Occurrence of Pseudomonas lactis and Pseudomonas paralactis Amongst Non-Lactose-Fermenting Bacterial Isolates in Chickens and Their Antimicrobial Resistance Patterns.

Microbiology insights Pub Date : 2022-10-28 eCollection Date: 2022-01-01 DOI:10.1177/11786361221130313
Samson A Olofinsae, Olufemi E Adeleke, Bartholomew O Ibeh
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引用次数: 1

Abstract

A serious concern of public-health proportion is rising from the carriage of antibiotic resistance determinant in Non-Lactose-Fermenting Bacteria and acquisition of virulence particularly in strains that are not routinely isolated or screened from common food animals. This study investigated the resistance profile and pathogenicity potential of selected Non-Lactose-Fermenting Bacteria isolated from 18 poultry farms. In total, we investigated the antibiotic susceptibility patterns of 25 Pseudomonas lactis and 71 Pseudomonas paralactis isolated from chicken faeces by testing them against 12 antibiotics. Resistance genes borne by the selected isolates were screened by sequencing the genetic location of resistance determinants was determined by plasmid curing. The virulence potential of the studied strains was determined phenotypically. Pseudomonas lactis isolates were mostly resistant to azetronam (93%), followed by trimethoprim (90%), cefotaxime (86%) and then amoxicillin/clavulanic acid (57%), while Pseudomonas paralactis. isolates were most resistant to azetronam (94%), trimethoprim (90%), cefepime (80%), piperacillin (75%) and amoxicillin/clavulanic acid (70%). The Multiple Antibiotic Resistance Index of Pseudomonas lactis and Pseudomonas paralactis isolates respectively ranged from 0.0 to 0.8 and 0.0 to 0.9. Polymerase Chain Reaction revealed the presence of antibiotic resistance factors such as blaCTX-M, qnrS, aac (6')-lb-cr and blaSHV while plasmid curing revealed carriages of resistance determinants on Resistance Plasmid. Moreover, virulence enzymes such as alkaline protease and phospholipase C were found in 3% and 12% of Pseudomonas paralactis and Pseudomonas lactis, respectively. This study reports the first occurrence of Pseudomonas lactis and Pseudomonas paralactis strains from chicken faeces, and their antimicrobial resistance and relative virulence suggest the encroachment of food animals by the under-studied non-lactose-fermenting bacteria that should alert public health concerns.

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鸡非乳糖发酵细菌中乳酸假单胞菌和副乳酸假单胞菌的发生及其耐药性模式。
在非乳糖发酵细菌中携带抗生素耐药性决定因素和获得毒力,特别是在没有从普通食用动物中常规分离或筛选的菌株中,引起了公共卫生比例的严重关切。研究了从18个家禽养殖场分离的非乳糖发酵菌的耐药谱和致病性。对鸡粪便中分离的25株乳酸假单胞菌和71株副乳酸假单胞菌进行了12种抗生素的药敏试验。通过测序筛选所选菌株携带的抗性基因,通过质粒固化确定抗性决定因素的遗传位置。研究菌株的毒力潜力是表型确定的。乳酸假单胞菌对阿西曲南的耐药率最高(93%),其次是甲氧苄啶(90%)、头孢噻肟(86%)、阿莫西林/克拉维酸(57%);菌株对阿西曲南(94%)、甲氧苄啶(90%)、头孢吡肟(80%)、哌拉西林(75%)和阿莫西林/克拉维酸(70%)耐药最多。乳酸假单胞菌和副假单胞菌的多重耐药指数分别为0.0 ~ 0.8和0.0 ~ 0.9。聚合酶链反应显示存在blaCTX-M、qnrS、aac(6′)-lb-cr和blaSHV等抗生素耐药因子,质粒烘烤显示耐药决定因子在抗性质粒上携带。副假单胞菌和乳酸假单胞菌中分别有3%和12%的毒力酶,如碱性蛋白酶和磷脂酶C。本研究报告首次从鸡粪便中发现乳酸假单胞菌和副假单胞菌菌株,它们的抗微生物耐药性和相对毒力表明,未经研究的非乳糖发酵细菌对食用动物的侵犯应引起公共卫生关注。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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