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Multi-Resistance Approach against Viral Diseases and In Vitro shRNAs Verification Method in Pigs

첫 페이지 보기
  • 발행기관
    한국동물생명공학회(구 한국동물번식학회) 바로가기
  • 간행물
    발생공학 국제심포지엄 및 학술대회 바로가기
  • 통권
    The 17th International Symposium on Developmental Biotechnology (2017.10)바로가기
  • 페이지
    pp.153-153
  • 저자
    Jong-nam Oh, Kwang-hwan Choi, Dong-Kyung Lee, Seung-Hun Kim, Tae-Young Park, Min-Gyun Lee, Man Ho Cho, Chang-kyu Lee
  • 언어
    영어(ENG)
  • URL
    https://www.earticle.net/Article/A347405

원문정보

초록

영어
In the pig industry, foot and mouth disease (FMD) and porcine reproductive and respiratory syndrome (PRRS) cause lots of social and economic losses annually. Many resourses have been used to prevent these viruses, however, vaccinations have obvious limitation on viral diseases. It is difficult to prevent the diseases, because viruses constantly change their genetic information naturally. Therefore, genetic modification of the host has been studied to overcome the limitations of vaccine. In this study, disease resistance was introduced with two genetic modification methods. First the PRRSV viral receptor (CD163) was edited with the CRISPR/Cas9 technique. Porcine fetal fibroblasts (pFF) with the CRISPR/Cas9 vector were single cell cultured to make unique cell lines. As results, CD163 sequences of edited cells showed difference with control cells. Second, shRNAs that target 3D gene (encoding FMDV RNA polymerase) and ORF7 (encoding PRRSV nucleocapsid protein) were introduced into pFF. Those techniques above were combined into single cell line by introducing shRNAs into CD163-edited cells. Vectors expressing the 3D gene and ORF7 gene were lipofected into the cells to confirm shRNA activity in vitro. The cells containg shRNAs showed significantly lower level of transcript than the control cells (about 9-fold in 3D and 160- fold in ORF7). The multi-resistant cells also showed decreasing in transcript level of viral genes (more than 4.8-fold in 3D and 3.8-fold in ORF7). With all these results, we obtained the multi-resistant cell line against FMD and PRRS, and established in vitro shRNA verification system successfully.

저자

  • Jong-nam Oh [ Department of Agricultural Biotechnology, Animal Biotechnology Major, and Research Institute of Agriculture and Life Science, Seoul National University, Seoul, Korea ]
  • Kwang-hwan Choi [ Department of Agricultural Biotechnology, Animal Biotechnology Major, and Research Institute of Agriculture and Life Science, Seoul National University, Seoul, Korea ]
  • Dong-Kyung Lee [ Department of Agricultural Biotechnology, Animal Biotechnology Major, and Research Institute of Agriculture and Life Science, Seoul National University, Seoul, Korea ]
  • Seung-Hun Kim [ Department of Agricultural Biotechnology, Animal Biotechnology Major, and Research Institute of Agriculture and Life Science, Seoul National University, Seoul, Korea ]
  • Tae-Young Park [ Department of Agricultural Biotechnology, Animal Biotechnology Major, and Research Institute of Agriculture and Life Science, Seoul National University, Seoul, Korea ]
  • Min-Gyun Lee [ Department of Agricultural Biotechnology, Animal Biotechnology Major, and Research Institute of Agriculture and Life Science, Seoul National University, Seoul, Korea ]
  • Man Ho Cho [ Department of Agricultural Biotechnology, Animal Biotechnology Major, and Research Institute of Agriculture and Life Science, Seoul National University, Seoul, Korea ]
  • Chang-kyu Lee [ Department of Agricultural Biotechnology, Animal Biotechnology Major, and Research Institute of Agriculture and Life Science, Seoul National University, Seoul, Korea Institute of Green Bio Science and Technology, Seoul National University, Pyeong Chang, Kangwon do, Korea ]

참고문헌

자료제공 : 네이버학술정보

간행물 정보

발행기관

  • 발행기관명
    한국동물생명공학회(구 한국동물번식학회) [The Korean Society of Animal Reproduction and Biotechnology]
  • 설립연도
    1976
  • 분야
    농수해양>축산학
  • 소개
    동물번식생리학, 동물생명공학, 수의학, 인공수정 및 수정란이식을 이용한 동물개량에 관한 이론과 기술의 발전을 통해 학계, 연구계, 산업계 및 양축가 상호간의 협력을 도모함으로써 동물과학발전 및 사회일반의 이익에 기여 한다는 목적을 위해 노력해 나가겠습니다.

간행물

  • 간행물명
    발생공학 국제심포지엄 및 학술대회 [International Symposium on Developmental Biotechnology]
  • 간기
    연간
  • 수록기간
    2004~2018
  • 십진분류
    KDC 527 DDC 636

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