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白色念珠菌中R染色体三体赋予对三唑类药物的抗性。

Trisomy of chromosome R confers resistance to triazoles in Candida albicans.

作者信息

Li Xingxing, Yang Feng, Li Dedong, Zhou Mi, Wang Xiaojuan, Xu Qiurong, Zhang Yanxia, Yan Lan, Jiang Yuanying

机构信息

Center for New Drug Research, School of Pharmacy, Second Military Medical University, Shanghai, P. R. China.

Department of Molecular Microbiology and Biotechnology, Tel Aviv University, Ramat Aviv, Israel.

出版信息

Med Mycol. 2015 Apr;53(3):302-9. doi: 10.1093/mmy/myv002.

Abstract

Genome plasticity is a hallmark of Candida albicans, and it has been suggested that it generates numerical and structural genomic variations as a means of adaptation. In this study, we used array based comparative genomic hybridization technology and the quantitative real time PCR to investigate the mechanisms by which the following strains obtained by genetic manipulation, CaLY188, CaLY350, CaLY190 and CaLY191, were resistant to antifungal azoles. All four showed trisomy of chromosome R and resistance to azoles. Serial passage of CaLY188 in drug-free medium resulted in chromosome loss, causing chromosome R disomy and loss of azole resistance. Thus we proposed that trisomy of chromosome R contributes to azole resistance.

摘要

基因组可塑性是白色念珠菌的一个标志,有人提出它会产生数量和结构上的基因组变异作为一种适应方式。在本研究中,我们使用基于芯片的比较基因组杂交技术和定量实时PCR来研究通过基因操作获得的以下菌株CaLY188、CaLY350、CaLY190和CaLY191对抗真菌唑类耐药的机制。所有这四个菌株均显示R染色体三体性并对唑类耐药。CaLY188在无药培养基中连续传代导致染色体丢失,引起R染色体二体性和唑类耐药性丧失。因此我们提出R染色体三体性导致唑类耐药。

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