Population Analysis of Skipjack Tuna (Katsuwonus pelamis) in the Waters of Cendrawasih Bay
DOI:
https://doi.org/10.52046/agrikan.v18i1.2497Keywords:
Skipjack Tuna, Population Analysis, Katsuwonus pelamis, Cendrawasih BayAbstract
Tuna and skipjack tuna are capture fishery commodities that have a strategic role for the fisheries sector in Indonesia. The potential of skipjack tuna which is the target of fishing by fishermen in Nabire Regency has not been fully studied in detail so that data sources for the utilization of skipjack tuna are very limited and for the sake of sustainable utilization, a structured study is needed. The purpose of the study was to analyze the distribution of size and mature size of skipjack tuna gonads in Cenderawasih Bay. The research method applied survey methods and direct sample measurements in the field. The results showed that the size of skipjack tuna ranged from 25 - 52 cm. Male and female skipjack tuna were caught in mature gonad conditions and were caught a lot in TKG IV.
References
Marfai, M. A., Mardiatno, D., Wibowo, A. A., Utami, N. D., Jihad, A., Sudarno, A., ... & Lubis, N. A. Z. (2021). Kajian pengelolaan pesisir berbasis ekowisata di Kepulauan Karimunjawa. UGM PRESS
Mallawa, A., Syafruddin dan Palo, M., 2010. Aspek perikanan dan pola distribusi ikan cakalang (Katsuwonus pelamis) di perairan Teluk Bone, Sulwesi Selatan. J. Ilmu Kelautan dan Perikanan vol 20 no 1 : 17 – 24.
Krag, L. A., Herrmann, B., & Karlsen, J. D. (2014). Inferring fish escape behaviour in trawls based on catch comparison data: Model development and evaluation based on data from Skagerrak, Denmark. PLOS ONE, 9(2).
Alison, C., Harvey., Yongkai, Tang., Vidar, Wennevik., Øystein, Skaala., Kevin, A., Glover. (2017). Timing is everything: Fishing-season placement may represent the most important angling-induced evolutionary pressure on Atlantic salmon populations.. Ecology and Evolution, 7(18):7490-7502.
Floor, H., Soudijn., Floor, H., Soudijn., P., Daniël, van, Denderen., Mikko, Heino., Mikko, Heino., Ulf, Dieckmann., Ulf, Dieckmann., André, M., de, Roos., André, M., de, Roos. (2021). Harvesting forage fish can prevent fishing-induced population collapses of large piscivorous fish. Proceedings of the National Academy of Sciences of the United States of America, 118(6).
Akbar, N. N., & Labenua, R. (2018). Keragaman genetik ikan cakalang (Katsuwonus pelamis) di perairan laut Maluku Utara. Depik, 7(2), 164-176.
Anita, Chattopadhyay, Gupta. (2016). Bioeconomic Fishery Management: Changing Paradigms towards Eco-System Based Management. 261-281.
Septiana, B., Pramesti, D. W., Azzahra, N., & Pramasha, R. R. (2024). Pengaruh Eksploitasi Sumber Daya Alam Terhadap Pertumbuhan Ekonomi: Pendekatan Ekonomi Sirkular. Indonesian Journal of Economy and Education Economy, 2(1), 313-326.
Satria A. I. W dan Kurnia, R. 2017. Struktur Populasi Ikan Cakalang (Katsuwonus pelamis, Linnaeus 1758): Famili Scombridae: Perairan Pesisir Selatan Laut Jawa. Jurnal Pengelolaan Perikanan Tropis. Vol. 1 (1) : 1 – 9.
Alamsyah, R. 2016. Rasio Kelamin Dan Tingkat Kematangan Gonad Ikan Cakalang Yang Tertangkap Di Perairan Teluk Bone. Jurnal Agrominansia, 1 (2) : 176 -184.
Yuniati, D., Nasyrah A. F.A., Zulfiani, Darsiani, Nur F., Lestari D. Indeks Hepatosomatik (Hsi) Dan Tingkat Kematangan Gonad (TKG) Ikan Cakalang (Katsuwonus pelamis) Di Perairan Majene. 2023. Jurnal Penelitian Belida Indonesia. Vol. 2 No. 3.
Downloads
Published
Issue
Section
License
Copyright (c) 2025 Barnabas Hukubun, Nuraeni L. Rapi, Fatmawati Fatmawati

This work is licensed under a Creative Commons Attribution 4.0 International License.
This work is licensed under a Creative Commons Attribution 4.0 International License.