Wang Zhiren, Fan Xuanyang, Wang Shuyi, Li Shuguang, Gao Yue, Wang Hui, Li Henan
Department of Clinical Laboratory, Peking University People's Hospital, Beijing 100044, China.
Antibiotics (Basel). 2022 Nov 24;11(12):1693. doi: 10.3390/antibiotics11121693.
The increasing number of multidrug-resistant Gram-negative bacteria presents a serious threat to global health. However, colistin-resistant has rarely been reported. We identified a colistin-resistant clinical isolate, AJ6079, in blood. The colony of AJ6079 presented a dry phenotype, and it was difficult to form a bacterial suspension, whilst transmission electron microscopy revealed that AJ6079 possessed a thick outer membrane. The phenotypic and genomic comparisons were conducted with one colistin-susceptible , which had the same antibiotic susceptibility profile except for colistin, and had the same KL25 capsule biosynthesis locus. The AJ6079 exhibited a slower growth rate, indicating that colistin-resistant possesses a higher fitness cost. The genome of AJ6079 had a G+C content of 38.7% and contained one 3,362,966 bp circular chromosome with no plasmid or mobile colistin resistance () gene. Comparative genomic analysis revealed that the AJ6079 contained several previously unreported point mutations in colistin-resistance-related genes involving amino acid substitutions in PmrB (N5K, G147C), LpxA (I107F, H131Y), and LpxD (F20I, K263R), which might be correlated with colistin resistance in . Further research is needed for verification as the genetic background was not exactly the same between the two isolates.
多重耐药革兰氏阴性菌数量的不断增加对全球健康构成了严重威胁。然而,耐黏菌素的情况鲜有报道。我们在血液中鉴定出一株耐黏菌素的临床分离株AJ6079。AJ6079的菌落呈现干燥表型,难以形成细菌悬液,而透射电子显微镜显示AJ6079拥有一层厚厚的外膜。我们与一株除对黏菌素敏感外具有相同抗生素敏感性谱且具有相同KL25荚膜生物合成位点的黏菌素敏感菌进行了表型和基因组比较。AJ6079生长速率较慢,表明耐黏菌素菌具有较高的适应性代价。AJ6079的基因组G+C含量为38.7%,包含一条3,362,966 bp的环状染色体,无质粒或可移动的黏菌素抗性()基因。比较基因组分析显示,AJ6079在与黏菌素抗性相关的基因中含有几个先前未报道的点突变,涉及PmrB(N5K、G147C)、LpxA(I107F、H131Y)和LpxD(F20I、K263R)中的氨基酸替换,这可能与该菌的黏菌素抗性相关。由于两株分离株的遗传背景不完全相同,因此需要进一步研究进行验证。