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社区范围内的抗菌药物耐药性的生存能力和复杂性。

Subsistence and complexity of antimicrobial resistance on a community-wide level.

机构信息

Institute for Ecopreneurship, School of Life Sciences, University of Applied Sciences and Arts Northwestern Switzerland, Muttenz, Switzerland.

出版信息

Environ Microbiol. 2020 Jul;22(7):2463-2468. doi: 10.1111/1462-2920.15018. Epub 2020 Apr 28.

Abstract

There are a multitude of resistance strategies that microbes can apply to avoid inhibition by antimicrobials. One of these strategies is the enzymatic modification of the antibiotic, in a process generally termed inactivation. Furthermore, some microorganisms may not be limited to the mere inactivation of the antimicrobial compounds. They can continue by further enzymatic degradation of the compounds' carbon backbone, taking nutritional and energetic advantage of the former antibiotic. This driving force to harness an additional food source in a complex environment adds another level of complexity to the reasonably well-understood process of antibiotic resistance proliferation on a single cell level: It brings bioprotection into play at the level of microbial community. Despite the possible implications of a resistant community in a host and a lurking antibiotic failure, knowledge of degradation pathways of antibiotics and their connections is scarce. Currently, it is limited to only a few families of antibiotics (e.g. β-lactams and sulfonamides). In this article, we discuss the fluctuating nature of the relationship between antibiotic resistance and the biodegradation of antibiotics. This distinction mainly depends on the genetic background of the microbe, as general resistance genes can be recruited to function in a biodegradation pathway.

摘要

微生物有许多抵抗策略可以用来避免被抗生素抑制。其中一种策略是通过通常称为失活的过程来修饰抗生素。此外,一些微生物可能不仅限于简单地使抗生素失活。它们可以通过进一步酶解化合物的碳骨架来继续利用前抗生素的营养和能量优势。在复杂环境中利用额外的食物源的这种驱动力在抗生素耐药性在单细胞水平上合理理解的过程中增加了另一个层面的复杂性:它将生物保护引入了微生物群落的水平。尽管宿主中耐药性群体和潜在的抗生素失效可能存在影响,但对抗生素降解途径及其联系的了解却很少。目前,它仅局限于少数几类抗生素(例如β-内酰胺类和磺胺类)。在本文中,我们讨论了抗生素耐药性和抗生素生物降解之间关系的变化性质。这种区别主要取决于微生物的遗传背景,因为一般的抗性基因可以被招募到生物降解途径中发挥作用。

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