Effects of Electrical Stimulation on Ultrastructure of Plaice, Paralichthys olivaceus Muscle and Sarcoplasmic Reticulum

넙치 근육 및 근소포체 미세구조의 변화에 미치는 전기자극의 영향

  • KIM Tae-Jin (National Fisheries R & D Institute) ;
  • KIM Young-Jin (National Fisheries R & D Institute) ;
  • YOON Ho-Dong (National Fisheries R & D Institute) ;
  • CHO Young-Je (Department of Food Science and Technology, Pukyong National University) ;
  • CHOI Young-Jun (Dept. of Marine Food Science and Technology, Gyeungsang National University) ;
  • LEE Keun-Woo (Department of Seafood Processing, Kunsan University) ;
  • KIM Geon-Bae (Department of Seafood Processing, Kunsan University) ;
  • KIM Dong-Su (Korea Food Research Institute)
  • Published : 1998.07.01

Abstract

Electron micrographs of muscle of plaice killed instantly by spiking at the head clearly showed the A-band, I-band, Z-line and M-line in muscle strips, whereas these bands could not be distinguished from each other in electrically stimulated plaice muscle strips. As the electrical stimulation time increased, the continuity of Z-line disrupted rapidly. Electron microscopic observation showed that sarcoplasmic reticulum (SR) in unstimulated plaice had natural triad structures between Z-line. However these structures were disrupted in the electrically stimulated sample. These structures were clearly observed after storage for 10 hrs at $5^{\circ}C$ from all the samples. In association with the $Ca^{2+}$ translocation, $Ca^{2+}$-pyroantimonate deposits were observed at the inner part of SR immediately after spiked the plaice, However, $Ca^{2+}$-pyroantimonate deposits in electrically stimulated plaices were observed in the muscle strips and this phenomenon was clearly observed when electrical stimulation was prolonged.

근육의 미세구조는 즉살의 경우, 근섬유의 A대, I대 및 M-line이 뚜렷하게 관찰되었으나, 전기 자극한 것은 근섬유의 가는 섬유가 굵은 섬유 사이로 미끌어져 들어가 I대가 불분명하였으며. 자극 시간이 길어질수록 Z-line의 연속성은 현저하게 소실되었다. 근소포체의 미세구조는 즉 살의 경우, Z-line을 사이에 두고 원래의 상태를 유지하고 있었으나. 전기 자극한 것은 자극 시간이 길어질수록 근소포체가 뭉쳐지거나 파괴된 형태를 보이고 있었으며, 저장 10시간째 더욱 현저하게 나타났다. 근소포체의 $Ca^{2+}$-translocation을 살펴본 결과. 즉살 직후에는 근소포체 내부에 $Ca^{2+}$이 관찰되었으나. 전기자극을 가한 것은 근섬유에 분포되는 경향을 보였으며 이러한 현상은 전기자극 시간이 길어질수록 현저한 경향을 나타내었다 저장 10시간 후에는 즉살에서도 근섬유에 $Ca^{2+}$이 관찰되었다.

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