IJA_2024v14n4

International Journal of Aquaculture, 2024, Vol.14, No.4, 184-194 http://www.aquapublisher.com/index.php/ija 194 Paraskevopoulou S., Dennis A.B., Weithoff G., Hartmann S., and Tiedemann R., 2019, Within species expressed genetic variability and gene expression response to different temperatures in the rotifer Brachionus calyciflorus sensu stricto, PLoS ONE, 14(9): e0223134. https://doi.org/10.1371/journal.pone.0223134 Roberts W.R., Ruck E.C., Downey K.M., Pinseel E., and Alverson A., 2023, Resolving marine-freshwater transitions by diatoms through a fog of gene tree discordance, Systematic Biology, 72(5): 984-997. https://doi.org/10.1093/sysbio/syad038 Romani F., and Moreno J.F., 2020, Molecular mechanisms involved in functional macroevolution of plant transcription factors, The New Phytologist, 230(4): 1345-1353. https://doi.org/10.1111/nph.17161 Rutschmann S., Detering H., Simon S., Funk D., Gattolliat J., Hughes S., Raposeiro P., DeSalle R., Sartori M., and Monaghan M., 2017, Colonization and diversification of aquatic insects on three Macaronesian archipelagos using 59 nuclear loci derived from a draft genome, Molecular Phylogenetics and Evolution, 107: 27-38. https://doi.org/10.1016/j.ympev.2016.10.007 Storz J.F., Natarajan C., Grouleff M.K., Vandewege M., Hoffmann F.G., You X., Venkatesh B., and Fago A., 2019, Oxygenation properties of hemoglobin and the evolutionary origins of isoform multiplicity in an amphibious air-breathing fish the blue-spotted mudskipper (Boleophthalmus pectinirostris), Journal of Experimental Biology, 223(2): jeb217307. https://doi.org/10.1242/jeb.217307 Tiddy I.C., Schneider K., and Elmer K., 2023, Environmental correlates of adaptive diversification in post-glacial freshwater fishes, Journal of Fish Biology, 104(3): 517-535. https://doi.org/10.1111/jfb.15621 Triant D.E., Nowick K., and Shelest E., 2021, Editorial: gene regulation as a driver of adaptation and speciation, Frontiers in Genetics, 39(11): msac251. https://doi.org/10.3389/fgene.2021.793933 Val P., Lyons N.J., Gasparini N., Willenbring J.K., and Albert J., 2022, Landscape evolution as a diversification driver in freshwater fishes, Frontiers in Ecology and Evolution, 9: 788328. https://doi.org/10.3389/fevo.2021.788328 Velotta J.P., McCormick S., Whitehead A., Durso C.S., and Schultz E.T., 2022, Repeated genetic targets of natural selection underlying adaptation of fishes to changing salinity, Integrative and Comparative Biology, 62(2): 357-375. https://doi.org/10.1093/icb/icac072 Xu G., Yang T., Wang D., Li J., Liu X., Wu X., and Shen H., 2018, A comprehensive comparison of four species of Onchidiidae provides insights on the morphological and molecular adaptations of invertebrates from shallow seas to wetlands, PLoS ONE, 13(4): e0196252. https://doi.org/10.1371/journal.pone.0196252 Yang G., Tian R., Xu S., and Ren W., 2019, Molecular adaptation mechanism of secondary aquatic life in cetaceans, Scientia Sinica Vitae, 49: 380-391. https://doi.org/10.1360/N052018-00211 Ye Z., Damgaard J., Yang H., Hebsgaard M., Weir T., and Bu W., 2020, Phylogeny and diversification of the true water bugs (Insecta: Hemiptera: Heteroptera: Nepomorpha, Cladistics, 36(1): 72-87. https://doi.org/10.1111/cla.12383 Yuan Y., Zhang Y.L., Zhang P.J., Liu C., Wang J., Gao H., Hoelzel A., Seim I., Lv M., Lin M., Dong L., Gao H., Yang Z., Caruso F., Lin W., Fonseca R., Wang D., Wang X., Rasmussen M., Liu M., Zheng J., Zhao L., Campos P., Kang H., Iversen M., Song Y., Guo X., Guo J., Qin Y., Pan S., Xu Q., Meng L., A Y., Liu S., Lee S.H., Liu X., Xu X., Yang H., Fan G., Wang K., and Li S., 2021, Comparative genomics provides insights into the aquatic adaptations of mammals, Proceedings of the National Academy of Sciences of the United States of America, 118(37): e2106080118. https://doi.org/10.1073/pnas.2106080118 Zhou Y., and Mai R.D., 2024 Marine biology under climate change: challenges adaptations and future directions, International Journal of Marine Science, 14(2): 120-129. https://doi.org/10.5376/ijms.2024.14.0015

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