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New and emerging uses of CRISPR/Cas9 to genetically manipulate apicomplexan parasites

机译:CRISPR / Cas9在遗传修饰apicomplexan寄生虫方面的新用途和新兴用途

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摘要

Although the application of CRISPR/Cas9 genome engineering approaches was first reported in apicomplexan parasites only 3 years ago, this technology has rapidly become an essential component of research on apicomplexan parasites. This review briefly describes the history of CRISPR/Cas9 and the principles behind its use along with documenting its implementation in apicomplexan parasites, especially Plasmodium spp. and Toxoplasma gondii. We also discuss the recent use of CRISPR/Cas9 for whole genome screening of gene knockout mutants in T. gondii and highlight its use for seminal genetic manipulations of Cryptosporidium spp. Finally, we consider new variations of CRISPR/Cas9 that have yet to be implemented in apicomplexans. Whereas CRISPR/Cas9 has already accelerated rapid interrogation of gene function in apicomplexans, the full potential of this technology is yet to be realized as new variations and innovations are integrated into the field.
机译:尽管CRISPR / Cas9基因组工程方法的应用仅在3年前才在apicomplexan寄生虫中报道,但该技术已迅速成为apiapiplexan寄生虫研究的重要组成部分。这篇综述简要描述了CRISPR / Cas9的历史及其背后的原理,并记录了其在apicomplexan寄生虫(尤其是疟原虫)中的实施。和弓形虫。我们还讨论了CRISPR / Cas9在刚地弓形虫基因敲除突变体的全基因组筛选中的最新用途,并着重介绍了其在隐孢子虫属物种的精子遗传操作中的用途。最后,我们考虑尚未在apicomplexans中实现的CRISPR / Cas9新变异。尽管CRISPR / Cas9已经加快了蜂复合体基因功能的快速研究,但随着新的变化和创新被整合到该领域,该技术的全部潜力尚未实现。

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