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포스터 발표 : 동물 및 식물세포공학

Expression of Major Capsid Protein in Suspension-Cultured Rice Cells to Develop Edible Vaccine against Rock Bream Iridovirus

초록

영어

Rock bream iridovirus(RBIV) have occurred frequently among cultured marine fish species in Southeast Asia (including S. Korea) and iridoviral disease has caused severe systemic disease with high mortality. The major capsid protein of RBIV is known to have a major effect on viral infection. In order to develop the edible vaccine against RBIV, MCP gene with KDEL endoplasmic reticulum retention signal was synthesized based on rice optimized codon usage (shMCP). The resulting fragments, shMCP was inserted into a plant expression vector containing sugar starvation inducible promoter, RAmy3D, and introduced into the rice calli by Agrobacterium
mediated transformation. The stable integration and transcriptional expression of the shMCP were confirmed by genomic DNA PCR, Northern blot analysis and RT-PCR. Accumulation of major capsid protein in endoplasmic reticulum during sugar starvation in suspension-cultured
cells was confirmed by Western blot analysis. These results suggest that transgenic suspension-cultured rice cells have the potential to be used as a edible vaccine against RBIV (This study was supported by Technology Development Program (108166-03-1-HD110) of MIFAFF).

저자정보

  • Hyo-Boon KIM Jeonju Biomaterials Institute, Jeonju 561-360, KOREA.
  • Yun Ji SHIN Jeonju Biomaterials Institute, Jeonju 561-360, KOREA.
  • Eun Jin CHOI Jeonju Biomaterials Institute, Jeonju 561-360, KOREA.
  • Ji Ae YANG Jeonju Biomaterials Institute, Jeonju 561-360, KOREA.
  • Hong Soo DOO Jeonju Biomaterials Institute, Jeonju 561-360, KOREA.
  • Tae Ho KWON Jeonju Biomaterials Institute, Jeonju 561-360, KOREA.

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