Exploring RNAi as a therapeutic strategy for controlling disease in aquaculture

Aquatic animal diseases are one of the most significant constraints to the development and management of aquaculture worldwide. As a result, measures to combat diseases of fish and shellfish have assumed a high priority in many aquaculture-producing countries. RNA interference (RNAi), a natural mech...

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Veröffentlicht in:Fish & shellfish immunology 2013-03, Vol.34 (3), p.729-743
Hauptverfasser: Lima, Paula C., Harris, James O., Cook, Mathew
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Sprache:eng
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Zusammenfassung:Aquatic animal diseases are one of the most significant constraints to the development and management of aquaculture worldwide. As a result, measures to combat diseases of fish and shellfish have assumed a high priority in many aquaculture-producing countries. RNA interference (RNAi), a natural mechanism for post-transcriptional silencing of homologous genes by double-stranded RNA (dsRNA), has emerged as a powerful tool not only to investigate the function of specific genes, but also to suppress infection or replication of many pathogens that cause severe economic losses in aquaculture. However, despite the enormous potential as a novel therapeutical approach, many obstacles must still be overcome before RNAi therapy finds practical application in aquaculture, largely due to the potential for off-target effects and the difficulties in providing safe and effective delivery of RNAi molecules in vivo. In the present review, we discuss the current knowledge of RNAi as an experimental tool, as well as the concerns and challenges ahead for the application of such technology to combat infectious disease of farmed aquatic animals. [Display omitted] ► RNAi as an anti-pathogenic tool in fish and shellfish aquaculture was reviewed. ► The early stages of RNAi application in molluscan aquaculture were also highlighted. ► General and specific limitations of RNAi therapy in aquaculture were raised.
ISSN:1050-4648
1095-9947
DOI:10.1016/j.fsi.2012.11.037