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카드뮴 (Cd) 노출 퇴적물에 따른 실지렁이 Tubifex tubifex의 체내 축적과 스트레스 반응 유전자 발현
Bioaccumulation and Expressions of Stress Response Genes in Benthic Oligochaete Worm Tubifex tubifex to Exposure of Cadmium-spiked Sediment 원문보기

생태와 환경 = Korean journal of ecology and environment, v.56 no.4, 2023년, pp.320 - 329  

김지훈 (전남대학교 해양융합과학과) ,  김원석 (전남대학교 해양융합과학과) ,  박기연 (전남대학교 수산과학연구소) ,  곽인실 (전남대학교 해양융합과학과)

초록
AI-Helper 아이콘AI-Helper

환경에 존재하는 중금속인 Cd은 생물에게 유입되며 먹이사슬을 통해 생물에게 축적된다. 본 연구에서는 카드뮴 노출에 따른 오염지표생물인 실지렁이(Tubifex tubifex)의 체내 농축 반응 및 스트레스 유전자 발현 패턴을 분석하기 위해, 퇴적물 내 카드뮴 노출 후 생존율 변화, 체내 농축 농도 측정, 그리고 스트레스 반응 유전자인 열 충격 단백질(HSP60 and HSP70)과 항산화효소인 GST의 발현 패턴을 관찰하였다, Cd 노출 퇴적물에 노출된 T. tubifex의 생존율은 노출 10일에 0.4 mg kg-1 Cd에서 93%, 1.87 mg kg-1 Cd에서 96%, 6.09 mg kg-1 Cd에서 93%로 관찰되었다. T. tubifex의 체내 Cd 농도는 퇴적물 내 Cd 농도에 비해 높게 나타났으며, 0.4 mg kg-1 Cd에서는 실험 10일에 18.4 mg kg-1 Cd, 1.87 mg kg-1 Cd에서 실험 1일에 13.06 mg kg-1 Cd, 6.09 mg kg-1 Cd에서 실험 10일에 79.11 mg kg-1 Cd로 가장 높게 나타났다. HSP60 유전자 발현은 6.09 mg kg-1 Cd 노출 퇴적물에서 시간 의존적으로 발현이 대조군에 비해 증가였으며, HSP70은 모든 농도에서 대조군에 비해 시간 의존적인 발현의 증가를 보였다. 또한, GST는 모든 농도에서 실험 1일에 대조군에 비해 발현이 증가한 후, 실험 10일까지 발현이 감소하였다. 이러한 연구결과는 퇴적물 내에 존재하는 Cd에 대한 실지렁이의 생태독성학적 및 분자유전학적 독성영향을 확인한 결과로, 환경 내 오염지표종으로 실지렁이를 이용한 환경독성평가의 기초자료로 활용될 수 있을 것이다.

Abstract AI-Helper 아이콘AI-Helper

Cadmium (Cd), a heavy metal found in the aquatic environment, accumulates in organisms through the food chain. In the study, we investigated the survival rates, measurement of body Cd levels, and expression analysis of the stress response genes (Heat shock protein 70: HSP70 and Heat shock protein 60...

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