CLIMATE ADAPTIVE REFORESTATION: EVALUATING INDIGENOUS SPECIES FOR DROUGHT AND FLOOD RESILIENCE
Abstract
Reforestation is a crucial strategy for mitigating climate change, but the effectiveness of this approach is significantly influenced by the selection of tree species, especially in the face of extreme climate events such as droughts and floods. While traditional reforestation often focuses on non-native species, indigenous species offer greater resilience to local climate conditions. This study evaluates the potential of indigenous tree species for reforestation efforts aimed at improving ecosystem stability and enhancing drought and flood resilience. The main objective of this research is to identify indigenous species that exhibit superior adaptive traits for coping with fluctuating water availability in temperate and tropical ecosystems. A mixed-methods approach was used, combining field studies, ecological assessments, and laboratory experiments to analyze species’ growth patterns, survival rates, and physiological responses to water stress. The findings indicate that certain indigenous species, such as Xylia xylocarpa and Acacia mangium, show exceptional resistance to both drought and flood conditions, outperforming non-native species in long-term ecological health and carbon sequestration. The study concludes that integrating indigenous species into reforestation projects is crucial for building climate-resilient landscapes. This research contributes to advancing sustainable forest management practices by promoting species that are naturally suited to the challenges posed by climate change.
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References
Abeysinghe, K. C., Weerarathne, A. G. P. T., Colonne, D. K. C., & Bellanthudawa, B. K. A. (2025). Sustainable development goals (SDGs), climate change, and the development of aquaculture and fisheries industries. Environmental Reviews, 33, 1–24. https://doi.org/10.1139/er-2024-0136
Al-Absi, R., Vethamony, P., Aboobacker, V. M., Rajendran, S., Al-Kuwari, H. A.-S., & Al-Khayat, J. A. (2025). Mangroves in the State of Qatar: Influences and adaptations of climate change. Plant Stress, 18, 100999. https://doi.org/10.1016/j.stress.2025.100999
Anokye, K., & Darko, L. O. (2025). Ecological responses to anthropogenic stress: Restoring degraded landscapes from galamsey activities in Ghana – A review. Cleaner Waste Systems, 12, 100423. https://doi.org/10.1016/j.clwas.2025.100423
Awuni, S., Hájek, M., Riedl, M., Huertas-Bernal, D. C., Purwestri, R. C., Ibrahim, F., Dudik, R., Jumpah, E. T., & Adarkwah, F. (2025). Public perceptions of climate and land use drivers of medicinal plant availability in Czech forests: A national survey-based study. Forest Policy and Economics, 179, 103610. https://doi.org/10.1016/j.forpol.2025.103610
Baral, S., Subedi, S., Ford, R., Rai, R. K., Chhetri, B. B. K., Ojha, S., Tiwari, K. R., Kafle, G., Puri, L., & Rai, D. (2025). Resilience pathways through community- based forest management for navigating the triple planetary crisis. Trees, Forests and People, 22, 100972. https://doi.org/10.1016/j.tfp.2025.100972
Bouramdane, A.-A. (2025). Optimal strategies to combat land degradation amid climate change: Aligned with UNCCD and Kunming-Montreal commitments. Land Use Policy, 157, 107625. https://doi.org/10.1016/j.landusepol.2025.107625
Capa-Mora, D., Medina, J., Benítez, Á., & Jiménez Álvarez, L. (2025). Perspectives on climate change and adaptation and mitigation measures amongst farmers of Zamora ? Ecuador. Climate Services, 38, 100565. https://doi.org/10.1016/j.cliser.2025.100565
Chaiya, C. (2025). Empowering climate resilience: A people-centered exploration of Thailand’s greenhouse gas emissions trading and sustainable environmental development through climate risk management in community forests. Heliyon, 11(2), e41844. https://doi.org/10.1016/j.heliyon.2025.e41844
Chipangamate, N. S., & Nwaila, G. T. (2025). Social innovation, ecological crises and creating mining host community resilience in Southern Africa. The Extractive Industries and Society, 24, 101756. https://doi.org/10.1016/j.exis.2025.101756
