CRISPR-Cas Genome Editing Technique for Fish Disease Management: Current Study and Future Perspective

Author:

Ferdous Md. AkibORCID,Islam Sk InjamamulORCID,Habib NasimORCID,Almehmadi MazenORCID,Allahyani MamdouhORCID,Alsaiari Ahad AmerORCID,Shafie Alaa

Abstract

Scientists have discovered many ways to treat bacteria, viruses, and parasites in aquaculture; however, there is still an impossibility in finding a permanent solution for all types of diseases. In that case, the CRISPR-Cas genome-editing technique can be the potential solution to preventing diseases for aquaculture sustainability. CRISPR-Cas is cheaper, easier, and more precise than the other existing genome-editing technologies and can be used as a new disease treatment tool to solve the far-reaching challenges in aquaculture. This technique may now be employed in novel ways, such as modifying a single nucleotide base or tagging a location in the DNA with a fluorescent protein. This review paper provides an informative discussion on adopting CRISPR technology in aquaculture disease management. Starting with the basic knowledge of CRISPR technology and phages, this study highlights the development of RNA-guided immunity to combat the Chilodonella protozoan group and nervous necrosis virus (NNV) in marine finfish. Additionally, we highlight the immunological application of CRISPR-Cas against bacterial diseases in channel catfish and the white spot syndrome virus (WSSV) in shrimp. In addition, the review summarizes a synthesis of bioinformatics tools used for CRISPR-Cas sgRNA design, and acceptable solutions are discussed, considering the limitations.

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

Reference91 articles.

1. Fish Disease Causing Economic Impact in Global Aquaculture;Rodger,2016

2. Human intervention in freshwater ecosystems drives disease emergence

3. Gene editing (CRISPR-Cas) technology and fisheries sector

4. Parasitic Diseases in Aquaculture: Their Biology, Diagnosis, and Control;Paladini,2017

5. Parasitic versus nutritional regulation of natural fish populations

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