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The β-Lactamase Gene Profile and a Plasmid-Carrying Multiple Heavy Metal Resistance Genes of Enterobacter cloacae

In this work, by high-throughput sequencing, antibiotic resistance genes, including class A (bla (CTX-M), bla (Z), bla (TEM), bla (VEB), bla (KLUC), and bla (SFO)), class C (bla (SHV), bla (DHA), bla (MIR), bla (AZECL-29), and bla (ACT)), and class D (bla (OXA)) β-lactamase genes, were identified am...

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Autores principales: Wu, Chongyang, Lin, Chaoqin, Zhu, Xinyi, Liu, Hongmao, Zhou, Wangxiao, Lu, Junwan, Zhu, Licheng, Bao, Qiyu, Cheng, Cong, Hu, Yunliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6317114/
https://www.ncbi.nlm.nih.gov/pubmed/30671441
http://dx.doi.org/10.1155/2018/4989602
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author Wu, Chongyang
Lin, Chaoqin
Zhu, Xinyi
Liu, Hongmao
Zhou, Wangxiao
Lu, Junwan
Zhu, Licheng
Bao, Qiyu
Cheng, Cong
Hu, Yunliang
author_facet Wu, Chongyang
Lin, Chaoqin
Zhu, Xinyi
Liu, Hongmao
Zhou, Wangxiao
Lu, Junwan
Zhu, Licheng
Bao, Qiyu
Cheng, Cong
Hu, Yunliang
author_sort Wu, Chongyang
collection PubMed
description In this work, by high-throughput sequencing, antibiotic resistance genes, including class A (bla (CTX-M), bla (Z), bla (TEM), bla (VEB), bla (KLUC), and bla (SFO)), class C (bla (SHV), bla (DHA), bla (MIR), bla (AZECL-29), and bla (ACT)), and class D (bla (OXA)) β-lactamase genes, were identified among the pooled genomic DNA from 212 clinical Enterobacter cloacae isolates. Six bla (MIR)-positive E. cloacae strains were identified, and pulsed-field gel electrophoresis (PFGE) showed that these strains were not clonally related. The complete genome of the bla (MIR) -positive strain (Y546) consisted of both a chromosome (4.78 Mb) and a large plasmid pY546 (208.74 kb). The extended-spectrum β-lactamases (ESBLs) (bla (SHV-12) and bla (CTX-M-9a)) and AmpC (bla (MIR)) were encoded on the chromosome, and the pY546 plasmid contained several clusters of genes conferring resistance to metals, such as copper (pco), arsenic (ars), tellurite (ter), and tetrathionate (ttr), and genes encoding many divalent cation transporter proteins. The comparative genomic analyses of the whole plasmid sequence and of the heavy metal resistance gene-encoding regions revealed that the plasmid sequences of Klebsiella pneumoniae (such as pKPN-332, pKPN-3967, and pKPN-262) shared the highest similarity with those of pY546. It may be concluded that a variety of β-lactamase genes present in E. cloacae which confer resistance to β-lactam antibiotics and the emergence of plasmids carrying heavy metal resistance genes in clinical isolates are alarming and need further surveillance.
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spelling pubmed-63171142019-01-22 The β-Lactamase Gene Profile and a Plasmid-Carrying Multiple Heavy Metal Resistance Genes of Enterobacter cloacae Wu, Chongyang Lin, Chaoqin Zhu, Xinyi Liu, Hongmao Zhou, Wangxiao Lu, Junwan Zhu, Licheng Bao, Qiyu Cheng, Cong Hu, Yunliang Int J Genomics Research Article In this work, by high-throughput sequencing, antibiotic resistance genes, including class A (bla (CTX-M), bla (Z), bla (TEM), bla (VEB), bla (KLUC), and bla (SFO)), class C (bla (SHV), bla (DHA), bla (MIR), bla (AZECL-29), and bla (ACT)), and class D (bla (OXA)) β-lactamase genes, were identified among the pooled genomic DNA from 212 clinical Enterobacter cloacae isolates. Six bla (MIR)-positive E. cloacae strains were identified, and pulsed-field gel electrophoresis (PFGE) showed that these strains were not clonally related. The complete genome of the bla (MIR) -positive strain (Y546) consisted of both a chromosome (4.78 Mb) and a large plasmid pY546 (208.74 kb). The extended-spectrum β-lactamases (ESBLs) (bla (SHV-12) and bla (CTX-M-9a)) and AmpC (bla (MIR)) were encoded on the chromosome, and the pY546 plasmid contained several clusters of genes conferring resistance to metals, such as copper (pco), arsenic (ars), tellurite (ter), and tetrathionate (ttr), and genes encoding many divalent cation transporter proteins. The comparative genomic analyses of the whole plasmid sequence and of the heavy metal resistance gene-encoding regions revealed that the plasmid sequences of Klebsiella pneumoniae (such as pKPN-332, pKPN-3967, and pKPN-262) shared the highest similarity with those of pY546. It may be concluded that a variety of β-lactamase genes present in E. cloacae which confer resistance to β-lactam antibiotics and the emergence of plasmids carrying heavy metal resistance genes in clinical isolates are alarming and need further surveillance. Hindawi 2018-12-20 /pmc/articles/PMC6317114/ /pubmed/30671441 http://dx.doi.org/10.1155/2018/4989602 Text en Copyright © 2018 Chongyang Wu et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wu, Chongyang
Lin, Chaoqin
Zhu, Xinyi
Liu, Hongmao
Zhou, Wangxiao
Lu, Junwan
Zhu, Licheng
Bao, Qiyu
Cheng, Cong
Hu, Yunliang
The β-Lactamase Gene Profile and a Plasmid-Carrying Multiple Heavy Metal Resistance Genes of Enterobacter cloacae
title The β-Lactamase Gene Profile and a Plasmid-Carrying Multiple Heavy Metal Resistance Genes of Enterobacter cloacae
title_full The β-Lactamase Gene Profile and a Plasmid-Carrying Multiple Heavy Metal Resistance Genes of Enterobacter cloacae
title_fullStr The β-Lactamase Gene Profile and a Plasmid-Carrying Multiple Heavy Metal Resistance Genes of Enterobacter cloacae
title_full_unstemmed The β-Lactamase Gene Profile and a Plasmid-Carrying Multiple Heavy Metal Resistance Genes of Enterobacter cloacae
title_short The β-Lactamase Gene Profile and a Plasmid-Carrying Multiple Heavy Metal Resistance Genes of Enterobacter cloacae
title_sort β-lactamase gene profile and a plasmid-carrying multiple heavy metal resistance genes of enterobacter cloacae
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6317114/
https://www.ncbi.nlm.nih.gov/pubmed/30671441
http://dx.doi.org/10.1155/2018/4989602
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