Acknowledgement
We thank the Africa Center of Excellence for Water Management (ACEWM), Addis Ababa University for the financial support and guidance throughout the study period. The Ministry of Agriculture, Animal Industry and Fisheries for the logistical support, and the field team for the team spirit exhibited during data collection and sampling. Additionally, the Ministry of Water and Environment for the recorded data and water laboratory, and Makerere University for botany laboratory and sitting space.
References
- Ahmed M, Obaidur Rahaman M, Rahman M, Kashem MA. Analyzing the quality of water and predicting the suitability for fish farming based on IoT in the context of Bangladesh. In: Proceedings of the 2019 International Conference on Sustainable Technologies for Industry 4.0 (STI); 2019; Dhaka, Bangladesh.
- Andama M, Ongom R, Lukubye B. Proliferation of Salvinia molesta at Lake Kyoga landing sites as a result of anthropogenic influences. J Geosci Environ Prot. 2017;5:160-73.
- Anderson JL, Asche F, Garlock T, Chu J. Aquaculture: its role in the future of food. In: Schmitz A, Kennedy PL, Schmitz TG, editors. World agricultural resources and food security. Bingley: Emerald; 2017. p. 159-73.
- Asmare E. Current trend of water hyacinth expansion and its consequence on the fisheries around North eastern part of Lake Tana, Ethiopia. J Biodivers Endanger Species. 2017;5:189.
- Aura CM, Nyamweya CS, Njiru JM, Musa S, Ogari Z, May L, et al. Exploring the demarcation requirements of fish breeding and nursery sites to balance the exploitation, management and conservation needs of Lake Victoria ecosystem. Fish Manag Ecol. 2018;26:451-9.
- Bridgewater L, American Public Health Association, American Water Works Association, Water Environment Federation. Standard methods for the examination of water and wastewater. 22nd ed. Washington, DC: American Public Health Association; 2012.
- Chapman LJ, Chapman CA, Nordlie FG, Rosenberger AE. Physiological refugia: swamps, hypoxia tolerance and maintenance of fish diversity in the Lake Victoria region. Comp Biochem Physiol Part A Mol Integr Physiol. 2002;133:421-37. https://doi.org/10.1016/S1095-6433(02)00195-2
- Chen Y, Qu X, Xiong F, Lu Y, Wang L, Hughes RM. Challenges to saving China's freshwater biodiversity: fishery exploitation and landscape pressures. Ambio. 2020;49:926-38. https://doi.org/10.1007/s13280-019-01246-2
- Cohen A. Anthropogenic threats, impacts and conservation strategies in the African Great Lakes: a review [Internet]. 1994 [cited 2023 Feb 16]. http://www.malawifisheries.org/handle/20.500.12364/1020
- Cornelissen IJM, van Zwieten PAM, Peter HK, Nagelkerke LAJ. Nile perch distribution in South-East Lake Victoria is more strongly driven by abiotic factors, than by prey densities. Hydrobiologia. 2015;755:239-55. https://doi.org/10.1007/s10750-015-2237-x
- Cowx IG, Ogutu-Owhayo R. Towards sustainable fisheries and aquaculture management in the African Great Lakes. Fish Manag Ecol. 2019;26:397-405. https://doi.org/10.1111/fme.12391
- Food and Agriculture Organization of the United Nations [FAO]. The state of world fisheries and aquaculture 2022: towards blue transformation. Rome: FAO; 2022.
- Goudswaard PC, Katunzi EFB, Wanink JH, Witte F. Distribution of Nile perch Lates niloticus in southern Lake Victoria is determined by depth and dissolved oxygen concentrations. Afr J Aquat Sci. 2011;36:147-53. https://doi.org/10.2989/16085914.2011.589112
- Green J. The Kyoga catchment. In: Dumont HJ, editor. The Nile: origin, environments, limnology and human use. Dordrecht: Springer; 2009. p. 205-14.
- Hughes NF. Growth and reproduction of the Nile perch, Lates niloticus, an introduced predator, in the Nyanza gulf, Lake Victoria, East Africa. Environ Biol Fishes. 1992;33:299-305. https://doi.org/10.1007/BF00005874
- Kahwa D. Gametogenesis, gonadal recrudescence, restraint and spawning patterns in Nile perch, Lates niloticus (Linnaeus, 1758) [Ph.D. dissertation]. Makhanda: Rhodes University;2013.
- Lake Victoria Fisheries Organization [LVFO]. Harmonized guidelines for establishment and management of fish breeding and nursery areas in Lake Victoria. Jinja: Lake Victoria Organization; 2018. p. 14.
- Manyala JO, Bolo JZ, Onyango S, Rambiri PO. Indigenous knowledge and baseline data survey on fish breeding areas and seasons in Lake Victoria-Kenya. In: Mallya GA, Katagira FF, Kang'oha G, Mbwana SB, Katunzi EF, Wambede JT, et al., editors. Knowledge and experiences gained from managing Lake Victoria Ecosystem. Dar es Salaam: Lake Victoria Environmental Management Project (LVEMP); 2005. p. 529-51.
