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北部白喉鹑(Colinus virginianus)的可培养细菌微生物群:一个新的抗生素耐药性储存库?

Cultivable bacterial microbiota of northern bobwhite (Colinus virginianus): a new reservoir of antimicrobial resistance?

作者信息

Su Hongwen, McKelvey Jessica, Rollins Dale, Zhang Michael, Brightsmith Donald J, Derr James, Zhang Shuping

机构信息

Department of Veterinary Pathobiology, College of Veterinary Medicine and Biomedical Sciences, Texas A&M University, College Station, Texas, United States of America.

Rolling Plains Quail Research Foundation, Texas AgriLife Research, San Angelo, Texas, United States of America.

出版信息

PLoS One. 2014 Jun 17;9(6):e99826. doi: 10.1371/journal.pone.0099826. eCollection 2014.

Abstract

The northern bobwhite (Colinus virginianus) is an ecologically and economically important avian species. At the present time, little is known about the microbial communities associated with these birds. As the first step to create a quail microbiology knowledge base, the current study conducted an inventory of cultivable quail tracheal, crop, cecal, and cloacal microbiota and associated antimicrobial resistance using a combined bacteriology and DNA sequencing approach. A total of 414 morphologically unique bacterial colonies were selected from nonselective aerobic and anaerobic cultures, as well as selective and enrichment cultures. Analysis of the first 500-bp 16S rRNA gene sequences in conjunction with biochemical identifications revealed 190 non-redundant species-level taxonomic units, representing 160 known bacterial species and 30 novel species. The bacterial species were classified into 4 phyla, 14 orders, 37 families, and 59 or more genera. Firmicutes was the most commonly encountered phylum (57%) followed by Actinobacteria (24%), Proteobacteria (17%) and Bacteroidetes (0.02%). Extensive diversity in the species composition of quail microbiota was observed among individual birds and anatomical locations. Quail microbiota harbored several opportunistic pathogens, such as E. coli and Ps. aeruginosa, as well as human commensal organisms, including Neisseria species. Phenotypic characterization of selected bacterial species demonstrated a high prevalence of resistance to the following classes of antimicrobials: phenicol, macrolide, lincosamide, quinolone, and sulphate. Data from the current investigation warrant further investigation on the source, transmission, pathology, and control of antimicrobial resistance in wild quail populations.

摘要

北部 bobwhite(弗吉尼亚鹑)是一种在生态和经济方面都很重要的鸟类。目前,对于与这些鸟类相关的微生物群落了解甚少。作为创建鹌鹑微生物学知识库的第一步,当前研究采用细菌学和 DNA 测序相结合的方法,对可培养的鹌鹑气管、嗉囊、盲肠和泄殖腔微生物群以及相关的抗菌药物耐药性进行了清查。从非选择性需氧和厌氧培养物以及选择性和富集培养物中总共挑选出 414 个形态独特的细菌菌落。结合生化鉴定对前 500 个碱基对的 16S rRNA 基因序列进行分析,揭示了 190 个非冗余的物种水平分类单元,代表 160 个已知细菌物种和 30 个新物种。这些细菌物种被分为 4 个门、14 个目、37 个科和 59 个或更多属。厚壁菌门是最常见的门(57%),其次是放线菌门(24%)、变形菌门(17%)和拟杆菌门(0.02%)。在个体鸟类和解剖部位之间观察到鹌鹑微生物群的物种组成存在广泛差异。鹌鹑微生物群中存在几种机会性病原体,如大肠杆菌和铜绿假单胞菌,以及人类共生生物,包括奈瑟菌属。对选定细菌物种的表型特征分析表明,对以下几类抗菌药物具有高耐药率:氯霉素、大环内酯类、林可酰胺类、喹诺酮类和硫酸盐类。当前调查的数据值得对野生鹌鹑种群中抗菌药物耐药性的来源、传播、病理学和控制进行进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8c8/4061065/ee892fe3ef0c/pone.0099826.g003.jpg

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