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致病真菌中抗真菌药物耐药性的微观进化

The Microevolution of Antifungal Drug Resistance in Pathogenic Fungi.

作者信息

Boyce Kylie J

机构信息

School of Science, RMIT University, Melbourne, VIC 3085, Australia.

出版信息

Microorganisms. 2023 Nov 13;11(11):2757. doi: 10.3390/microorganisms11112757.

Abstract

The mortality rates of invasive fungal infections remain high because of the limited number of antifungal drugs available and antifungal drug resistance, which can rapidly evolve during treatment. Mutations in key resistance genes such as were postulated to be the predominant cause of antifungal drug resistance in the clinic. However, recent advances in whole genome sequencing have revealed that there are multiple mechanisms leading to the microevolution of resistance. In many fungal species, resistance can emerge through -independent mechanisms and through the accumulation of mutations in many genes to generate a polygenic resistance phenotype. In addition, genome sequencing has revealed that full or partial aneuploidy commonly occurs in clinical or microevolved in vitro isolates to confer antifungal resistance. This review will provide an overview of the mutations known to be selected during the adaptive microevolution of antifungal drug resistance and focus on how recent advances in genome sequencing technology have enhanced our understanding of this process.

摘要

由于可用抗真菌药物数量有限以及抗真菌药物耐药性问题,侵袭性真菌感染的死亡率仍然很高,而耐药性在治疗过程中可能迅速演变。关键耐药基因的突变,如 ,被认为是临床上抗真菌药物耐药性的主要原因。然而,全基因组测序的最新进展表明,存在多种导致耐药性微进化的机制。在许多真菌物种中,耐药性可以通过非依赖机制以及许多基因中突变的积累而出现,从而产生多基因耐药表型。此外,基因组测序表明,全基因组或部分非整倍体在临床或体外微进化分离株中普遍存在,以赋予抗真菌耐药性。本综述将概述在抗真菌药物耐药性适应性微进化过程中已知被选择的突变,并重点关注基因组测序技术的最新进展如何增强了我们对这一过程的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0d3/10673521/1d774aff3027/microorganisms-11-02757-g001.jpg

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