- Mbabazi D, Ogutu-Ohwayo R, Wandera SB, Kiziito Y. Fish species and trophic diversity of haplochromine cichlids in the Kyoga satellite lakes (Uganda). Afr J Ecol. 2004;42:59-68. https://doi.org/10.1111/j.0141-6707.2004.00492.x
- Muyodi FJ, Mwanuzi FL, Kapiyo R. Environmental quality and fish communities in selected catchments of Lake Victoria. Open Environ Eng J. 2011;4:54-65. https://doi.org/10.2174/1874829501104010054
- Nagelkerken I, van der Velde G, Gorissen MW, Meijer GJ, Van't Hof T, den Hartog C. Importance of mangroves, seagrass beds and the shallow coral reef as a nursery for important coral reef fishes, using a visual census technique. Estuar Coast Shelf Sci. 2000;51:31-44. https://doi.org/10.1006/ecss.2000.0617
- Njiru M, Ojuok JE, Okeyo-Owuor JB, Muchiri M, Ntiba MJ, Cowx IG. Some biological aspects and life history strategies of Nile tilapia Oreochromis niloticus (L.) in Lake Victoria, Kenya. Afr J Ecol. 2006;44:30-7. https://doi.org/10.1111/j.1365-2028.2006.00610.x
- Nkalubo W, Balirwa J, Bassa S, Muhumuza E, Nsega M, Mangeni R. Fish breeding areas as a management tool for fisheries resources in Lake Victoria, East Africa. Afr J Trop Hydrobiol Fish. 2018;16:1-9.
- Obubu JP, Mengistou S, Fetahi T, Alamirew T, Odong R, Ekwacu S. Recent climate change in the Lake Kyoga basin, Uganda: an analysis using short-term and long-term data with standardized precipitation and anomaly indexes. Climate. 2021a;9:179.
- Obubu JP, Mengistou S, Odong R, Fetahi T, Alamirew T. Determination of the connectedness of land use, land cover change to water quality status of a shallow lake: a case of Lake Kyoga basin, Uganda. Sustainability. 2021b;14:372.
- Ochumba PBO, Many Ala JO. Distribution of fishes along the Sondu-Miriu river of Lake Victoria, Kenya with special reference to upstream migration, biology and yield. Aquac Res. 1992;23:701-19. https://doi.org/10.1111/j.1365-2109.1992.tb00813.x
- Ogutu-Ohwayo R. Reproductive potential of the Nile perch, Lates niloticus L. and the establishment of the species in lakes Kyoga and Victoria (East Africa). Hydrobiologia. 1988;162:193-200. https://doi.org/10.1007/BF00016667
- Ogutu-Ohwayo R. The decline of the native fishes of lakes Victoria and Kyoga (East Africa) and the impact of introduced species, especially the Nile perch, Lates niloticus, and the Nile tilapia, Oreochromis niloticus. Environ Biol Fishes. 1990;27:81-96. https://doi.org/10.1007/BF00001938
- Ogutu-Ohwayo R. Management of the Nile perch, Lates niloticus fishery in lake Victoria in light of the changes in its life history characteristics. Afr J Ecol. 2004;42:306-14. https://doi.org/10.1111/j.1365-2028.2004.00527.x
- Ojwang WO, Ojuok JE, Nyamweya C, Agembe S, Owili M, Yongo E, et al. The intriguing dynamics of Rastrineobola argentea fishery in the Kenyan waters of lake Victoria. Aquat Ecosyst Health Manag. 2014;17:80-9. https://doi.org/10.1080/14634988.2014.879036
- Rana K. Reproductive biology and the hatchery rearing of tilapia eggs and fry. In: Muir JF, Roberts RJ, editors. Recent advances in aquaculture. Dordrecht: Springer; 1988. p. 343-406.
- Rosenfeld JS, Hatfield T. Information needs for assessing critical habitat of freshwater fish. Can J Fish Aquat Sci. 2006;63:683-98. https://doi.org/10.1139/f05-242
- Suzuki FM, Pompeu PS. Influence of abiotic factors on ichthyoplankton occurrence in stretches with and without dams in the upper Grande river basin, south-eastern Brazil. Fish Manag Ecol. 2016;23:99-108. https://doi.org/10.1111/fme.12159
- Wake AA, Geleto TC. Socio-economic importance of fish production and consumption status in Ethiopia: a review. Int J Fish Aquat Stud. 2019;7:206-11.
- Were D, Kansiime F, Fetahi T, Cooper A, Jjuuko C. Carbon sequestration by wetlands: a critical review of enhancement measures for climate change mitigation. Earth Syst Environ. 2019;3:327-40. https://doi.org/10.1007/s41748-019-00094-0
- Witte F, de Graaf M, Mkumbo OC, El-Moghraby AI, Sibbing FA. Fisheries in the Nile system. In: Dumont HJ, editor. The Nile: origin, environments, limnology and human use. Dordrecht: Springer; 2009. p. 723-48.