Das, S., Dutta, S., Roy, J., Roy Choudhury, M., Sen, P., Chanda, A., Dutta, H., Nandi, S., & Ghosh, T. (2026). Mangroves in the Anthropocene: A global synthesis of carbon storage, biodiversity, and coastal resilience under climate and anthropogenic stressors. Science of The Total Environment, 1015, 181405. https://doi.org/10.1016/j.scitotenv.2026.181405
Datta, U., & Raman, R. (2026). Chapter 9—Climate-responsive urban design: Integrating nature-based solutions in smart cities. In U. Chatterjee & L. Sivaramakrishnan (Eds.), Future Smart Cities (pp. 193–224). Elsevier. https://doi.org/10.1016/B978-0-443-33667-6.00003-3
Efeno Etengola, L. L., Azinwi Tamfuh, P., Mushagalusa, A. B., Ibrahim, A., Mazinga, M. K., Ilonga, S. B., & Wouatong, A. L. S. (2026). Agricultural resilience in west cameroon: Strategies for adapting to the challenges of lateritic soils and climate change. Soil Security, 22, 100220. https://doi.org/10.1016/j.soisec.2025.100220
Gallois, L., Hirtz, E., van den Homberg, M., Sirisena, J., Mozumdar, S., & Cinelli, M. (2026). Multiple criteria-based assessment of Nature-based Solutions for flood management: A systematic review. Science of The Total Environment, 1013, 180948. https://doi.org/10.1016/j.scitotenv.2025.180948
Ghaedi, Z., Santos, C., & Monteiro, C. (2026). Nature-Based solutions, climate change, and biodiversity: A systematic review of opportunities and risks. Nature-Based Solutions, 9, 100302. https://doi.org/10.1016/j.nbsj.2026.100302
Guzman, P. (2025). Cultural heritage in climate planning: An analysis of the Norwegian national climate documents and guidelines. Journal of Cultural Heritage, 74, 35–47. https://doi.org/10.1016/j.culher.2025.05.003
Hernández-Sosa, M., Aguayo, M., Cortés-Torres, N., Stehr, A., Frances, F., & Llompart, O. (2026). Assessing hydrological responses to large-scale native forest restoration as a nature-based solution in South-Central Chile under climate change. Nature-Based Solutions, 9, 100298. https://doi.org/10.1016/j.nbsj.2025.100298
Imran, N. (2025). From hegemony to nature-based solutions: Evolution of Pakistan’s forestry sector. Trees, Forests and People, 20, 100892. https://doi.org/10.1016/j.tfp.2025.100892
Jovanelly, K., Colburn, L., & Guadagno, L. (2026). Challenges and opportunities to tree planting on working landscapes: Insights from New York dairy farmers. Journal of Rural Studies, 121, 103899. https://doi.org/10.1016/j.jrurstud.2025.103899
Kattel, G. R. (2026). Reframing SDGs for Mountain Freshwater Systems in a Changing Climate: Integrating Ecological Niche Shifts into Global Adaptation and Policy Pathways. Sustainable Geosciences: People, Planet and Prosperity, 100013. https://doi.org/10.1016/j.susgeo.2026.100013
Kumi, M. A., Zhan, J., Xu, L., Addae-Wireko, L., Liu, W., Yang, Z., Yeboah, F. K., Yeboah, S., Addae-Wireko, S., & Kyefondeme, D. C. (2025). Harnessing nature: Evaluating cost-effective and globally sustainable solutions for Africa’s environmental resilience. Environmental Impact Assessment Review, 115, 108064. https://doi.org/10.1016/j.eiar.2025.108064
Lwin, K. S., Saluja, R., Mandal, S., & Krittasudthacheewa, C. (2025). Effectiveness of nature-based solutions to address water challenges in the Greater Mekong Subregion: A systematic mapping. Nature-Based Solutions, 8, 100283. https://doi.org/10.1016/j.nbsj.2025.100283
Mallek, M., & Barcelo, D. (2025). Advancing water treatment and reuse technologies to address the nexus of climate change, water scarcity, and pharmaceutical contamination. Journal of Environmental Chemical Engineering, 13(6), 119284. https://doi.org/10.1016/j.jece.2025.119284
Mengistie, B. T., & Ray, R. L. (2026). Global dynamics of climate smart agricultural practices and technologies: Recent advancements, challenges and potential future pathways—A review. Agricultural Systems, 231, 104570. https://doi.org/10.1016/j.agsy.2025.104570
Mohamed, L. H. (2026). Chapter 21—Unlocking nature-based solutions for climate resilience: Mangroves and Somalia’s nationally determined contributions. In P. Droege (Ed.), Urban Energy Transition (Third Edition) (pp. 421–443). Elsevier. https://doi.org/10.1016/B978-0-323-99437-8.00022-2
