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白色念珠菌对抗生素后细菌群落重新组装及宿主反应的调节作用

Modulation of post-antibiotic bacterial community reassembly and host response by Candida albicans.

作者信息

Erb Downward John R, Falkowski Nicole R, Mason Katie L, Muraglia Ryan, Huffnagle Gary B

机构信息

Division of Pulmonary and Critical Care Medicine, Department of Internal Medicine, University of Michigan Medical School, USA.

出版信息

Sci Rep. 2013;3:2191. doi: 10.1038/srep02191.

Abstract

The introduction of Candida albicans into cefoperazone-treated mice results in changes in bacterial community reassembly. Our objective was to use high-throughput sequencing to characterize at much greater depth the specific changes in the bacterial microbiome. The colonization of C. albicans significantly altered bacterial community reassembly that was evident at multiple taxonomic levels of resolution. There were marked changes in the levels of Bacteriodetes and Lactobacillaceae. Lachnospiraceae and Ruminococcaceae, the two most abundant bacterial families, did not change in relative proportions after antibiotics, but there were marked genera-level shifts within these two bacterial families. The microbiome shifts occurred in the absence of overt intestinal inflammation. Overall, these experiments demonstrate that the introduction of a single new microbe in numerically inferior numbers into the bacterial microbiome during a broad community disturbance has the potential to significantly alter the subsequent reassembly of the bacterial community as it recovers from that disturbance.

摘要

将白色念珠菌引入头孢哌酮治疗的小鼠体内会导致细菌群落重新组装发生变化。我们的目标是使用高通量测序更深入地描述细菌微生物组的具体变化。白色念珠菌的定殖显著改变了细菌群落重新组装,这在多个分类分辨率水平上都很明显。拟杆菌门和乳杆菌科的水平有显著变化。抗生素处理后,两个最丰富的细菌科——毛螺菌科和瘤胃球菌科的相对比例没有变化,但这两个细菌科内有明显的属水平变化。微生物组的变化发生在没有明显肠道炎症的情况下。总体而言,这些实验表明,在广泛的群落干扰期间,将数量较少的单一新微生物引入细菌微生物组有潜力显著改变细菌群落在从该干扰中恢复时的后续重新组装。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6511/3709164/40a1d332f342/srep02191-f1.jpg

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