The Long-Term Dynamics of Walleye Pollock Stocks in Relation to Oceanographic Changes in the East Sea

Author:

Jung Hae Kun1ORCID,Park Jong Won2ORCID,Yang Jae Hyeong3,Park Joo Myun4ORCID,Han In Seong5,Lee Chung Il2ORCID

Affiliation:

1. East Sea Fisheries Research Institute, National Institute of Fisheries Science, Gangneung 25435, Republic of Korea

2. Department of Marine Ecology and Environment, Gangneung-Wonju National University, Gangneung 25457, Republic of Korea

3. Coastal Water Fisheries Resources Research Division, National Institute of Fisheries Science, Busan 46083, Republic of Korea

4. Dokdo Research Center, East Sea Research Institute, Korea Institute of Ocean Science & Technology, Uljin 36315, Republic of Korea

5. Ocean Climate & Ecology Research Division, National Institute of Fisheries Science, Busan 46083, Republic of Korea

Abstract

The decline in walleye pollock (Gadus chalcogrammus) stocks in Korean waters is a major concern for fishery conservation and management. However, the causes and mechanisms of this collapse remain unclear. This study investigated the complex dynamics influencing the abundance of walleye pollocks in the East Sea of Korea over several decades, by analyzing data from long-term changes in biological factors including composition of length and sex, catch, and oceanographic condition. Prior to the mid-1980s, the catch ratio of juveniles was higher than that of adults, with a higher proportion of females in both juvenile and adult catches compared to males. Especially, high fishing pressure on female individuals can be an important factor contributing to declining reproduction. Consequently, after the mid-1980s, there was a sudden decline in juvenile pollock catches. In the late 1980s, there was a rapid increase in sea surface temperature (SST) in the spawning grounds, resulting in a decrease in both the duration of suitable temperature for spawning and the regional proportion for suitable spawning conditions. Consequently, the decline in pollock stocks after the late 1980s due to overfishing of pollock in the mid-1980s was further exacerbated by the effects of SST warming after the late 1980s. These findings highlight the impact of overfishing and environmental factors on pollock stocks and indicate the need for appropriate fishery management practices to ensure the sustainable use of fishery resources.

Funder

National Institute of Fisheries Science, Ministry of Oceans and Fisheries, Korea

Korea Institute of Marine Science & Technology Promotion (KIMST) funded by the Ministry of Oceans and Fisheries

Publisher

MDPI AG

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