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一种用于生成无药物选择标记重组疟原虫的快速且可靠的筛选程序。

A rapid and robust selection procedure for generating drug-selectable marker-free recombinant malaria parasites.

作者信息

Manzoni Giulia, Briquet Sylvie, Risco-Castillo Veronica, Gaultier Charlotte, Topçu Selma, Ivănescu Maria Larisa, Franetich Jean-François, Hoareau-Coudert Bénédicte, Mazier Dominique, Silvie Olivier

机构信息

1] Sorbonne Universités, UPMC Univ Paris 06, CR7, Centre d'Immunologie et des Maladies Infectieuses (CIMI-Paris), 75013, Paris, France [2] INSERM, U1135, CIMI-Paris, 75013, Paris, France [3] CNRS, ERL 8255, CIMI-Paris, 75013, Paris, France [4].

1] Sorbonne Universités, UPMC Univ Paris 06, CR7, Centre d'Immunologie et des Maladies Infectieuses (CIMI-Paris), 75013, Paris, France [2] INSERM, U1135, CIMI-Paris, 75013, Paris, France [3] CNRS, ERL 8255, CIMI-Paris, 75013, Paris, France.

出版信息

Sci Rep. 2014 Apr 23;4:4760. doi: 10.1038/srep04760.

Abstract

Experimental genetics have been widely used to explore the biology of the malaria parasites. The rodent parasites Plasmodium berghei and less frequently P. yoelii are commonly utilised, as their complete life cycle can be reproduced in the laboratory and because they are genetically tractable via homologous recombination. However, due to the limited number of drug-selectable markers, multiple modifications of the parasite genome are difficult to achieve and require large numbers of mice. Here we describe a novel strategy that combines positive-negative drug selection and flow cytometry-assisted sorting of fluorescent parasites for the rapid generation of drug-selectable marker-free P. berghei and P. yoelii mutant parasites expressing a GFP or a GFP-luciferase cassette, using minimal numbers of mice. We further illustrate how this new strategy facilitates phenotypic analysis of genetically modified parasites by fluorescence and bioluminescence imaging of P. berghei mutants arrested during liver stage development.

摘要

实验遗传学已被广泛用于探索疟原虫的生物学特性。啮齿动物疟原虫伯氏疟原虫以及较少使用的约氏疟原虫通常被采用,因为它们的完整生命周期可以在实验室中重现,并且它们可以通过同源重组进行遗传操作。然而,由于药物选择标记数量有限,很难实现寄生虫基因组的多次修饰,并且需要大量的小鼠。在此,我们描述了一种新策略,该策略结合了正负药物选择和荧光寄生虫的流式细胞术辅助分选,以使用最少数量的小鼠快速生成无药物选择标记的表达绿色荧光蛋白(GFP)或GFP-荧光素酶盒的伯氏疟原虫和约氏疟原虫突变寄生虫。我们进一步说明了这种新策略如何通过对在肝期发育中停滞的伯氏疟原虫突变体进行荧光和生物发光成像来促进对转基因寄生虫的表型分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad29/3996467/53b051993afa/srep04760-f1.jpg

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