Genomic Insights of Enterococcus faecium UC7251, a Multi-Drug Resistant Strain From Ready-to-Eat Food, Highlight the Risk of Antimicrobial Resistance in the Food Chain

被引:20
作者
Belloso Daza, Mireya Viviana [1 ]
Milani, Giovanni [1 ]
Cortimiglia, Claudia [1 ]
Pietta, Ester [1 ]
Bassi, Daniela [1 ]
Cocconcelli, Pier Sandro [1 ]
机构
[1] Univ Cattolica Sacro Cuore, Dipartimento Sci & Tecnol Alimentari Filiera Agroa, Piacenza, Italy
关键词
Enterococcus faecium; multi-drug resistant; ready-to-eat foods; genomic analysis; gene transfer; AMINOGLYCOSIDE RESISTANCE; HEAVY-METALS; BACTERIA; ANTIBIOTICS; IDENTIFICATION; SURVEILLANCE; ENVIRONMENT; COMMENSAL; VIRULENCE; FAECALIS;
D O I
10.3389/fmicb.2022.894241
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The presence of multi-drug resistant (MDR) bacteria in ready-to-eat foods comprises a threat for public health due to their ability to acquire and transfer antibiotic-resistant determinants that could settle in the microbiome of the human digestive tract. In this study, Enterococcus faecium UC7251 isolated from a fermented dry sausage was characterized phenotypically and genotypically to hold resistance to multiple antibiotics including aminoglycosides, macrolides, beta-lactams, and tetracyclines. We further investigated this strain following a hybrid sequencing and assembly approach (short and long reads) and determined the presence of various mobile genetic elements (MGEs) responsible of horizontal gene transfer (HGT). On the chromosome of UC7251, we found one integrative and conjugative element (ICE) and a conjugative transposon Tn916-carrying tetracycline resistance. UC7251 carries two plasmids: one small plasmid harboring a rolling circle replication and one MDR megaplasmid. The latter was identified as mobilizable and containing a putative integrative and conjugative element-like region, prophage sequences, insertion sequences, heavy-metal resistance genes, and several antimicrobial resistance (AMR) genes, confirming the phenotypic resistance characteristics. The transmissibility potential of AMR markers was observed through mating experiments, where Tn916-carried tetracycline resistance was transferred at intra- and inter-species levels. This work highlights the significance of constant monitoring of products of animal origin, especially RTE foodstuffs, to stimulate the development of novel strategies in the race for constraining the spread of antibiotic resistance.
引用
收藏
页数:15
相关论文
共 107 条
[1]   Genomic Insights Into the Pathogenicity of a Novel Biofilm-Forming Enterococcus sp. Bacteria (Enterococcus lacertideformus) Identified in Reptiles [J].
Agius, Jessica Esther ;
Phalen, David Norton ;
Rose, Karrie ;
Eden, John-Sebastian .
FRONTIERS IN MICROBIOLOGY, 2021, 12
[2]   Vancomycin-Resistant Enterococci: A Review of Antimicrobial Resistance Mechanisms and Perspectives of Human and Animal Health [J].
Ahmed, Mohamed O. ;
Baptiste, Keith E. .
MICROBIAL DRUG RESISTANCE, 2018, 24 (05) :590-606
[3]   CARD 2020: antibiotic resistome surveillance with the comprehensive antibiotic resistance database [J].
