Lentiviral Transduction-based CRISPR/Cas9 Editing of Schistosoma mansoni Acetylcholinesterase

Author:

Du Xiaofeng12ORCID,McManus Donald P.12,French Juliet D.3,Sivakumaran Haran3,Johnston Rebecca L.3,Kondrashova Olga3,Fogarty Conor E.4,Jones Malcolm K.5,You Hong15

Affiliation:

1. Infection and Inflammation Program, QIMR Berghofer Medical Research Institute, Brisbane, Queensland, Australia

2. Faculty of Medicine, The University of Queensland, Brisbane, Queensland, Australia

3. Cancer Research Program, QIMR Berghofer Medical Research Institute, Brisbane, Queensland, Australia

4. Centre for Bioinnovation, University of the Sunshine Coast, Sunshine Coast, Queensland, Australia

5. School of Veterinary Science, The University of Queensland, Gatton, Queensland, Australia

Abstract

Background: Recent studies on CRISPR/Cas9-mediated gene editing in Schistosoma mansoni have shed new light on the study and control of this parasitic helminth. However, the gene editing efficiency in this parasite is modest. Methods: To improve the efficiency of CRISPR/Cas9 genome editing in schistosomes, we used lentivirus, which has been effectively used for gene editing in mammalian cells, to deliver plasmid DNA encoding Cas9 nuclease, a sgRNA targeting acetylcholinesterase (SmAChE) and a mCherry fluorescence marker into schistosomes. Results: MCherry fluorescence was observed in transduced eggs, schistosomula, and adult worms, indicating that the CRISPR components had been delivered into these parasite stages by lentivirus. In addition, clearly changed phenotypes were observed in SmAChE-edited parasites, including decreased SmAChE activity, reduced hatching ability of edited eggs, and altered behavior of miracidia hatched from edited eggs. Next-generation sequencing analysis demonstrated that the lentiviral transductionbased CRISPR/Cas9 gene modifications in SmAChE-edited schistosomes were homology-directed repair predominant but with much lower efficiency than that obtained using electroporation (data previously published by our laboratory) for the delivery of CRISPR components. Conclusion: Taken together, electroporation is more efficient than lentiviral transduction in the delivery of CRISPR/Cas9 into schistosomes for programmed genome editing. The exploration of tactics for enhancing CRISPR/Cas9 gene editing provides the basis for the future improvement of programmed genome editing in S. mansoni.

Funder

National Health and Medical Research Council

Publisher

Bentham Science Publishers Ltd.

Subject

Genetics (clinical),Genetics

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