| Literature DB >> 24705266 |
Amir Sagi1, Rivka Manor2, Tomer Ventura3.
Abstract
Gene silencing through RNA interference (RNAi) is gaining momentum for crustaceans, both in basic research and for commercial development. RNAi has proven instrumental in a growing number of crustacean species, revealing the functionality of novel crustacean genes essential among others to development, growth, metabolism and reproduction. Extensive studies have also been done on silencing of viral transcripts in crustaceans, contributing to the understanding of the defense mechanisms of crustaceans and strategies employed by viruses to overcome these. The first practical use of gene silencing in aquaculture industry has been recently achieved, through manipulation of a crustacean insulin-like androgenic gland hormone. This review summarizes the advancements in the use of RNAi in crustaceans, and assesses the advantages of this method, as well as the current hurdles that hinder its large-scale practice.Entities:
Year: 2013 PMID: 24705266 PMCID: PMC3927571 DOI: 10.3390/genes4040620
Source DB: PubMed Journal: Genes (Basel) ISSN: 2073-4425 Impact factor: 4.096
Study of novel crustacean genes using RNA interference (RNAi).
| Field of Research | RNAi administration method | Model Organinsm | Order | Year | Authors | Title |
|---|---|---|---|---|---|---|
| Biominerology | dsRNA injection |
|
| 2008 | Shechter | A gastrolith protein serving a dual role in the formation of an amorphous mineral containing extracellular matrix |
| Biominerology | dsRNA injection |
|
| 2010 | Glazer | A protein involved in the assembly of an extracellular calcium storage matrix |
| Development/differentiation | dsRNA injection |
|
| 2006 | Copf | Knockdown of spalt function by RNAi causes de-repression of Hox genes and homeotic transformations in the crustacean |
| Development/differentiation | Chemicaly modified siRNA oligo injection |
|
| 2009 | Liubicich | Knockdown of |
| Development/differentiation | dsRNA injection |
|
| 2011 | Kato | Development of an RNA interference method in the cladoceran crustacean |
| Development/differentiation | dsRNA injection |
|
| 2008 | Hui | Characterization of the putative farnesoic acid |
| Metabolism | dsRNA injection |
|
| 2010 | Soñanez-Organis | Silencing of the hypoxia inducible factor 1 -HIF-1- obliterates the effects of hypoxia on glucose and lactate concentrations in a tissue-specific manner in the shrimp |
| Growth | dsRNA injection |
|
| 2011 | De Santis | Growing backwards: an inverted role for the shrimp ortholog of vertebrate myostatin and GDF11 |
| Metabolism | dsRNA injection |
|
| 2011 | White | Characterization of sarcoplasmic calcium binding protein (SCP) variants from freshwater crayfish Procambarus clarkii |
| Metabolism | dsRNA injection |
|
| 2006 | Lugo | Molecular cloning and characterization of the crustacean hyperglycemic hormone cDNA from |
| Reproduction | dsRNA injection |
|
| 2007 | Tiu and Chan | The use of recombinant protein and RNA interference approaches to study the reproductive functions of a gonad-stimulating hormone from the shrimp |
| Molt | dsRNA injection |
|
| 2012 | Pamuru | Stimulation of molt by RNA interference of the molt-inhibiting hormone in the crayfish |
| Osmo-regulation | dsRNA injection |
|
| 2007 | Tiu | The LvCHH-ITP gene of the shrimp ( |
| Reproduction | dsRNA in tissue culture |
|
| 2008 | Treerattrakool | Molecular characterization of gonad-inhibiting hormone of |
| Reproduction | dsRNA injection |
|
| 2011 | Treerattrakool | Induction of Ovarian Maturation and Spawning in |
| Reproduction | Feeding with dsRNA enriched Artemia |
| 2013 | Treerattrakool | Silencing of gonad-inhibiting hormone gene expression in | |
| Reproduction | dsRNA injection |
| 2011 | Sathapondecha | Potential roles of transglutaminase and thioredoxin in the release of gonad-stimulating factor in | |
| Growth | dsRNA injection |
|
| 2013 | Sharabi | Dual function of a putative epidermal growth factor receptor in the decapod crustacean |
| Reproduction | dsRNA injection |
|
| 2008 | Tiu | From hepatopancreas to ovary: molecular characterization of a shrimp vitellogenin receptor involved in the processing of vitellogenin |
| Molt | dsRNA injection |
|
| 2009 | Priya | Molecular characterization and effect of RNA interference of retinoid X receptor (RXR) on E75 and chitinase gene expression in Chinese shrimp |
| Molt | dsRNA injection |
|
| 2010 | Priya | Molecular characterization of an ecdysone inducible gene E75 of Chinese shrimp |
| Organ regeneration | dsRNA injection |
|
| 2013 | Das and Durica | Ecdysteroid receptor signaling disruption obstructs blastemal cell proliferation during limb regeneration in the fiddler crab, |
| Reproduction | dsRNA injection |
| 2011 | Nagaraju | Molecular cloning and sequence of retinoid X receptor in the green crab | |
| Sexual differentiation | dsRNA injection |
|
| 2011 | Kato | Environmental sex determination in the branchiopod crustacean |
| Sexual differentiation | dsRNA injection |
|
| 2012 | Rosen | A sexual shift induced by silencing of a single insulin-like gene in crayfish: ovarian upregulation and testicular degeneration |
| Sexual differentiation | dsRNA injection |
|
| 2009 | Ventura | Temporal silencing of an androgenic gland-specific insulin-like gene affecting phenotypic gender differences and spermatogenesis |
| Sexual differentiation | dsRNA injection |
|
| 2012 | Ventura | Timing sexual differentiation full functional sex seversal achieved through silencing of a single insulin like gene in the prawn |
| RNAi | dsRNA injection |
|
| 2008 | Dechklar | Characterization of Argonaute cDNA from |
| RNAi | dsRNA injection |
|
| 2012 | Wang | TRBP and eIF6 Homologue in |
Summary of RNAi administration methods in crustaceans.