Munonde, K. D., & Zegeye, E. W. (2026). Evaluating non-timber forest product dependence of peri-urban households in a payment for ecosystem service scheme in durban, South Africa. Trees, Forests and People, 23, 101128. https://doi.org/10.1016/j.tfp.2025.101128
Nandhini, R. S., Lokesh, V., Jolamalini, D., Mugesh, S., Johnson, T., Subbaiya, R., Al-Farraj, S., & Sillanpää, M. (2026). Coastal consequences: Navigating sea level rise and engineering solutions. Ocean & Coastal Management, 272, 108006. https://doi.org/10.1016/j.ocecoaman.2025.108006
Niyomukiza, J. B., Kiwanuka, M., Mutanda, H. E., & Tiboti, P. (2026). Chapter 27—Vegetation for soil stabilization under climate change. In M. N. Vara Prasad, M. Pietrzykowski, & F. C. Nunes (Eds.), Climate Change and Soil Interactions (Second Edition) (pp. 617–632). Elsevier. https://doi.org/10.1016/B978-0-443-40292-0.00035-2
Rahman, A., Fares, A., Choudhury, A., Awal, R., Adem, A. A., & Veettil, A. V. (2026). Integrating climate, water, and ecosystem perspectives: Synthesis of global drought challenges and pathways to adaptations and resilience. In A. Fares (Ed.), Global Drought and Sustainability (pp. 299–330). Elsevier. https://doi.org/10.1016/B978-0-443-44625-2.00015-1
Reyes-Avila, A. D. (2026). Assessment of urban sprawl repercussions on rural greenery and potential environmental conflicts in northeast Tegucigalpa. City and Environment Interactions, 29, 100299. https://doi.org/10.1016/j.cacint.2026.100299
Rida, T. N. (2025). Integrating environmental ethics into climate change adaptation policies in Bangladesh: A narrative review. Climate Risk Management, 50, 100748. https://doi.org/10.1016/j.crm.2025.100748
Schaeffer, R., Schipper, E. L. F., Ospina, D., Mirazo, P., Alencar, A., Anvari, M., Artaxo, P., Biresselioglu, M. E., Blome, T., Boeckmann, M., Brink, E., Broadgate, W., Bustamante, M., Cai, W., Canadell, J. G., Cardinale, R., Chidichimo, M. P., Ditlevsen, P., Eicker, U., … Ziervogel, G. (2025). Ten new insights in climate science 2024. One Earth, 8(6), 101285. https://doi.org/10.1016/j.oneear.2025.101285
Shivaprasad, K. M., Sowmya, M. S., Danakumara, T., Gowda, M. M., Kumar, R., Kumar, S. D., & Kumar, B. S. (2025). Chapter 4—Forest fire and its impact on forest biodiversity. In P. Saikia, A. Kumar, M. L. Khan, & X. Lei (Eds.), Forests for Inclusive and Sustainable Economic Growth (pp. 37–53). Elsevier. https://doi.org/10.1016/B978-0-443-31406-3.00004-7
Stanturf, J. A., Oliet, J. A., & Tsakaldimi, M. (2026). Chapter 2—Terminology of regeneration, reforestation, restoration, and climate adaptation. In J. A. Stanturf, P. V. Salvador, B. Mariotti, V. Iveti?, P. Madsen, A. Montagnoli, E. Andivia, I. Bebre, A. Dimitrova, & M. Klisz (Eds.), Guidelines for Climate Adaptive Forest Restoration and Reforestation Projects (pp. 19–57). Elsevier. https://doi.org/10.1016/B978-0-443-34086-4.00004-9
Tarolli, P., Liu, G., Castelli, G., Bresci, E., Bailly, J.-S., Rizzo, D., Loc, H. H., Sidle, R. C., & Bogaard, T. (2026). Nature-based solutions for soil and water conservation in an era of climate extremes: Limitations and future scenarios. International Soil and Water Conservation Research, 14(2), 100604. https://doi.org/10.1016/j.iswcr.2025.12.004
Vijayaraghavalu, S. S., Arumugam, K., & Dange, S. (2025). Spatio-temporal dynamics of urbanization and environmental sustainability: A predictive modelling approach to forecasting land use transitions in Vellore, India. Results in Engineering, 27, 106572. https://doi.org/10.1016/j.rineng.2025.106572
Wang, L., Wei, F., Tagesson, T., Fang, Z., & Svenning, J.-C. (2025). Transforming forest management through rewilding: Enhancing biodiversity, resilience, and biosphere sustainability under global change. One Earth, 8(3), 101195. https://doi.org/10.1016/j.oneear.2025.101195
Wang, R., Li, C., An, Z., & Chang, S. X. (2026). Climate-smart forestry: Strategies, policies, and technologies for enhancing climate change mitigation and ecosystem sustainability. Climate Smart Agriculture, 3(2), 100110. https://doi.org/10.1016/j.csag.2026.100110
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