Disease reduction in aquaculture with genetic and genomic technology: current and future approaches

Author:

Elaswad Ahmed12ORCID,Dunham Rex1

Affiliation:

1. School of Fisheries; Aquaculture and Aquatic Sciences; Auburn University; AL USA

2. Department of Animal Wealth Development; Faculty of Veterinary Medicine; Suez Canal University; Ismailia Egypt

Publisher

Wiley

Subject

Management, Monitoring, Policy and Law,Ecology,Aquatic Science

Reference242 articles.

1. Aquaculture genomics, genetics and breeding in the United States: current status, challenges, and priorities for future research;Abdelrahman;BMC Genomics,2017

2. Drosophila antibacterial protein, cecropin A, differentially affects non-bacterial organisms such as Leishmania in a manner different from other amphipathic peptides;Akuffo;International Journal of Molecular Medicine,1998

3. Clustered regularly interspaced short palindromic repeats (CRISPRs): the hallmark of an ingenious antiviral defense mechanism in prokaryotes;Al-Attar;Biological Chemistry,2011

4. Transgenic zebrafish for detecting mutations caused by compounds in aquatic environments;Amanuma;Nature Biotechnology,2000

5. Changes in drug resistance of Vibrio anguillarum in cultured ayu, Plecoglossus altivelis Temminck and Schlegel, in Japan;Aoki;Journal of Fish Diseases,1981

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