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Genetic Responses of the Ark Shell Scapharca broughtonii Schrenck to Environmental Shock: High Temperatures and Long Exposure Times
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  • Genetic Responses of the Ark Shell Scapharca broughtonii Schrenck to Environmental Shock: High Temperatures and Long Exposure Times
  • Genetic Responses of the Ark Shell Scapharca broughtonii Schrenck to Environmental Shock: High Temperatures and Long Exposure Times
저자명
Cho. Eun-Seob,Jung. Choon-Goon,Shin. Yun-Kyung
간행물명
Ocean science journal : OSJ
권/호정보
2009년|44권 2호|pp.61-67 (7 pages)
발행정보
한국해양학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Genetic responses of non-high temperature exposed and high temperature exposed ark shell (Scapharca broughtonii) cells collected from Dukyang Bay in August 2007 to environmental shock have been compared. In the analysis of two-dimensional electrophoresis, seven protein spots were found. They have no matching protein in the database, but the number of protein (#1) in unstressed ark shells differed from that of stressed ark shells, indicating a strong signal on the gel and had a homology with arginine kinase (molecular weight, 38 kDa; pI 8.3). The predicted tertiary structure of arginine kinase formed finger-like antiparalled b-sheet projections. A small a-helical N-terminal domain is followed by a larger C-terminal domain. Extracted total RNA was reverse transcribed and amplified by PCR with primer used in this study. Mantle, gill and visceral in non-high temperature exposed ark shell showed some levels of arginine kinase transcripts, but not the foot. These cells also showed amplified fragments on the gel exposed to $20^{circ}C,;23^{circ}C$ and $27^{circ}C$, but the foot cell had no expression of arginine kinase gene at $27^{circ}C$ for 3 hrs. These findings provide important insights into the possible molecular mechanisms in which no expression of arginine kinase is contributed to preventing the binding of arginine and actin and difficult to move foot muscle.