IJA_2025v15n4

International Journal of Aquaculture, 2025, Vol.15, No.4, 175-183 http://www.aquapublisher.com/index.php/ija 183 Hayes D., Fricano G., Turek J., Jordaan A., Kulik B., Baker M., and Murray J., 2023, Predicting response of migratory fish populations to dam removal, Aquatic Ecosystem Health and Management, 26: 79-88. https://doi.org/10.14321/aehm.026.01.79 Jan S., Gul S., Iqbal G., and Bhat F., 2023, Risk factors in the natural habitat of fish: a review, Asian Journal of Agricultural Extension Economics and Sociology, 41(9): 691-698. https://doi.org/10.9734/ajaees/2023/v41i92093 Jia X., Jin Z., Mei X., Wang D., Zhu R., Zhang X., Huang Z., Li C., and Zhang X., 2023, Monitoring and effect evaluation of an ecological restoration project using multi-source remote sensing: a case study of Wuliangsuhai watershed in China, Land, 12(2): 349. https://doi.org/10.3390/land12020349 Kumari D., 2022, An overview of potential threats to freshwater ecosystem, Journal of Science and Technology, 4(1): 109-117. https://doi.org/10.46243/jst.2022.v7.i03.pp53-67 Mahoney R.D., Beal J.L., Lewis D.M., and Cook G.S., 2021, Quantifying the response of an estuarine nekton community to coastal wetland habitat restoration, Sustainability, 13(23): 13299. https://doi.org/10.3390/su132313299 Maileht K., Nõges T., Laarmaa R., Lehtpuu M., Sepp M., Luigujõe L., Saar K., Krause T., Metsur M., Raadla K., Võhandu K., Zingel P., Nõges P., and Ott I., 2024, Strategic plan to restore a shallow overgrowing macrophyte lake, Aquatic Ecosystem Health and Management, 26: 66-82. https://doi.org/10.14321/aehm.026.03.66 Napit A., 2024, An updated review on the role of certain physicochemical parameters in regulating fish diversity of tropical aquatic ecosystems, Bioscience Biotechnology Research Communications, 11: 1240813. https://doi.org/10.21786/bbrc/17.4.3 O’Mara K., Venarsky M., Stewart‐Koster B., McGregor G.B., Schulz C., Marshall J., and Bunn S.E., 2024, Hydrological connectivity and environment characteristics explain spatial variation in fish assemblages in a wet–dry tropical river, Hydrobiologia, 851(21): 5207-5221. https://doi.org/10.1007/s10750-024-05676-2 Pfirrmann B.W., and Seitz R.D., 2019, Ecosystem services of restored oyster reefs in a Chesapeake Bay tributary: abundance and foraging of estuarine fishes, Marine Ecology Progress Series, 628: 155-169. https://doi.org/10.3354/MEPS13097 Theis S., Chreston A., Wallace A., Graham B., Coey B., Little D., Cartwright L., Poesch M., Portiss R., and Ruppert J., 2024, Nearshore fish community changes along the Toronto waterfront in accordance with management and restoration goals: insights from two decades of monitoring, Plos One, 19(2): e0298333. https://doi.org/10.1371/journal.pone.0298333 Wan D., Yang J., Liu X., Liu Q., Chen B., Chen Y., Zhao D., and Liu J., 2025, Identifying freshwater wetland suitable habitat through a hydrological-biological connectivity framework: a case study of Naoli River wetlands China, Ecological Indicators, 170: 112993. https://doi.org/10.1016/j.ecolind.2024.112993 Wang Z., Yue W., Wang S., and Zhu Z., 2019, Review the development trend of ecological restoration in international watersheds and its reference significance, Geographical Science Research, 8(2): 221-233. Wang L.T., 2025, From phytoplankton to fish: exploring the trophic levels of aquatic ecosystems, International Journal of Aquaculture, 15(2): 57-66. https://doi.org/10.5376/ija.2025.15.0007 Whiterod N., Brown L., Bachmann M., Farrington L., and Vilizzi L., 2021, Long and lasting: spatial patterns and temporal trends in a fish community responding to landscape-scale hydrological restoration of a coastal freshwater wetland complex, Landscape Ecology, 36: 1511-1532. https://doi.org/10.1007/s10980-021-01219-5 Zhao C., Yang S., Xiang H., Liu C., Zhang H., Yang Z., Zhang Y., Sun Y., Mitrovic S., Yu Q., and Lim R., 2015, Hydrologic and water-quality rehabilitation of environments for suitable fish habitat, Journal of Hydrology, 530: 799-814. https://doi.org/10.1016/J.JHYDROL.2015.10.031

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