남서부 인도양 열대성 다랑어 어획량과 먹이 생물량과의 연관성

Relationship between tropical tuna catches and acoustic biomass of prey organisms in the southwestern Indian Ocean
  • 강동하; 
  • 정지훈; 
  • Fredrich Simanungkalit; 
  • 김주향; 
  • 송소망; 
  • ... 강명희; 
  • 외 3명

초록

The Indian Ocean is the second-largest tuna fishing ground in the world, accounting for approximately 1.2 million tonnes (23%) of the estimated 5.2 million tonnes of global commercial tuna catch in 2023. This study examined the relationship between tuna catches, specifically skipjack, bigeye, and yellowfin tunas, and prey biomass (Nautical Area Scattering Coefficient, NASC) estimated from acoustic surveys conducted in the southwestern Indian Ocean from 20 April to 15 May 2019. Environmental variables were derived from the Copernicus Ocean Model, and tuna length data from the IOTC. The estimated total tuna catch in the study area was approximately 166,400 tonnes, with the northwestern region showing the highest catches and NASC values. Tuna catches increased with NASC; however, the relationship was non-linear. While skipjack showed no significant correlation with NASC, bigeye and yellowfin tunas exhibited weak but significant positive correlations. Environmental analysis revealed that the northern waters had high surface temperatures, low salinity, and low oxygen levels, with mid and deep layers characterized by low temperature, salinity, oxygen, and chlorophyll. These findings offer a foundation for understanding tuna distribution in relation to prey and environmental conditions, highlighting the need for future species- and fishery-specific studies to support sustainable tuna resource management.

키워드

참치; 먹이생물; 인도양; 음향생물량; 해양환경; Tuna; Prey organisms; Indian Ocean; Acoustic biomass; Marine environment
제목
남서부 인도양 열대성 다랑어 어획량과 먹이 생물량과의 연관성
제목 (타언어)
Relationship between tropical tuna catches and acoustic biomass of prey organisms in the southwestern Indian Ocean
저자
강동하; 정지훈; Fredrich Simanungkalit; 김주향; 송소망; 김예슬; 남성현; 강동진; 강명희
DOI
10.3796/KSFOT.2025.61.2.126
발행일
2025-05
유형
Y
저널명
Journal of the Korean Society of Fisheries and Ocean Technology
권
61
호
2
페이지
126 ~ 138