Galiot Lucie, Monger Xavier C, Vincent Antony T
Département Des Sciences Animales, Faculté Des Sciences de L'agriculture et de L'alimentation, Université Laval, Quebec City, QC G1V 0A6, Canada.
Institut de Biologie Intégrative et Des Systèmes, Université Laval, Quebec City, QC G1V 0A6, Canada.
Antibiotics (Basel). 2023 Jan 14;12(1):175. doi: 10.3390/antibiotics12010175.
Antibiotic resistance is an issue in many areas of human activity. The mobilization of antibiotic resistance genes within the bacterial community makes it difficult to study and control the phenomenon. It is known that certain insertion sequences, which are mobile genetic elements, can participate in the mobilization of antibiotic resistance genes and in the expression of these genes. However, the magnitude of the contribution of insertion sequences to the mobility of antibiotic resistance genes remains understudied. In this study, the relationships between insertion sequences and antibiotic resistance genes present in the microbiome were investigated using two public datasets. The first made it possible to analyze the effects of different antibiotics in a controlled mouse model. The second dataset came from a study of the differences between conventional and organic-raised cattle. Although it was possible to find statistically significant correlations between the insertion sequences and antibiotic resistance genes in both datasets, several challenges remain to better understand the contribution of insertion sequences to the motility of antibiotic resistance genes. Obtaining more complete and less fragmented metagenomes with long-read sequencing technologies could make it possible to understand the mechanisms favoring horizontal transfers within the microbiome with greater precision.
抗生素耐药性是人类活动诸多领域中的一个问题。细菌群落内抗生素耐药基因的移动性使得对这一现象的研究和控制变得困难。已知某些插入序列作为可移动遗传元件,能够参与抗生素耐药基因的移动以及这些基因的表达。然而,插入序列对抗生素耐药基因移动性的贡献程度仍未得到充分研究。在本研究中,利用两个公开数据集对微生物组中存在的插入序列与抗生素耐药基因之间的关系进行了调查。第一个数据集使得在可控的小鼠模型中分析不同抗生素的作用成为可能。第二个数据集来自对传统养殖牛和有机养殖牛差异的研究。尽管在两个数据集中都能够找到插入序列与抗生素耐药基因之间具有统计学意义的相关性,但要更好地理解插入序列对抗生素耐药基因移动性的贡献仍存在若干挑战。采用长读长测序技术获得更完整、片段化程度更低的宏基因组,可能会更精确地了解有利于微生物组内水平转移的机制。