a major reproducible dispersal event after 192 h of biofilm development. The dispersal was not observed with a ΔAlpP mutant strain. Using flow cytometry and the fluorescent dye DiBAC4(3), we also show that P. tunicata wild-type cells that disperse from biofilms have enhanced metabolic activity compared to those cells that disperse from ΔAlpP mutant biofilms, possibly due to nutrients released from dead cells. Furthermore, we report that there was considerable phenotypic variation among cells dispersing from wild-type biofilms but not from the ΔAlpP mutant. Wild-type cells that dispersed from biofilms showed significantly increased variations in growth, motility, and biofilm formation, which may be important for successful colonization of new surfaces. These findings suggest for the first time that the autocidal events mediated by an antibacterial protein can confer ecological advantages to the species by generating a metabolically active and phenotypically diverse subpopulation of dispersal cells.
机译:在无处不在的海洋细菌杜氏假单胞菌中,细胞亚群通过生物膜发育过程中产生的自杀蛋白质AlpP杀死。我们的数据表明该过程涉及两个参数,即分散和表型多样化,这对于该生物的生态学及其在环境中的生存至关重要。 192小时的生物膜形成后,紫茎泽兰野生型生物膜中的细胞死亡导致了主要的可重现分散事件。 ΔAlpP突变株未观察到分散。使用流式细胞仪和荧光染料DiBAC4(3),我们还显示,与从ΔAlpP突变生物膜中分散的那些细胞相比,从生物膜中分散的紫苏野生型细胞具有增强的代谢活性。 。此外,我们报告说,从野生型生物膜而不是从ΔAlpP突变体分散的细胞之间存在相当大的表型变异。从生物膜中散布的野生型细胞显示出生长,运动和生物膜形成的变化显着增加,这对于成功定居新表面可能很重要。这些发现首次表明,由抗菌蛋白介导的杀伤事件可通过产生分散细胞的代谢活性和表型多样的亚群而赋予该物种生态优势。

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