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嗜线虫致病杆菌 Mrx 菌毛在竞争性定殖线虫宿主中的作用。

Role of Mrx fimbriae of Xenorhabdus nematophila in competitive colonization of the nematode host.

机构信息

Department of Biological Sciences, University of Wisconsin, P.O. Box 413, Milwaukee, WI 53201-0413, USA.

出版信息

Appl Environ Microbiol. 2011 Oct;77(20):7247-54. doi: 10.1128/AEM.05328-11. Epub 2011 Aug 19.

Abstract

Xenorhabdus nematophila engages in mutualistic associations with the infective juvenile (IJ) stage of specific entomopathogenic nematodes. Mannose-resistant (Mrx) chaperone-usher-type fimbriae are produced when the bacteria are grown on nutrient broth agar (NB agar). The role of Mrx fimbriae in the colonization of the nematode host has remained unresolved. We show that X. nematophila grown on LB agar produced flagella rather than fimbriae. IJs propagated on X. nematophila grown on LB agar were colonized to the same extent as those propagated on NB agar. Further, progeny IJs were normally colonized by mrx mutant strains that lacked fimbriae both when bacteria were grown on NB agar and when coinjected into the insect host with aposymbiotic nematodes. The mrx strains were not competitively defective for colonization when grown in the presence of wild-type cells on NB agar. In addition, a phenotypic variant strain that lacked fimbriae colonized as well as the wild-type strain. In contrast, the mrx strains displayed a competitive colonization defect in vivo. IJ progeny obtained from insects injected with comixtures of nematodes carrying either the wild-type or the mrx strain were colonized almost exclusively with the wild-type strain. Likewise, when insects were coinjected with aposymbiotic IJs together with a comixture of the wild-type and mrx strains, the resulting IJ progeny were predominantly colonized with the wild-type strain. These results revealed that Mrx fimbriae confer a competitive advantage during colonization in vivo and provide new insights into the role of chaperone-usher fimbriae in the life cycle of X. nematophila.

摘要

寡毛类线虫共生菌 X. nematophila 与特定昆虫病原线虫的感染性幼虫(IJ)阶段进行互利共生。当细菌在营养肉汤琼脂(NB 琼脂)上生长时,会产生甘露糖抗性(Mrx)伴侣-usher 型菌毛。Mrx 菌毛在寄生线虫宿主中的定植作用仍未得到解决。我们发现,在 LB 琼脂上生长的 X. nematophila 产生了鞭毛而不是菌毛。在 LB 琼脂上生长的 X. nematophila 上繁殖的 IJ 与在 NB 琼脂上繁殖的 IJ 一样被定植。此外,当在 NB 琼脂上生长时,缺乏菌毛的 mrx 突变株与无共生体线虫一起被注射到昆虫宿主中,都可以正常定植子代 IJ。在 NB 琼脂上,mrx 菌株与野生型细胞一起生长时,其定植能力并不存在竞争缺陷。此外,缺乏菌毛的表型变异株的定植能力与野生型菌株一样。相比之下,mrx 菌株在体内表现出竞争定植缺陷。从注射携带野生型或 mrx 菌株线虫的昆虫中获得的 IJ 后代几乎完全被野生型菌株定植。同样,当昆虫被无共生体 IJ 与野生型和 mrx 菌株的混合物一起注射时,产生的 IJ 后代主要被野生型菌株定植。这些结果表明,Mrx 菌毛在体内定植过程中赋予了竞争优势,并为伴侣-usher 菌毛在 X. nematophila 生命周期中的作用提供了新的见解。

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