IJMS_2025v15n4

International Journal of Marine Science, 2025, Vol.15, No.4, 186-198 http://www.aquapublisher.com/index.php/ijms 197 Gao Y., Liu S., Gutang Q., Li C., Lin X., Liang B., Li P., Lin J., and Liu W., 2024, Chromosome-level genome assembly of Indo-Pacific king mackerel (Scomberomorus guttatus), Scientific Data, 11(1): 1224. https://doi.org/10.1038/s41597-024-04110-5 Gold J., Jobity A., Saillant E., and Renshaw M., 2010, Population structure of carite (Scomberomorus brasiliensis) in waters offshore of Trinidad and northern Venezuela, Fisheries Research, 103: 30-39. https://doi.org/10.1016/J.FISHRES.2010.01.009 Guo C., Ito S., Yoneda M., Kitano H., Kaneko H., Enomoto M., Aono T., Nakamura M., Kitagawa T., Wegner N., and Dorval E., 2021, Fish specialize their metabolic performance to maximize bioenergetic efficiency in their local environment: conspecific comparison between two stocks of pacific chub mackerel (Scomber japonicus), Frontiers in Marine Science, 8: 613965. https://doi.org/10.3389/fmars.2021.613965 Gwak W.S., 2025, Population genetic structure with mitochondrial DNA of the chub mackerel Scomber japonicus in Korean coastal waters, Journal of Marine Science and Engineering, 13(2): 252. https://doi.org/10.3390/jmse13020252 Huang P.H., Wang T.R., Li M., Fang O.Y., Su R.P., Meng H.H., Song Y.G., and Li J., 2024, Different reference genomes determine different results: comparing SNP calling in RAD-seq of Engelhardia roxburghiana using different reference genomes, Plant Science, 344: 112109. https://doi.org/10.1016/j.plantsci.2024.112109 Jeena N.S., Rahuman S., Roul S.K., Azeez P.A., Vinothkumar R., Manas H., Nesnas E., Rathinam A., Surya S., Rohit P., Abdussamad E., and Gopalakrishnan A., 2022, Resolved and redeemed: a new fleck to the evolutionary divergence in the genus Scomberomorus Lacepède 1801 (Scombridae) with cryptic speciation, Frontiers in Marine Science, 9: 888463. https://doi.org/10.3389/fmars.2022.888463 Johnson M.G., Mgaya Y.D., and Shaghude Y.W., 2021, Analysis of the genetic stock structure and phylogenetic relationship of narrow-barred Spanish mackerel Scomberomorus commerson (Lacépède 1800) along the northern Tanzanian coastal waters using mitochondrial DNA, Regional Studies in Marine Science, 46: 101862. https://doi.org/10.1016/J.RSMA.2021.101862 Joy L., Paulose S., Divya P., Ravi C., Basheer V., Kumar R., Singh R., Mohindra V., and Lal K., 2020, Microsatellite marker development in Spanish mackerel Scomberomorus commerson using third generation sequencing technology, Molecular Biology Reports, 47: 10005-10014. https://doi.org/10.1007/s11033-020-05975-6 Lee Y.H., Abueg L., Kim J.K., Kim Y.W., Fedrigo O., Balacco J., Formenti G., Howe K., Tracey A., Wood J., Thibaud-Nissen F., Nam B., No E., Kim H., Lee C., Jarvis E., and Kim H., 2023, Chromosome-level genome assembly of chub mackerel (Scomber japonicus) from the Indo-Pacific Ocean, Scientific Data, 10(1): 880. https://doi.org/10.1038/s41597-023-02782-z Li W.L., Zhang J.M., and Wang F., 2024, Comparative genomics of aquatic organisms: insights into biodiversity origins, International Journal of Aquaculture, 14(5): 241-248. https://doi.org/10.5376/ija.2024.14.0024 Radhakrishnan D., Nedumpally V., Kathirvelpandian A., Saidmuhammed B., and Gopalakrishnan A., 2018, Population structure of Spanish mackerel Scomberomorus commerson (Lacepede 1800) in the Northern Indian Ocean determined using microatellite markers, Aquatic Living Resources, 31: 22. https://doi.org/10.1051/ALR/2018011 Sassa C., and Tsukamoto Y., 2010, Distribution and growth of Scomber japonicus and S. australasicus larvae in the southern East China Sea in response to oceanographic conditions, Marine Ecology Progress Series, 419: 185-199. https://doi.org/10.3354/MEPS08832 Siccha-Ramirez Z., Maroso F., Pardo B., Fernández C., Martínez P., and Oliveira C., 2018, SNP identification and validation on genomic DNA for studying genetic diversity in Thunnus albacares and Scomberomorus brasiliensis by combining RADseq and long read high throughput sequencing, Fisheries Research, 198: 189-194. https://doi.org/10.1016/J.FISHRES.2017.09.002 Soeth M., Daros F.A., Correia A.T., Fabré N.N., Medeiros R., Feitosa C.V., De Sousa Duarte O., Lenz T., and Spach H., 2022, Otolith phenotypic variation as an indicator of stock structure of Scomberomorus brasiliensis from the southwestern Atlantic Ocean, Fisheries Research, 252: 106357. https://doi.org/10.1016/j.fishres.2022.106357 Vineesh N., Divya P., Kathirvelpandian A., Mohitha C., Shanis C., Basheer V., and Gopalakrishnan A., 2017, Four evolutionarily significant units among narrow-barred Spanish mackerel (Scomberomorus commerson) in the Indo-West Pacific region, Marine Biodiversity, 48: 2025-2032. https://doi.org/10.1007/s12526-017-0714-3 Wang G.L., Sun C.M., and Chen L.Q., 2024, Genomic and developmental mechanisms underlying growth and environmental adaptation in largemouth bass (Micropterus salmoides), International Journal of Aquaculture, 14(2): 81-90. Widayanti R., Limiano J.B., Sari R.P., Nugroho S., Ibrahim A., Pakpahan S., and Nurjirana, 2024, Disclosure of genetic diversity of mackerel fish (Scomberomorus spp.) in Indonesian waters based on the mitochondrial cytochrome oxidase subunit II (COII) gene, Brazilian Journal of Biology, 84: e278322. https://doi.org/10.1590/1519-6984.278322

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