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支气管败血波氏杆菌利用盘基网柄菌复杂的生命周期作为扩大传播载体。

Bordetella bronchiseptica exploits the complex life cycle of Dictyostelium discoideum as an amplifying transmission vector.

作者信息

Taylor-Mulneix Dawn L, Bendor Liron, Linz Bodo, Rivera Israel, Ryman Valerie E, Dewan Kalyan K, Wagner Shannon M, Wilson Emily F, Hilburger Lindsay J, Cuff Laura E, West Christopher M, Harvill Eric T

机构信息

Department of Veterinary and Biomedical Sciences, The Pennsylvania State University, University Park, Pennsylvania, United States of America.

Center for Vaccine and Immunology, College of Veterinary Medicine, University of Georgia, Athens, Georgia, United States of America.

出版信息

PLoS Biol. 2017 Apr 12;15(4):e2000420. doi: 10.1371/journal.pbio.2000420. eCollection 2017 Apr.

Abstract

Multiple lines of evidence suggest that Bordetella species have a significant life stage outside of the mammalian respiratory tract that has yet to be defined. The Bordetella virulence gene (BvgAS) two-component system, a paradigm for a global virulence regulon, controls the expression of many "virulence factors" expressed in the Bvg positive (Bvg+) phase that are necessary for successful respiratory tract infection. A similarly large set of highly conserved genes are expressed under Bvg negative (Bvg-) phase growth conditions; however, these appear to be primarily expressed outside of the host and are thus hypothesized to be important in an undefined extrahost reservoir. Here, we show that Bvg- phase genes are involved in the ability of Bordetella bronchiseptica to grow and disseminate via the complex life cycle of the amoeba Dictyostelium discoideum. Unlike bacteria that serve as an amoeba food source, B. bronchiseptica evades amoeba predation, survives within the amoeba for extended periods of time, incorporates itself into the amoeba sori, and disseminates along with the amoeba. Remarkably, B. bronchiseptica continues to be transferred with the amoeba for months, through multiple life cycles of amoebae grown on the lawns of other bacteria, thus demonstrating a stable relationship that allows B. bronchiseptica to expand and disperse geographically via the D. discoideum life cycle. Furthermore, B. bronchiseptica within the sori can efficiently infect mice, indicating that amoebae may represent an environmental vector within which pathogenic bordetellae expand and disseminate to encounter new mammalian hosts. These data identify amoebae as potential environmental reservoirs as well as amplifying and disseminating vectors for B. bronchiseptica and reveal an important role for the Bvg- phase in these interactions.

摘要

多条证据表明,博德特氏菌属在哺乳动物呼吸道之外存在一个尚未明确的重要生命阶段。博德特氏菌毒力基因(BvgAS)双组分系统是全球毒力调节子的范例,它控制着许多在Bvg阳性(Bvg+)阶段表达的“毒力因子”的表达,这些因子是呼吸道感染成功所必需的。在Bvg阴性(Bvg-)阶段生长条件下也表达了一组同样大量的高度保守基因;然而,这些基因似乎主要在宿主外表达,因此推测它们在一个未明确的宿主外储存库中很重要。在这里,我们表明Bvg-阶段基因参与支气管败血博德特氏菌通过盘基网柄菌复杂生命周期生长和传播的能力。与作为变形虫食物来源的细菌不同,支气管败血博德特氏菌能躲避变形虫的捕食,在变形虫内存活很长时间,融入变形虫的子实体,并与变形虫一起传播。值得注意的是,支气管败血博德特氏菌会与变形虫持续转移数月,经历在其他细菌菌苔上生长的变形虫的多个生命周期,从而证明了一种稳定的关系,使支气管败血博德特氏菌能够通过盘基网柄菌的生命周期在地理上扩张和扩散。此外,子实体内的支气管败血博德特氏菌能有效地感染小鼠,这表明变形虫可能是一种环境载体,致病性博德特氏菌在其中扩张和传播以接触新的哺乳动物宿主。这些数据确定变形虫是支气管败血博德特氏菌的潜在环境储存库以及扩增和传播载体,并揭示了Bvg-阶段在这些相互作用中的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1493/5389573/08c1b51b87ab/pbio.2000420.g001.jpg

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