Literature DB >> 33912608

Deletion of the c2515 and c2516 Genes Affects Iron Uptake and Virulence of APEC O1 Strain E516.

Qingqing Gao1, Xi Li1, Senyan Su1, Lei Yang1, Song Gao1.   

Abstract

Avian pathogenic Escherichia coli (APEC), widely spread among poultry, is well-known to cause colibacillosis in chickens, which results in significant losses in poultry industry. The ability to uptake iron in the extra-intestinal environment is prerequisite for APEC survival. For adaptation to the low-iron environments, the bacteria have evolved multiple iron acquisition systems to ensure optimal iron uptake. However, many components of these iron acquisition pathways are still not clearly known. An in silico analysis of the genome of a septicemic APEC O1 strain E516 identified two putative iron transport genes homologous to the c2515 and c2516 genes from uropathogenic E. coli CFT073. In this study, we constructed the single and double gene deletion mutants, and studied their biological characteristic and pathogenic traits through in vitro and in vivo assays. Reverse transcriptase PCR (RT-PCR) analyses demonstrated that the mutations destroying the reading frame of the target genes abolished their transcription. Deletion of the single or double genes of c2515 and c2516 in APEC E516 weakened its ability to produce siderophore. Consistently, the mutants exhibited growth defect under iron-depleted conditions and the intracellular iron levels in the mutants were decreased in comparison with that of the wild-type (WT). Cell infection assays showed that the iron uptake defective mutants were more easily eliminated by the macrophage. Inactivation of the c2515 and c2516 genes affected bacterial colonization of chicken tissues, as well as the 50% lethal dose levels compared with the WT strain. Moreover, the expression levels of several iron uptake-related genes were significantly decreased in the double-deletion mutant. In total, the c2515 and c2516 may involve in siderophore-mediated iron uptake and participate in the pathogenesis of APEC O1 strain E516.
Copyright © 2021 Gao, Li, Su, Yang and Gao.

Entities:  

Keywords:  avian pathogenic Escherichia coli; iron transport genes; iron uptake; mutant; virulence

Year:  2021        PMID: 33912608      PMCID: PMC8075096          DOI: 10.3389/fvets.2021.654721

Source DB:  PubMed          Journal:  Front Vet Sci        ISSN: 2297-1769


  24 in total

1.  CAS agar diffusion assay for the measurement of siderophores in biological fluids.

Authors:  S H Shin; Y Lim; S E Lee; N W Yang; J H Rhee
Journal:  J Microbiol Methods       Date:  2001-02-01       Impact factor: 2.363

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Authors:  Daniel J Raines; Olga V Moroz; Elena V Blagova; Johan P Turkenburg; Keith S Wilson; Anne-K Duhme-Klair
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Authors:  Byron C Chu; Alicia Garcia-Herrero; Ted H Johanson; Karla D Krewulak; Cheryl K Lau; R Sean Peacock; Zoya Slavinskaya; Hans J Vogel
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7.  The genome sequence of avian pathogenic Escherichia coli strain O1:K1:H7 shares strong similarities with human extraintestinal pathogenic E. coli genomes.

Authors:  Timothy J Johnson; Subhashinie Kariyawasam; Yvonne Wannemuehler; Paul Mangiamele; Sara J Johnson; Curt Doetkott; Jerod A Skyberg; Aaron M Lynne; James R Johnson; Lisa K Nolan
Journal:  J Bacteriol       Date:  2007-02-09       Impact factor: 3.490

8.  orf6 and orf10 in Prophage phiv142-3 Enhance the Iron-Acquisition Ability and Resistance of Avian Pathogenic Escherichia coli Strain DE142 to Serum.

Authors:  Dezhi Li; Xinjie Qian; Xinyuan Liu; Yu Sun; Jianluan Ren; Feng Xue; Qing Liu; Fang Tang; Jianjun Dai
Journal:  Front Vet Sci       Date:  2020-11-25

9.  IbeR facilitates stress-resistance, invasion and pathogenicity of avian pathogenic Escherichia coli.

Authors:  Shaohui Wang; Yinli Bao; Qingmei Meng; Yongjie Xia; Yichao Zhao; Yang Wang; Fang Tang; Xiangkai ZhuGe; Shengqing Yu; Xiangan Han; Jianjun Dai; Chengping Lu
Journal:  PLoS One       Date:  2015-03-13       Impact factor: 3.240

10.  Critical Role for Molecular Iron in Coxiella burnetii Replication and Viability.

Authors:  Savannah E Sanchez; Anders Omsland
Journal:  mSphere       Date:  2020-07-22       Impact factor: 4.389

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