| Delivery method | Model Organinsm | Order | Year | Authors | Title |
|---|---|---|---|---|---|
| Injection, electroporation and transfection of DNA with promoter and antisense |
|
| 2005 | Sun | Evaluation of methods for DNA delivery into shrimp zygotes of |
| Transfection of DNA with promoter and antisense |
|
| 2005 | Lu and Sun | Viral resistance in shrimp that express an antisense Taura syndrome virus coat protein gene |
| Chitosan nanoparticles |
|
| 2008 | Anas | Chitosan as a wall material for a microencapsulated delivery system for |
| Oral delivery of dsRNA expressing bacteria |
|
| 2008 | Sarathi | Oral Administration of Bacterially Expressed VP28dsRNA to Protect |
| Oral delivery of dsRNA expressing bacteria enriched |
|
| 2013 | Treerattrakool | Silencing of gonad-inhibiting hormone gene expression in |
Study of the crustacean innate immune system using RNAi.
| Field of Research | RNAi administration method | Model Organinsm | Order | Year | Authors | Title | |
|---|---|---|---|---|---|---|---|
| Anti bacterial | dsRNA injection |
|
| 2007 | Liu | Phenoloxidase is an important component of the defense against | |
| Anti bacterial | siRNA injection |
|
| 2008 | Zong | Regulation of phagocytosis against bacterium by RabGTPase in shrimp | |
| Anti bacterial and anti viral | dsRNA injection |
|
| 2008 | De la Vega | Anti-lipopolysaccharide factor in | |
| Anti bacterial, antiviral and coagulation | dsRNA injection |
|
| 2008 | Maningas | Essential function of transglutaminase and clotting protein in shrimp immunity | |
| Anti bacterial | dsRNA injection |
|
| 2009 | Fagutao | Increased bacterial load in shrimp hemolymph in the absence of prophenoloxidase | |
| Anti bacterial | dsRNA injection |
|
| 2009 | Amparyup | Two prophenoloxidases are important for the survival of | |
| Anti bacterial and anti fungal | dsRNA injection |
|
| 2009 | Shockey | The role of crustins in | |
| Anti viral | siRNA injection |
|
| 2005 | Westenberg | siRNA injection induces sequence-independent protection in | |
| Anti viral | Injection, electroporation and transfection of DNA with promoter and antisense |
|
| 2005 | Sun | Evaluation of methods for DNA delivery into shrimp zygotes of | |
| Anti viral | Transfection of DNA with promoter and antisense |
|
| 2005 | Lu and Sun | Viral resistance in shrimp that express an antisense Taura syndrome virus coat protein gene | |
| Anti viral | dsRNA injection |
|
| 2006 | Assavalapsakul | Identification and characterization of a | |
| Anti viral | siRNA injection |
|
| 2007 | Xu | Silencing shrimp white spot syndrome virus (WSSV) genes by siRNA | |
| Anti viral | dsRNA injection |
|
| 2007 | Li | β-integrin mediates WSSV infection | |
| Anti viral | siRNA injection |
|
| 2007 | Wu | Antiviral phagocytosis is regulated by a novel Rab-dependent complex in shrimp | |
| Anti viral | siRNA injection |
|
| 2008 | Xu | Novel function of QM protein of shrimp ( | |
| Anti viral | siRNA injection |
|
| 2008 | Wang | Requirement for shrimp caspase in apoptosis against virus infection | |
| Anti viral | dsRNA injection |
|
| 2008 | Ongvarrasopone | Suppression of PmRab7 by dsRNA inhibits WSSV or YHV infection in shrimp | |
| Anti viral | dsRNA injection |
|
| 2008 | Su | A key gene of the RNA interference pathway in the black tiger shrimp, | |
| Anti viral | dsRNA injection |
|
| 2008 | Rijiravanich | Knocking down caspase-3 by RNAi reduces mortality in Pacific white shrimp | |
| Anti viral | Oral delivery of dsRNA expressing bacteria |
|
| 2008 | Sarathi | Oral administration of bacterially expressed VP28 dsRNA to protect | |
| Anti viral | siRNA and dsRNA injection |
|
| 2010 | Labreuche | Non-specific activation of antiviral immunity and induction of RNA interference may engage the same pathway in the Pacific white leg shrimp | |
| Anti viral | dsRNA injection |
|
| 2011 | Woramongkolchai | The possible role of penaeidin5 from the black tiger shrimp, | |
| Anti viral | Review on the study of innate immune system in crustaceans using RNAi | 2011 | Hirono | Uncovering the mechanisms of shrimp innate immune response by RNA interference | |||
| Anti viral | Review on RNAi in crustaceans with emphasis of antiviral capabilities | 2012 | La Fauce and Owens | RNA interference with special reference to combating viruses of crustacea | |||
| Anti viral | dsRNA injection | 2013 | Lin | Characterization of white shrimp | |||