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Salt Sensitive Tet-Off-Like Systems to Knockdown Primordial Germ Cell Genes for Repressible Transgenic Sterilization in Channel Catfish, Ictalurus punctatus

Repressible knockdown approaches were investigated for transgenic sterilization in channel catfish, Ictalurus punctatus. Two primordial germ cell (PGC) marker genes, nanos and dead end, were targeted for knockdown, and an off-target gene, vasa, was monitored. Two potentially salt sensitive repressib...

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Autores principales: Li, Hanbo, Su, Baofeng, Qin, Guyu, Ye, Zhi, Alsaqufi, Ahmed, Perera, Dayan A., Shang, Mei, Odin, Ramjie, Vo, Khoi, Drescher, David, Robinson, Dalton, Zhang, Dan, Abass, Nermeen, Dunham, Rex A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5484105/
https://www.ncbi.nlm.nih.gov/pubmed/28561774
http://dx.doi.org/10.3390/md15060155
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author Li, Hanbo
Su, Baofeng
Qin, Guyu
Ye, Zhi
Alsaqufi, Ahmed
Perera, Dayan A.
Shang, Mei
Odin, Ramjie
Vo, Khoi
Drescher, David
Robinson, Dalton
Zhang, Dan
Abass, Nermeen
Dunham, Rex A.
author_facet Li, Hanbo
Su, Baofeng
Qin, Guyu
Ye, Zhi
Alsaqufi, Ahmed
Perera, Dayan A.
Shang, Mei
Odin, Ramjie
Vo, Khoi
Drescher, David
Robinson, Dalton
Zhang, Dan
Abass, Nermeen
Dunham, Rex A.
author_sort Li, Hanbo
collection PubMed
description Repressible knockdown approaches were investigated for transgenic sterilization in channel catfish, Ictalurus punctatus. Two primordial germ cell (PGC) marker genes, nanos and dead end, were targeted for knockdown, and an off-target gene, vasa, was monitored. Two potentially salt sensitive repressible promoters, zebrafish adenylosuccinate synthase 2 (ADSS) and zebrafish racemase (Rm), were each coupled with four knockdown strategies: ds-sh RNA targeting the 5′ end (N1) or 3′ end (N2) of channel catfish nanos, full-length cDNA sequence of channel catfish nanos for overexpression (cDNA) and ds-sh RNA targeting channel catfish dead end (DND). Each construct had an untreated group and treated group with sodium chloride as the repressor compound. Spawning rates of full-sibling P(1) fish exposed or not exposed to the constructs as treated and untreated embryos were 93% and 59%, respectively, indicating potential sterilization of fish and repression of the constructs. Although the mRNA expression data of PGC marker genes were inconsistent in P(1) fish, most F(1) individuals were able to downregulate the target genes in untreated groups and repress the knockdown process in treated groups. The results indicate that repressible transgenic sterilization is feasible for reproductive control of fish, but more data from F(2) or F(3) are needed for evaluation.
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spelling pubmed-54841052017-06-29 Salt Sensitive Tet-Off-Like Systems to Knockdown Primordial Germ Cell Genes for Repressible Transgenic Sterilization in Channel Catfish, Ictalurus punctatus Li, Hanbo Su, Baofeng Qin, Guyu Ye, Zhi Alsaqufi, Ahmed Perera, Dayan A. Shang, Mei Odin, Ramjie Vo, Khoi Drescher, David Robinson, Dalton Zhang, Dan Abass, Nermeen Dunham, Rex A. Mar Drugs Article Repressible knockdown approaches were investigated for transgenic sterilization in channel catfish, Ictalurus punctatus. Two primordial germ cell (PGC) marker genes, nanos and dead end, were targeted for knockdown, and an off-target gene, vasa, was monitored. Two potentially salt sensitive repressible promoters, zebrafish adenylosuccinate synthase 2 (ADSS) and zebrafish racemase (Rm), were each coupled with four knockdown strategies: ds-sh RNA targeting the 5′ end (N1) or 3′ end (N2) of channel catfish nanos, full-length cDNA sequence of channel catfish nanos for overexpression (cDNA) and ds-sh RNA targeting channel catfish dead end (DND). Each construct had an untreated group and treated group with sodium chloride as the repressor compound. Spawning rates of full-sibling P(1) fish exposed or not exposed to the constructs as treated and untreated embryos were 93% and 59%, respectively, indicating potential sterilization of fish and repression of the constructs. Although the mRNA expression data of PGC marker genes were inconsistent in P(1) fish, most F(1) individuals were able to downregulate the target genes in untreated groups and repress the knockdown process in treated groups. The results indicate that repressible transgenic sterilization is feasible for reproductive control of fish, but more data from F(2) or F(3) are needed for evaluation. MDPI 2017-05-31 /pmc/articles/PMC5484105/ /pubmed/28561774 http://dx.doi.org/10.3390/md15060155 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Hanbo
Su, Baofeng
Qin, Guyu
Ye, Zhi
Alsaqufi, Ahmed
Perera, Dayan A.
Shang, Mei
Odin, Ramjie
Vo, Khoi
Drescher, David
Robinson, Dalton
Zhang, Dan
Abass, Nermeen
Dunham, Rex A.
Salt Sensitive Tet-Off-Like Systems to Knockdown Primordial Germ Cell Genes for Repressible Transgenic Sterilization in Channel Catfish, Ictalurus punctatus
title Salt Sensitive Tet-Off-Like Systems to Knockdown Primordial Germ Cell Genes for Repressible Transgenic Sterilization in Channel Catfish, Ictalurus punctatus
title_full Salt Sensitive Tet-Off-Like Systems to Knockdown Primordial Germ Cell Genes for Repressible Transgenic Sterilization in Channel Catfish, Ictalurus punctatus
title_fullStr Salt Sensitive Tet-Off-Like Systems to Knockdown Primordial Germ Cell Genes for Repressible Transgenic Sterilization in Channel Catfish, Ictalurus punctatus
title_full_unstemmed Salt Sensitive Tet-Off-Like Systems to Knockdown Primordial Germ Cell Genes for Repressible Transgenic Sterilization in Channel Catfish, Ictalurus punctatus
title_short Salt Sensitive Tet-Off-Like Systems to Knockdown Primordial Germ Cell Genes for Repressible Transgenic Sterilization in Channel Catfish, Ictalurus punctatus
title_sort salt sensitive tet-off-like systems to knockdown primordial germ cell genes for repressible transgenic sterilization in channel catfish, ictalurus punctatus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5484105/
https://www.ncbi.nlm.nih.gov/pubmed/28561774
http://dx.doi.org/10.3390/md15060155
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