La Brea沥青坑石油油蝇幼虫分离细菌的新抗生素耐药谱

IF 1.8 3区 生物学 Q4 MICROBIOLOGY
Lisa M. Durso, Md. Shamimuzzaman, Brian Dillard, Kenneth W. Nickerson
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引用次数: 0

摘要

石油蝇(Helaeomyia petroleia)的幼虫生活在加州洛杉矶兰乔拉布雷亚(Rancho La Brea)富含沥青质和多芳烃的沥青渗漏层中。这些幼虫通过消化系统排出大量粘稠的沥青,它们的肠道微生物群暴露在这些极端条件下。环境应激反应机制可以共同选择抗生素耐药性,在本研究中,我们使用16S rRNA和基因组测序以及综合抗生素耐药性数据库(CARD)工具来表征先前从油蝇幼虫肠道分离的六种细菌的抗生素耐药性谱,将表型和基因型抗性谱联系起来。分离株含有一组核心抗生素耐药决定因素以及在这些物种中很少发现的决定因素。将这些油蝇分离株与CARD抗性基因标识符生成的表型流行数据进行比较,发现有16个例子中油蝇细菌似乎携带了数据库中相关分类群中未见的抗性,这表明与同一分类群的其他成员相比,油蝇分离株中存在一套新的抗性家族。研究结果强调了基因的功能二元性,这些基因同时编码抗生素耐药性和极端条件下的生存,并扩展了我们对抗生素耐药性基因在环境栖息地中的生态和进化作用的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel antibiotic resistance profiles in bacteria isolated from oil fly larvae Helaeomyia petrolei living in the La Brea Tar Pits

Larvae from the petroleum oil fly, Helaeomyia petrolei, live in the asphaltene and polyaromatic hydrocarbon rich asphalt seeps of Rancho La Brea, Los Angeles, California. These larvae pass high amounts of viscous asphalt through their digestive system, and their gut microbiota is exposed to these extreme conditions. Environmental stress response mechanisms can co-select for antibiotic resistance, and in the current study we used 16S rRNA and genomic sequencing along with the Comprehensive Antibiotic Resistance Database (CARD) tools to characterize antibiotic resistance profiles from six bacteria previously isolated from the oil fly larval intestinal tract, linking phenotypic and genotypic resistance profiles. The isolates contain a core set of antibiotic resistance determinants along with determinants that are rarely found in these species. Comparing these oil fly isolates to the phenotypic prevalence data generated by the CARD Resistance Gene Identifier revealed sixteen instances where the oil fly bacteria appeared to carry a resistance not seen in related taxa in the database, suggesting a novel suite of resistance families in the oil fly isolates compared to other members of the same taxa. Results highlight the functional duality of genes that simultaneously code for antibiotic resistance and survival under extreme conditions, and expand our understanding of the ecological and evolutionary role of antibiotic resistance genes in environmental habitats.

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来源期刊
CiteScore
5.60
自引率
11.50%
发文量
104
审稿时长
3 months
期刊介绍: Antonie van Leeuwenhoek publishes papers on fundamental and applied aspects of microbiology. Topics of particular interest include: taxonomy, structure & development; biochemistry & molecular biology; physiology & metabolic studies; genetics; ecological studies; especially molecular ecology; marine microbiology; medical microbiology; molecular biological aspects of microbial pathogenesis and bioinformatics.
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