Genome plasticity and its role in leishmania adaptation and drug resistance

R. Moody
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Abstract

This literature review aims to summarize the current knowledge regarding the genome plasticity observed within the genome of the Leishmania parasite, and to discuss how genome plasticity contributes to the adaptation of the parasite and to development of a drug resistant state. The search terms “Leishmania” and “genome plasticity”, were used to search the PubMed database for relevant papers, published between the years 2000 and 2020. Aneuploidy within the Leishmania genome allows for drug resistance and adaptation to the environment. In addition copy number variation promotes the up regulation of genes conferring drug resistant capabilities to the parasite. Drug-resistant Leishmania mutants display differential patterns of chromosomal somy when compared to wild-type strains. Highlighting a role for mosaic aneuploidy in the development of drug resistance. Leishmania parasites in the amastigote life cycle stage display differential gene copy numbers compared to parasites in the promastigote life cycle stage. Suggesting that copy number variation contributes to parasite adaptation to the environment.
基因组可塑性及其在利什曼原虫适应和耐药性中的作用
这篇文献综述旨在总结在利什曼原虫寄生虫基因组中观察到的基因组可塑性的当前知识,并讨论基因组可塑性如何有助于寄生虫的适应和耐药性状态的发展。搜索词“利什曼原虫”和“基因组可塑性”用于在PubMed数据库中搜索2000年至2020年间发表的相关论文。利什曼原虫基因组中的非整倍体允许耐药性和对环境的适应。此外,拷贝数的变化促进了赋予寄生虫耐药性的基因的上调。与野生型菌株相比,耐药利什曼原虫突变体表现出不同的染色体核型模式。强调镶嵌非整倍体在耐药性发展中的作用。无鞭毛虫生命周期阶段的利什曼原虫与前鞭毛虫生活周期阶段的寄生虫相比,表现出不同的基因拷贝数。提示拷贝数的变化有助于寄生虫适应环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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