Professor of Urban Design and Planning Marina Alberti has recently published a paper in Science, and been featured in a UW News story highlighting her work along with a large team of collaborative researchers. UDP PhD Student Anna Malesis-Dahm is another member of this research team who supported the the writing and conceptualization of the article published in Science. UW News featured Professor Alberti’s work in a Q&A piece, available here. The paper, “Evolving nature-based solutions for urban resilience” can…
Person: Anna Malesis
Evolving nature-based solutions for urban resilience
Marina Alberti et al., Evolving nature-based solutions for urban resilience. Science 392, 701-708 (2026). DOI: 10.1126/science.aea9563.
Abstract
Despite growing investments in nature-based solutions for urban resilience, their design often overlooks a fundamental biological process: evolution. Populations of organisms that sustain nature-based solutions are dynamic and can evolve over time. Rapid evolutionary changes, driven by urban environmental stressors, such as pollution, climate extremes, and habitat fragmentation, can reshape species’ traits, alter interactions, and shift ecosystem functions. We synthesize evidence of evolutionary change across systems that serve as nature-based solutions in urban contexts and show how evolutionary processes can enhance or undermine their performance. We propose four testable hypotheses linking evolutionary dynamics to nature-based solutions and outline design strategies to maintain adaptive potential. Integrating evolution into nature-based solutions is essential to ensure long-term and efficient functionality under accelerating environmental change.
Interactions between climate change and urbanization will shape the future of biodiversity
Urban, M.C., Alberti, M., De Meester, L. et al. Interactions between climate change and urbanization will shape the future of biodiversity. Nat. Clim. Chang. (2024). https://doi.org/10.1038/s41558-024-01996-2
Abstract
Climate change and urbanization are two of the most prominent global drivers of biodiversity and ecosystem change. Fully understanding, predicting and mitigating the biological impacts of climate change and urbanization are not possible in isolation, especially given their growing importance in shaping human society. Here we develop an integrated framework for understanding and predicting the joint effects of climate change and urbanization on ecology, evolution and their eco-evolutionary interactions. We review five examples of interactions and then present five hypotheses that offer opportunities for predicting biodiversity and its interaction with human social and cultural systems under future scenarios. We also discuss research opportunities and ways to design resilient landscapes that address both biological and societal concerns.
Anna Malesis
Research Interests: urban eco-evolutionary dynamics, urban complexity, landscape ecology, scenario planning, and nature’s contributions to people/nature-based solutions