• Title/Summary/Keyword: transgenic chickens

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A Study of the Generation of Transgenic Chickens That Express Human SOD-3 Protein (사람의 SOD-3 단백질을 발현하는 형질전환 닭 생산 연구)

  • Byun, S.J.;Park, C.;Kim, J.A.;Woo, J.S.;Lee, H.C.;Kim, T.Y.;Kim, S.H.;Seong, H.H.;Park, J.K.;Jeon, I.S.
    • Korean Journal of Poultry Science
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    • v.35 no.3
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    • pp.241-245
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    • 2008
  • Lentiviral vector system is efficient vehicles for the delivery of exogenous genes, and it is generally used in the generation of transgenic chickens. In this study, we used recombinant lentiviral vectors to generate transgenic chicks that express the human superoxide dismutase-3 gene driven by the chicken ovalbumin promoter. It is well known that superoxide dismutases(SODs) are believed to play a crucial role in protecting cells against oxygen toxicity. There are three forms of SOD proteins: cytosolic Cu-Zn SOD, mitochondrial Mn SOD, and extracellular SOD(SOD-3). The recombinant lentivirus containing the human SOD-3 gene was injected into the subgerminal cavity of freshly laid eggs. Subsequently, the embryos were incubated to hatch using phases II and III of the surrogate shell ex vivo culture system. From 341 injected embryos, the 78 chicks hatched after 21 days incubation. The hatched chicks were screened for the human SOD-3 gene by using PCR. Two of 47 male chickens that survived to sexual maturity contained the human SOD-3 gene in their semen. These results showed that our transgenic chicken generation system was completely established.

Generation of Transgenic Chickens that Produce Bioactive Human Thrombopoietin (재조합 hTPO를 생산하는 형질전환 닭의 개발)

  • Kwon, Mo-Sun;Koo, Bon-Chul;Roh, Ji-Yeol;Lee, Hyun-A;Kim, Te-Oan
    • Reproductive and Developmental Biology
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    • v.32 no.3
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    • pp.159-166
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    • 2008
  • We report here the generation of transgenic chickens that produce human Thrombopoietin (hTPO) using replication-defective Moloney murine leukemia virus (MoMLV)-based vectors packaged with vesicular stomatitis virus G glycoprotein (VSV-G). For the retrovirus vectors, we used hCMV (human Cytomegalovirus) internal promoter to drive the hTPO gene. After confirming the expression of the hTPO gene in various target cells, the concentrated solution of recombinant retrovirus was injected beneath the blastoderm of non-incubated chicken embryos (stage X). The biological activity of the recombinant hTPO in target cell was significantly higher than its commercially available counterpart. Out of 132 injected eggs, 11 chicks hatched after 21 days of incubation and 4 hatched chicks were found to express vector-encoded hTPO gene. However, 3 out of the 4 transgenics died within one month of hatching. The major significance of this study is that it is one of the very few successful reports on the production of transgenic chickens as bioreactors aiming mass production of commercially valuable and biological active human cytokine proteins.

Expression of Lac Z Gene in Young Chick Gonad by the Transtected Primordial Germ Cell Injection (Lac Z 유전자가 전이된 원시생식세포 주입에 의한 병아리 생식기내 유전자 발현)

  • 한재용;서동삼;홍영호;정동기;최강덕;신영수
    • Korean Journal of Poultry Science
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    • v.23 no.2
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    • pp.61-69
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    • 1996
  • Primordial germ cells (PGCs) were manipulated as part of the system to produce transgenic chickens. PGCs were isolated from the germinal crescent of developmental stage 6 to 8 donor emhryos of the Korean Native Ogol Chickens (KNOC). These PGCs were transfected with plasmid DNA containing the lac Z gene by liposome mediated transfection methods. The lac Z gene was transfected and expressed in the PGCs. These transfected PGCs were injected into the germinal crescent of White Leghorn embryos (stage 6 to 8). The injected transfected PGCs migrated via the circulatory system into the future gonad and expression observed in the gonads of 3 day old chick. Of the 47 embryos and 3 day old chickens, one positive PGCs gonad from sacrificed young chickens was detected by appearance of blue cells. Plasmid DNA with the foreign gene was incorporated into the population of germ cells in the gonad. These results demonstrate that PGCs can he transfected and then transferred for colonization into the gonad, and show the potential to ultimately manipulate the genetic material of the chicken gernline.

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High Transmission Rate of Germline Chimerism Using Cultured Primordial Germ Cells in Chickens.

