由等离子体介导的表型噪声导致细菌中暂时的抗生素耐药性
J Carlos R Hernandez-Beltran1,2, Jerónimo Rodríguez-Beltrán3, Oscar Bruno Aguilar-Luviano4
1Center for Genomic Sciences, Universidad Nacional Autónoma de México, 62210, Cuernavaca, México. hernandezbeltran@evolbio.mpg.de.
Nature communications
|March 24, 2024
概括
多拷贝等离子体使细菌能够通过快速放大耐药性基因,在抗生素下生存. 这种等离子体变异性使细菌种群能够快速适应不断变化的药物环境.
科学领域:
- 微生物学 微生物学
- 遗传学 遗传学 是一个
- 计算生物学 计算生物学
背景情况:
- 抗生素耐药性是一个主要的公共卫生威胁.
- 细菌使用基因放大作为对抗抗菌剂的生存策略.
- 多重复制等离子体是已知的基因转移载体,可以携带抗性基因.
研究的目的:
- 为了研究多重复制等离子体在细菌适应抗生素中的作用.
- 了解塑体上的基因放大如何导致暂时抗生素耐药性.
- 探索等离子体拷贝数变异对细菌生存的影响.
主要方法:
- 一个计算模型的随机模拟.
- 高通量单细胞测量blaTEM-1表达的结果.
- 对大肠杆菌MG1655.5进行的实验.
主要成果:
- 多拷贝等离子体迅速放大基因,导致表型噪声和短暂的抗性.
- 等离子体拷贝数的变化创造了具有不同等离子体负载的稳定种群.
- 这种多样性提高了在抗生素压力下生存率,并在无药条件下降低了代谢负担.
结论:
- 多拷贝等离子体是细菌适应的关键驱动因素,通过调节基因拷贝数.
- 等离子体介导的基因放大提供了一个快速,短暂的抗生素耐药性的机制.
- 了解这些等离子体动态对于打击抗生素耐药性至关重要.
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