Climate change alters social-ecological trade-offs in achieving ocean futures' targets
- PMID: 39082863
- DOI: 10.1111/gcb.17442
Climate change alters social-ecological trade-offs in achieving ocean futures' targets
Abstract
The effects of climate change on marine ecosystems are causing cascading impacts on livelihood, food security, and culture through fisheries. Such impacts interact and exacerbate the effects of overfishing on marine social-ecological systems, complicating the rebuilding of ecosystems to achieve desirable and sustainable ocean futures. Developing effective pathways for ecosystem rebuilding requires consideration of the co-benefits and trade-offs between ecological and social dimensions and between fishing sectors. However, the effects of intensifying climate change on such co-benefits or trade-offs are yet to be well understood, particularly in regions where ecosystem rebuilding is urgently needed. We applied a numerical optimization routine to define the scope for improvement toward the Pareto-frontier for ecological robustness and economic benefits of the northern South China Sea (NSCS) and the East China Sea (ECS) ecosystems. These two ecosystems were used to represent over-exploited low- and mid-latitude systems, respectively, and the optimization aimed to improve their status through fisheries management. We find that the ECS ecosystem has the possibility of increasing the economic benefits generated by the fisheries it supports under climate change by 2050 while increasing the uncertainty of achieving biodiversity objectives. Nevertheless, climate change is projected to reduce the scope to restore ecosystem structures and the potential economic benefits in the NSCS ecosystem. This study highlights the contrasting impacts of climate change on the co-benefits/trade-offs in ecosystem rebuilding and the benefits obtainable by different fishing sectors even in neighboring ecosystems. We conclude that consideration at the nexus of climate-biodiversity-fisheries is a key to developing effective ecosystem rebuilding plan.
Keywords: ECS ecosystem; NSCS ecosystem; climate change; fishery resources; trade‐offs.
© 2024 The Author(s). Global Change Biology published by John Wiley & Sons Ltd.
References
REFERENCES
-
- Ainsworth, C. H., & Pitcher, T. J. (2006). Modifying Kempton's species diversity index for use with ecosystem simulation models. Ecological Indicators, 6(3), 623–630.
-
- Ainsworth, C. H., Samhouri, J. F., Busch, D. S., Cheung, W. W. L., Dunne, J., & Okey, T. A. (2011). Potential impacts of climate change on Northeast Pacific marine foodwebs and fisheries. ICES Journal of Marine Science, 68(6), 1217–1229. https://doi.org/10.1093/icesjms/fsr043
-
- Alidoost Salimi, P., Creed, J. C., Esch, M. M., Fenner, D., Jaafar, Z., Levesque, J. C., Montgomery, A. D., Salimi, M. A., Edward, J. K. P., Raj, K. D., & Sweet, M. (2021). A review of the diversity and impact of invasive non‐native species in tropical marine ecosystems. Marine Biodiversity Records, 14(1), 11.
-
- Alava, J. J., Cheung, W. W., Ross, P. S., & Sumaila, U. R. (2017). Climate change‐contaminant interactions in marine food webs: Toward a conceptual framework. Global Change Biology, 23(10), 1–18.
-
- Bell, J. D., Ganachaud, A., Gehrke, P. C., Griffiths, S. P., Hobday, A. J., Hoegh‐Guldberg, O., Johnson, J. E., Le Borgne, R., Lehodey, P., Lough, J. M., Matear, R. J., Pickering, T. D., Pratchett, M. S., Gupta, A. S., Senina, I., & Waycott, M. (2013). Mixed responses of tropical Pacific fisheries and aquaculture to climate change. Nature Climate Change, 3(6), 591–599.
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