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首页> 外文期刊>Applied and Environmental Microbiology >Quorum-Sensing Mutations Affect Attachment and Stability of Burkholderia cenocepacia Biofilms
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Quorum-Sensing Mutations Affect Attachment and Stability of Burkholderia cenocepacia Biofilms

机译:群体敏感突变影响嗜酒伯克霍尔德菌生物膜的附着和稳定性。

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Biofilm formation in Burkholderia cenocepacia has been shown to rely in part on acylhomoserine lactone-based quorum sensing. For many other bacterial species, it appears that both the initial adherence and the later stages of biofilm maturation are affected when quorum sensing pathways are inhibited. In this study, we examined the effects of mutations in the cepIR and cciIR quorum-sensing systems of Burkholderia cenocepacia K56-2 with respect to biofilm attachment and antibiotic resistance. We also examined the role of the cepIR system in biofilm stability and structural development. Using the high-throughput MBEC assay system to produce multiple equivalent biofilms, the biomasses of both the cepI and cepR mutant biofilms, measured by crystal violet staining, were less than half of the value observed for the wild-type strain. Attachment was partially restored upon providing functional gene copies via multicopy expression vectors. Surprisingly, neither the cciI mutant nor the double cciI cepI mutant was deficient in attachment, and restoration of the cciI gene resulted in less attachment than for the mutants. Meanwhile, the cciR mutant did show a significant reduction in attachment, as did the cciR cepIR mutant. While there was no change in antibiotic susceptibility with the individual cepIR and cciIR mutants, the cepI cciI mutant biofilms were more sensitive to ciprofloxacin. A significant increase in sensitivity to removal by sodium dodecyl sulfate was seen for the cepI and cepR mutants. Flow cell analysis of the individual cepIR mutant biofilms indicated that they were both structurally and temporally impaired in attachment and development. These results suggest that biofilm structural defects might be present in quorum-sensing mutants of B. cenocepacia that affect the stability and resistance of the adherent cell mass, providing a basis for future studies to design preventative measures against biofilm formation in this species, an important lung pathogen of cystic fibrosis patients.
机译:研究表明,伯克霍尔德菌的生物膜形成部分依赖于基于酰基高丝氨酸内酯的群体感应。对于许多其他细菌物种,当群体感应途径受到抑制时,似乎最初的粘附和生物膜成熟的后期都会受到影响。在这项研究中,我们检查了波克霍尔德森氏菌K56-2的cepIR和cciIR群体感应系统中的突变对生物膜附着和抗生素抗性的影响。我们还检查了cepIR系统在生物膜稳定性和结构发展中的作用。使用高通量MBEC分析系统产生多个等效生物膜时,通过结晶紫染色测量的cepI和cepR突变生物膜的生物量均不到野生型菌株观察到的生物量的一半。通过多拷贝表达载体提供功能基因拷贝后,部分恢复了附着。出人意料的是,cciI突变体和双重cciI cepI突变体都没有附着缺陷,并且cciI基因的恢复导致的附着力少于突变体。同时,与cciR cepIR突变体一样,cciR突变体的附着力也显着降低。尽管单个cepIR和cciIR突变体对抗生素的敏感性没有变化,但是cepI cciI突变体生物膜对环丙沙星更敏感。对于cepI和cepR突变体,观察到十二烷基硫酸钠去除的敏感性显着提高。单个cepIR突变生物膜的流式细胞分析表明,它们在附着和发育上在结构和时间上均受到损害。这些结果表明,新细菌的群体感应突变体中可能存在生物膜结构缺陷,这会影响粘附细胞团的稳定性和抗性,为今后研究设计针对该物种生物膜形成的预防措施提供了基础,这一重要肺部病原体为囊性纤维化患者。

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