  • Song, Gwon-Hwa;Park, Tae-Sub;Kim, Duk-Kyung;Kim, Jin-Nam;Lee, Young-Mok;Kim, Ki-Dong;Han, Jae-Yong
    • Proceedings of the Korea Society of Poultry Science Conference
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    • 2000.11a
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    • pp.88-90
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    • 2000
  • Although primordial germ cells(PGCs) have been used in the production of germline chimera, efficiency has not been satisfactory. The Present study was conducted to improve efficiency of germline chimera production using the cultured gonadal PGCs(gPGCs). Germline chimeric chickens were produced by transfer of cultured gonadal primordial germ cells from Korean Ogol Chicken (KOC) to White Leghorn (5.5-day-old) and cultured in vitro for 10 days. Approximately 200 gPGCs (2-day-old) recipient embryos from which blood had been withdrawn via the dorsal aorta prior to the injection. Recipient embryos were incubated until hatching. Germline chimerism of the chickens reaching maturity was examined by mating them with Korean Ogol Chicken. Donor-derived offspring were identified as germline chimeric chickens based on their feather color. The frequency of germline transmission of donor PGCs ranged 1.9∼60.7%. There was no difference between both sexes. Therefore, it can be concluded that efficiency of germline chimerism can be improved via using cultured gPGCs.

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Gene-editing techniques and their applications in livestock and beyond

  • Tae Sub Park
    • Animal Bioscience
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    • v.36 no.2_spc
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    • pp.333-338
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    • 2023
  • Genetic modification enables modification of target genes or genome structure in livestock and experimental animals. These technologies have not only advanced bioscience but also improved agricultural productivity. To introduce a foreign transgene, the piggyBac transposon element/transposase system could be used for production of transgenic animals and specific target protein-expressing animal cells. In addition, the clustered regularly interspaced short palindromic repeat-CRISPR associated protein 9 (CRISPR-Cas9) system have been utilized to generate chickens with knockout of G0/G1 switch gene 2 (G0S2) and myostatin, which are related to lipid deposition and muscle growth, respectively. These experimental chickens could be the invaluable genetic resources to investigate the regulatory pathways and mechanisms of improvement of economic traits such as fat quantity and growth. The gene-edited animals could also be applicable to the livestock industry.

Cock Spermatozoa Serve as the Gene Vector for Generation of ransgenic Chicken (Gallus gallus)

  • Yang, C.C.;Chang, H.S.;Lin, C.J.;Hsu, C.C.;Cheung, J.I.;Hwu, L.;Cheng, W.T.K.
    • Asian-Australasian Journal of Animal Sciences
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    • v.17 no.7
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    • pp.885-891
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    • 2004
  • To evaluate the feasibility of using sperm-mediated gene transfer (SMGT) for carrying foreign gene into chicken oocyte, a reporter gene, CX-EGFP, was used in this study. The reporter gene was first mixed with liposome or liposome-like compound and the mixtures were further combined with ejaculated cock spermatozoa. The spermatozoa treated with liposome and CX-EGFP mixture was subsequently coincubated with DNaseI to remove the extra DNA which insured the authenticity of positive signals. The treated sperms were then subjected to transgene (reporter gene) existence analysis and artificial insemination of laying hens. Obtained results indicated that the spermatozoa were able to take-in the foreign DNA; which was confirmed by polymerase chain reaction and Southern blot analysis. In the following experiment, fresh ejaculated sperms were mixed with CX-EGFP-liposome or CX-EGFP-liposome-like complex then used for artificial insemination of each of six laying hens. Eggs laid between day-3 and day-7 post insemination were collected. Newly hatched chicks, two out of 53 from CX-EGFP/liposome treated group and two out of 21 from CXEGFP/liposome-like treated group, were proven to be transgenic. This study suggests that SMGT is a powerful method for generating transgenic chickens.