Alcock, Brian P. ;
Raphenya, Amogelang R. ;
Lau, Tammy T. Y. ;
Tsang, Kara K. ;
Bouchard, Megane ;
Edalatmand, Arman ;
Huynh, William ;
Nguyen, Anna-Lisa, V ;
Cheng, Annie A. ;
Liu, Sihan ;
Min, Sally Y. ;
Miroshnichenko, Anatoly ;
Tran, Hiu-Ki ;
Werfalli, Rafik E. ;
Nasir, Jalees A. ;
Oloni, Martins ;
Speicher, David J. ;
Florescu, Alexandra ;
Singh, Bhavya ;
Faltyn, Mateusz ;
Hernandez-Koutoucheva, Anastasia ;
Sharma, Arjun N. ;
Bordeleau, Emily ;
Pawlowski, Andrew C. ;
Zubyk, Haley L. ;
Dooley, Damion ;
Griffiths, Emma ;
Maguire, Finlay ;
Winsor, Geoff L. ;
Beiko, Robert G. ;
Brinkman, Fiona S. L. ;
Hsiao, William W. L. ;
Domselaar, Gary, V ;
McArthur, Andrew G. .
NUCLEIC ACIDS RESEARCH, 2020, 48 (D1) :D517-D525
[4]   Type IV Coupling Proteins as Potential Targets to Control the Dissemination of Antibiotic Resistance [J].
Alvarez-Rodriguez, Itxaso ;
Arana, Lide ;
Ugarte-Uribe, Begona ;
Gomez-Rubio, Elena ;
Martin-Santamaria, Sonsoles ;
Garbisu, Carlos ;
Alkorta, Itziar .
FRONTIERS IN MOLECULAR BIOSCIENCES, 2020, 7
[5]   Revision of the currently authorised maximum copper content in complete feed EFSA Panel on Additives and Products or Substances used in Animal Feed (FEEDAP) [J].
Aquilina, Gabriele ;
Azimonti, Giovanna ;
Bampidis, Vasileios ;
Bastos, Maria de Lourdes ;
Bories, Georges ;
Chesson, Andrew ;
Cocconcelli, Pier Sandro ;
Flachowsky, Gerhard ;
Gropp, Jurgen ;
Kolar, Boris ;
Kouba, Maryline ;
Puente, Secundino Lopez ;
Lopez-Alonso, Marta ;
Mantovani, Alberto ;
Mayo, Baltasar ;
Ramos, Fernando ;
Rychen, Guido ;
Saarela, Maria ;
Villa, Roberto Edoardo ;
Wallace, Robert John ;
Wester, Pieter .
EFSA JOURNAL, 2016, 14 (08)
[6]   Heavy metal resistance in bacteria from animals [J].
Argudin, M. A. ;
Hoefer, A. ;
Butaye, P. .
RESEARCH IN VETERINARY SCIENCE, 2019, 122 :132-147
[7]   Enterococcus faecium genome dynamics during long-term asymptomatic patient gut colonization [J].
Bayjanov, Jumamurat R. ;
Baan, Jery ;
Rogers, Malbert R. C. ;
Troelstra, Annet ;
Willems, Rob J. L. ;
van Schaik, Willem .
MICROBIAL GENOMICS, 2019, 5 (07)
[8]   Biotechnological potential, probiotic and safety properties of newly isolated enterocin-producing Enterococcus lactic strains [J].
Ben Braiek, Olfa ;
Morandi, Stefano ;
Cremonesi, Paola ;
Smaoui, Slim ;
Hani, Khaled ;
Ghrairi, Taoufik .
LWT-FOOD SCIENCE AND TECHNOLOGY, 2018, 92 :361-370
[9]   IslandViewer 4: expanded prediction of genomic islands for larger-scale datasets [J].
Bertelli, Claire ;
Laird, Matthew R. ;
Williams, Kelly P. ;
Lau, Britney Y. ;
Hoad, Gemma ;
Winsor, Geoffrey L. ;
Brinkman, Fiona S. L. .
NUCLEIC ACIDS RESEARCH, 2017, 45 (W1) :W30-W35
[10]   A genomic view of food-related and probiotic Enterococcus strains [J].
Bonacina, Julieta ;
Suarez, Nadia ;
Hormigo, Ricardo ;
Fadda, Silvina ;
Lechner, Marcus ;
Saavedra, Lucila .
DNA RESEARCH, 2017, 24 (01) :11-24