• 제목/요약/키워드: Capsid gene

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Prevalence and co-infection status of three pathogenic porcine circoviruses (PCV2, PCV3, and PCV4) by a newly established triplex real-time polymerase chain reaction assay

  • Kim, Hye-Ryung;Park, Jonghyun;Kim, Won-Il;Lyoo, Young S.;Park, Choi-Kyu
    • 한국동물위생학회지
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    • 제45권2호
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    • pp.87-99
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    • 2022
  • A novel porcine circovirus 4 (PCV4) was recently emerged in Chinese and Korean pig herds, which provided epidemiological situation where three pathogenic PCVs, PCV2, PCV3, and newly emerged PCV4, could co-infect pig herds in these countries. In this study, a new triplex quantitative real-time polymerase chain reaction (tqPCR) method was developed for the rapid and differential detection of these viruses. The assay specifically amplified each viral capsid gene, whereas no other porcine pathogenic genes were detected. The detection limit of the assay was below 10 copies/µL and the assay showed high repeatability and reproducibility. In the clinical evaluation using 1476 clinical samples from 198 Korean pig farms, the detection rates of PCV2, PCV3 and PCV4 by the tqPCR assay were 13.8%, 25.4%, and 3.8%, respectively, which were 100% agreement with those of previously reported monoplex qPCR assays for PCV2, PCV3, and PCV4, with a κ value (95% CI) of 1 (1.00~1.00). The prevalence of PCV2, PCV3, and PCV4 at the farm levels were 46.5%, 63.6%, and 19.7%, respectively. The co-infection analysis for tested pig farms showed that single infection rates for PCV2, PCV3, and PCV4 were 28.8%, 44.4%, and 9.6%, respectively, the dual infection rates of PCV2 and PCV3, PCV2 and PCV4, and PCV3 and PCV4 were 12.6%, 3.5%, and 5.1%, respectively, and the triple infection rate for PCV2, PCV3, and PCV4 was 1.5%. These results demonstrate that three pathogenic PCVs are widely spread, and their co-infections are common in Korean pig herds, and the newly developed tqPCR assay will be useful for etiological and epidemiological studies of these pathogenic PCVs.

Interaction between host cell proteins and open reading frames of porcine circovirus type 2

  • Si-Won Park;In-Byung Park;Seok-Jin Kang;Joonbeom Bae;Taehoon Chun
    • Journal of Animal Science and Technology
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    • 제65권4호
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    • pp.698-719
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    • 2023
  • Postweaning multisystemic wasting syndrome (PMWS) is caused by a systemic inflammation after porcine circovirus type 2 (PCV2) infection. It was one of the most economically important pathogens affecting pig production worldwide before PCV2 vaccine was first introduced in 2006. After the development of a vaccine against PCV2a type, pig farms gradually restored enormous economic losses from PMWS. However, vaccine against PCV2a type could not be fully effective against several different PCV2 genotypes (PCV2b - PCV2h). In addition, PCV2a vaccine itself could generate antigenic drift of PCV2 capsid. Therefore, PCV2 infection still threats pig industry worldwide. PCV2 infection was initially found in local tissues including reproductive, respiratory, and digestive tracks. However, PCV2 infection often leads to a systemic inflammation which can cause severe immunosuppression by depleting peripheral lymphocytes in secondary lymphoid tissues. Subsequently, a secondary infection with other microorganisms can cause PMWS. Eleven putative open reading frames (ORFs) have been predicted to encode PCV2 genome. Among them, gene products of six ORFs from ORF1 to ORF6 have been identified and characterized to estimate its functional role during PCV2 infection. Acquiring knowledge about the specific interaction between each PCV2 ORF protein and host protein might be a key to develop preventive or therapeutic tools to control PCV2 infection. In this article, we reviewed current understanding of how each ORF of PCV2 manipulates host cell signaling related to immune suppression caused by PCV2.

벼검은줄오갈병바이러스 외피단백질 유전자 단백질 발현과 항혈청 제작 (In Vitro Expression and Antibody Preparation of Rice black-streaked dwarf virus Coat Protein Gene)

  • 이봉춘;조상윤;배주영;김상민;신동범;김선림
    • 식물병연구
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    • 제22권1호
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    • pp.32-37
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    • 2016
  • 본 연구에서는 RBSDV의 외피단백질 P10을 코드하는 S10을 E. coli에서 발현시켰다. RBSDV-miryang isolate (GenBank JX994211)로부터 추출한 게놈 dsRNA을 주형으로 S10의 특이적인 primer를 사용하여 P10의 N-말단영역(1-834 nt, 1-278 aa)을 RT-PCR에 의해 증폭하였다. 증폭된 RBSDV S10-N (1-834 nt)을 발현 벡터 pET32a(+)에 클로닝하여 E. coli BL21(DE3)에서 발현시킨 후 Ni-NTA affinity column으로 발현된 단백질을 정제하였다. 정제된 단백질을 면역 동물에 주사하여 항혈청을 제작하였다. 제작된 항혈청은 Western blot 및 ELISA 분석으로 RBSDV와의 특이성을 확인하였다. 본 연구에서 RBSDV 한국 isolate의 항혈청이 제작되었으며 금후 혈청학적 연구의 좋은 재료로 활용될 수 있을 것으로 기대한다.

박테리오파지 P2-P4 시스템을 위한 벡터 플라스미드 개발과 안정성 (Development of Selectable Vector Plasmid in Bacteriophage P2-P4 System and Its Stability)

  • 김경진
    • 미생물학회지
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    • 제34권4호
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    • pp.236-242
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    • 1998
  • 박테리오파지 P2-P4 시스템은 바이러스 조립과정 기작 연구를 위한 뛰어난 실험 소재로 연구되어 왔으나, 이 시스템에 유전자 조작상 필수적인 유용한 플라스미드가 없는 관계로 그의 필요성이 대두되고 있다. 본연구에서는 도움파지가 없을 때 플라스미드 상태로 존재하는 P4 ash8 (sid71)을 시작물질로, 항생제 내성 유전자를 도입하여 선택성을 줄 목적으로 P4 파지 증식에 불필요한 P4 DNA 단편을 pUC4-K 플라스미드의 kmr(kanamycin resistance) 유전자로 치환하여 P4 ash8(sid71) kmr을 생성하였다. 이 플라스미드는 박테리오파지 P2로 induction하여 박테리오파지 P4 상태로 증식시킬 수 있게 그 genome 크기를 조정하였으며, 파지 상태로 전환된 것을 burst size 결정 및 CsCl 부양 균등밀도 편차실험을 통해 입증하였다. 생성된 P4 플라스미드 유도체를 유전자 조작하여 P4의 integrase 기능을 잃은 변이체를 쉽게 만들 수 있었으며, 역시 박테리오파지 P4 상태로 증식시킬 수 있었다. 이러한 변이체 플라스미드의 안정성 실험을 수행하여, P4의 integrase 기능이 지속적인 플라스미드 상태 유지를 위해 필요하다는 것을 보여주었다.

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