School of Optometry and Vision Science, UNSW, Sydney, Australia.
The Singapore Centre for Environment Life Sciences Engineering (SCELSE), The School of Biological Sciences, Nanyang Technological University Singapore and the Ithree Institute, The University of Technology Sydney, Sydney, Australia.
Exp Eye Res. 2021 Apr;205:108504. doi: 10.1016/j.exer.2021.108504. Epub 2021 Feb 18.
Corneal infection caused by a bacteria Pseudomonas aeruginosa is common cause of ocular morbidity. Increasing antibiotic resistance by ocular P. aeruginosa is an emerging concern. In this study the resistome of ocular isolates of Pseudomonas aeruginosa clone ST308 isolated in India in 1997 (PA31, PA32, PA33, PA35 and PA37) and 2018 (PA198 and PA219) were investigated. All the isolates of ST308 had >95% nucleotide similarity. The isolates from 2018 had larger genomes, coding sequences, accessory and pan genes compared to the older isolates from 1997. The 2018 isolate PA219 was resistant to all antibiotics except polymyxin B, while the 2018 isolate PA198 was resistant to ciprofloxacin, levofloxacin, gentamicin and tobramycin. Among the isolates from 1997, five were resistant to gentamicin, tobramycin and ciprofloxacin, four were resistant to levofloxacin while two were resistant to polymyxin B. Twenty-four acquired resistance genes were present in the 2018 isolates compared to 11 in the historical isolates. All isolates contained genes encoding for aminoglycoside (aph(6)-Id, aph(3')-lIb, aph(3″)-Ib), beta-lactam (blaPAO), tetracycline (tet(G)), fosfomycin (fosA), chloramphenicol (catB7), sulphonamide (sul1), quaternary ammonium (qacEdelta1) and fluoroquinolone (crpP) resistance. Isolate PA198 possessed aph(3')-VI, rmtD2, qnrVC1, blaOXA-488, blaPME-1, while PA219 possessed aadA1, rmtB, qnrVC1, aac(6')-Ib-cr, blaTEM-1B, blaVIM-2, blaPAO-1, mph(E), mph(A), msr(E). In both recent isolates qnrVC1 was present in Tn3 transposon. In 219 blaTEM-1 was carried on a transposon and blaOXA-10 on a class 1 integron. There were no notable differences in the number of single nucleotide polymorphisms, but recent isolates carried more insertions and deletions in their genes. These findings suggest that genomes of P. aeruginosa ocular clonal strains with >95% nucleotide identity isolated twenty years apart had changed over time with the acquisition of resistance genes. The pattern of gene mutations also varied with more insertions and deletions in their chromosomal genes which confer resistance to antibiotics.
铜绿假单胞菌引起的角膜感染是眼部发病的常见原因。眼部铜绿假单胞菌对抗生素的耐药性不断增加,这是一个新出现的问题。在这项研究中,我们研究了 1997 年(PA31、PA32、PA33、PA35 和 PA37)和 2018 年(PA198 和 PA219)在印度分离的 ST308 眼部分离株的耐药组。所有 ST308 分离株的核苷酸相似度均>95%。与 1997 年的分离株相比,2018 年的分离株具有更大的基因组、编码序列、辅助和泛基因。2018 年的分离株 PA219 对除多粘菌素 B 以外的所有抗生素均具有耐药性,而 2018 年的分离株 PA198 对环丙沙星、左氧氟沙星、庆大霉素和妥布霉素具有耐药性。1997 年的分离株中有 5 株对庆大霉素、妥布霉素和环丙沙星耐药,4 株对左氧氟沙星耐药,2 株对多粘菌素 B 耐药。与历史分离株中的 11 个相比,2018 年的分离株中有 24 个获得了耐药基因。所有分离株均含有编码氨基糖苷类(aph(6)-Id、aph(3')-lIb、aph(3″)-Ib)、β-内酰胺类(blaPAO)、四环素类(tet(G))、磷霉素(fosA)、氯霉素(catB7)、磺胺类(sul1)、季铵盐类(qacEdelta1)和氟喹诺酮类(crpP)耐药基因。分离株 PA198 携带 aph(3')-VI、rmtD2、qnrVC1、blaOXA-488、blaPME-1,而 PA219 携带 aadA1、rmtB、qnrVC1、aac(6')-Ib-cr、blaTEM-1B、blaVIM-2、blaPAO-1、mph(E)、mph(A)、msr(E)。在这两个最近的分离株中,qnrVC1 均位于 Tn3 转座子中。在 219 中,blaTEM-1 位于转座子上,blaOXA-10 位于 1 类整合子上。单核苷酸多态性的数量没有明显差异,但最近的分离株在其基因中携带更多的插入和缺失。这些发现表明,二十年前分离出的核苷酸同一性>95%的铜绿假单胞菌眼部克隆株的基因组随着耐药基因的获得而发生了变化。基因突变的模式也有所不同,其染色体基因中的插入和缺失更多,从而对抗生素产生耐药性。