Production of Transgenic Chicken by Using Embryo Culture Techniques (수정란 배양 기술을 이용한 형질전환 닭 생산)

  • I. S. Jeon;D. H. Yoon;E. W. Park;W. G. Nho;C. H. Choi;J. H. Lee;H. H. Lee;I. C. Cheong;J. Y. Han
    • Korean Journal of Poultry Science
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    • v.28 no.2
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    • pp.125-133
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    • 2001
  • The goal of this paper was to examine the qualify zygote-acquiring method for in-vitro culture and the in-vitro culture method of the acquired zygote from a technological perspective. We have reported the results on the introduction of foreign DNAs using the described culturing method. After performing in-vitro and surrogate eggshell culture on a zygote acquired from the abdomen of a hen, 25.8% hatchability was acquired. After microinjecting foreign DNAs into the acquired zygote and performing in-vitro and surrogate eggshell culture using the same method, 13.1∼11.7% hatchability was acquired. Having compared the developments of the control subjects and the experimental subjects, the viability of the experimental subjects on the 4∼5th day of culturing was much lower compared to that of the control subjects. This is a result that shows that the microinjection process of foreign DNAs might have a negative effect on the existence of the embryo; therefore, various technical attempts should be made to minimize such negative effects. Having microinjected foreign DNAs into the zygote of a hen to produce transgenic chickens, 3 transgenic founders were Produced and 70 G1 progeny were produced as a result of the progeny test that had been performed to the present.

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A Study of the Retrovirus-Mediated Transgenic Chicken Production on Chicken Embryos (닭 수정란에서 Retrovirus를 이용한 형질전환 닭 생산 연구)

  • Byun S. J.;Park C.;Kim S. W.;Park J. K.;Chang W. K.;Yang B. S.;Kim T. Y.;Sohn S. H.;Kim S. H.;Jeon I. S.
    • Korean Journal of Poultry Science
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    • v.32 no.4
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    • pp.225-229
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    • 2005
  • Microinjection of recombinant retrovirus beneath the blastoderm of non-incubated chicken embryo is now the most widespread method for generating transgenic chickens, but transgenesis rates are very low. So to improve this problem, we first introduced retrovirus vector carrying RSV-GFP gene to an one-cell embryo culture system. To investigate whether retrovirus could work on an one-cell chicken embryo, we microinjected the concentrated retrovirus stocks into the germinal disc of one cell or stage-X chicken embryos. Analysis of reporter gene expression on day 4 embryos showed that GFP expression was observed in the only stage-X chicken embryo but was not in the one-cell embryo group. These results suggest that retrovirus system is the most efficient method to generate transgenic chickens in the stage-X embryo.

Germ-line Transmission of Pseudotyped Retroviral Vector in Chicken

  • Heo, Y.T.;Kim, T.;Lee, Y.M.;Lee, C.K.;Kwon, M.S.;Koo, B.C.;Roh, K.S.;Whang, K.;Han, D.W.;Chung, K.S.;Lee, H.T.
    • Asian-Australasian Journal of Animal Sciences
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    • v.17 no.1
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    • pp.27-32
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    • 2004
  • Using MLV (murine leukemia virus)-based retrovirus vectors encapsidated with VSV-G (vesicular stomatitis virus G glycoprotein), we tried to make transgenic chickens carrying the transferred genes in their chromosomes. Twenty one days after virus injection beneath the blastoderms of unincubated chicken embryos (stage Ⅹ, at laying), DNA isolated from the hatched chicks were analyzed by PCR with two sets of primers specific for EGFP (enhanced green fluorescence protein) gene or $Neo^R$ (E. coli neomycin resistant) gene. Among sixty-seven embryos injected with retrovirus, four of them were identified to carry the EGFP genes in their genomes. Remarkably, one transgenic chick showed presence of the retrovirus vector sequences in all organs differentiated from one of endoderm, mesoderm, and ectoderm. Expression of EGFP gene was not detected, however, the stable germ line transmission of transgene was verified in spermatozoa from the founder chicken and 50% of $F_1$ progenies.

Opportunities and Challenges for Application of Poultry Science and Technology into the 21st Century

  • Sheldon, B.L.
    • Korean Journal of Poultry Science
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    • v.20 no.3
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    • pp.161-170
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    • 1993
  • Prospects are briefly reviewed for further advances in current poultry industry technology in the foreseeable future. It is concluded that in the most advanced industries progress should continue at a similar rate to the recent past in conventional genetics and breeding, nutrition and disease control. Significant benefits will also follow in the short-term from the application of molecular biotechnology to disease diagnosis and vaccine production. Technical advances now make it possible to produce transgenic chickens at acceptable success rates but applications of this technology to poultry breeding will not become significant till we have sufficient knowledge of the poultry genome, and especially the genes involved in production performance. For the undeveloped and less advanced industries it is argued that the level of advanced technologies to be implemented in those countries should be decided largely on market forces, informed by objective assessment of the diverse options available. The need for urgent international action on conservation of poultry genetic resources is also stressed.

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