IJMEC_2025v15n3

International Journal of Molecular Ecology and Conservation, 2025, Vol.15, No.3, 111-122 http://ecoevopublisher.com/index.php/ijmec 121 Gawra J., Valdivieso A., Roux F., Laporte M., de Lorgeril J., Gueguen Y., Saccas M., Escoubas J.M., Montagnani C., Destoumieux-Garzón D., Lagarde F., Leroy M.A., Haffner P., Petton B., Cosseau C., Morga B., Dégremont L., Mitta G., Grunau C., and Vidal-Dupiol J., 2023, Epigenetic variations are more substantial than genetic variations in rapid adaptation of oyster to Pacific oyster mortality syndrome, Science Advances, 9(36): eadh8990. Havelka M., Sawayama E., Saito T., Yoshitake K., Saka D., Ineno T., and Matsubara T., 2021, Chromosome-scale genome assembly and transcriptome assembly of Kawakawa Euthynnus affinis: a tuna-like species, Frontiers in Genetics, 12: 739781. Ito S., Liu S., Alabia I., Tian Y., Cheng J., and Liu Y., 2022, Development of a prey-predator species distribution model for a large piscivorous fish: a case study for Japanese Spanish mackerel Scomberomorus niphonius and Japanese anchovy Engraulis japonicus, Deep Sea Research Part II: Topical Studies in Oceanography, 207: 105227. https://doi.org/10.1016/j.dsr2.2022.105227 Jeena N.S., Rahuman S., Roul S.K., Azeez P.A., Vinothkumar R., Manas H.M., Nesnas E.A., Rathinam A.M.M., Surya S., Rohit P., Abdussamad E.M., 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 Jiang T., Ye Z., Yang J., Pan X., Xu B., and Tian Y., 2020, Population connectivity in a highly migratory fish, Japanese Spanish mackerel (Scomberomorus niphonius), along the Chinese coast: implications from otolith chemistry, Fisheries Research, 231: 105690. https://doi.org/10.1016/j.fishres.2020.105690 Joy L., Basheer V., Ravi C., Paulose S., Singh R., Lal K., Divya P., Mohindra V., and Kumar R., 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 M., Osuka K., Ito S., Lu Q., Mondal S., and Ray A., 2024, Nonunidirectional habitat changes associated with global climate change: the example of the Indo-Pacific king mackerel (Scomberomorus guttatus) in the Taiwan Strait, Fisheries Oceanography, 34(3): e12718. https://doi.org/10.1111/fog.12718 Lee Y.H., Abueg L., Kim J.K., Kim Y.W., Fedrigo O., Balacco J., and Kim H., 2023, Chromosome-level genome assembly of chub mackerel (Scomber japonicus) from the Indo-Pacific Ocean, Scientific Data, 10(1): 880. Li A., Liu S., and Yang J., 2025, Structural characteristics of mitochondrial genomes of two species of mackerel and phylogenetic analysis of Scombridae family, Biomolecules, 15(4): 555. https://doi.org/10.3390/biom15040555 Liu S., Gao Y., Long X., Li K., Gutang Q., Xie H., Wang J., Tian J., Liang B., Lin J., and Liu W., 2025, A possible more precise management unit delineation based on epigenomic differentiation of a long-distance-migratory marine fish Scomberomorus niphonius, Molecular Ecology Resources, 25(6): e14103. Machado A.M., Gomes-dos-Santos A., Fonseca M.M., da Fonseca R.R., Veríssimo A., Felício M., Capela R., Alves N., Santos M., Salvador-Caramelo F., Domingues M., Ruivo R., Froufe E., and Castro L.F.C., 2022, A genome assembly of the Atlantic chub mackerel (Scomber colias): a valuable teleost fishing resource, GigaByte, 2022: gigabyte40. https://doi.org/10.1101/2021.11.19.468211 Muko S., Yoda M., Kurota H., and Ohshimo S., 2021, Fluctuations in distribution and relative abundance of Japanese Spanish mackerel Scomberomorus niphonius in the Yellow Sea, East China Sea and Sea of Japan, Regional Studies in Marine Science, 48: 102057. https://doi.org/10.1016/j.rsma.2021.102057 Nesnas E., Azeez P., Abdussamad E., Jeena N., Rahuman S., Manas H., Gopalakrishnan A., Surya S., Rohit P., Roul S., Rathinam A., and Vinothkumar R., 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 Noegroho T., 2020, Fishery characteristics of Indo-Pacific king mackerel (Scomberomorus guttatus) in Riau Islands waters (IFMA 711), Indonesia, AACL Bioflux, 13(2): 1179-1189. Rothman S., Goren M., and Diamant A., 2022, Under the radar: co-introduced monogeneans (Polyopisthocotylea: Gastrocotylinea) of the invasive fish Scomberomorus commerson in the Mediterranean Sea, Parasitology Research, 121: 2275-2293. https://doi.org/10.1007/s00436-022-07560-1 Santana F., Lessa R., Resende A., and Duponchelle F., 2024, Effects of fishing on the Serra Spanish mackerel (Scomberomorus brasiliensis) in Northeast Brazil, Fisheries Management and Ecology, 31(3): e12688. https://doi.org/10.1111/fme.12688 Segovia N.I., Coral-Santacruz D., and Haye P.A., 2024, Genetic homogeneity and weak signatures of local adaptation in the marine mussel Mytilus chilensis, Scientific Reports, 14(1): 21081. Shang Y., Heino M., Sun R., Tian Y., and Sun P., 2022, The effects of selective harvest on Japanese Spanish mackerel (Scomberomorus niphonius) phenotypic evolution, Frontiers in Ecology and Evolution, 10: 844693. https://doi.org/10.3389/fevo.2022.844693 Sui H., Li Y., Xue Y., Zhang C., Xu B., and Ren Y., 2021, Feeding ecology of Japanese Spanish mackerel (Scomberomorus niphonius) along the eastern coastal waters of China, Acta Oceanologica Sinica, 40: 98-107. https://doi.org/10.1007/s13131-021-1796-0

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