

13 June 2025
The new , launched at the International at ZSL (Zoological Society of London), and published to align with UN Ocean Decade Conference represents two years of work by an international team led by the 探花精选, with support from ZSL and University of Edinburgh.
It delivers the most comprehensive report to date of how coastal habitats in temperate regions function not in isolation, but as interconnected systems - a concept known as ecological connectivity.
鈥淐oastal habitats like oyster reefs, saltmarshes, kelp forests and seagrass meadows are often treated as separate entities in policy and restoration, but in reality, they are tightly bound together by the flows of water, life, and energy,鈥 said lead author Professor Joanne Preston, Institute of Marine Sciences at the 探花精选. 鈥淭o meet our global climate and biodiversity targets, we need to restore the entire seascape.鈥
Published in NPI Ocean Sustainability to coincide with and the mid-point of the, the paper makes the case that reconnecting these habitats is fundamental to repairing the damage caused by centuries of degradation, and to achieving international targets under the Framework,, and thes.
Coastal habitats like oyster reefs, saltmarshes, kelp forests and seagrass meadows are often treated as separate entities in policy and restoration, but in reality, they are tightly bound together by the flows of water, life, and energy.
Professor Joanne Preston, Institute of Marine Sciences at the 探花精选
Dr Philine zu Ermgassen, Changing Oceans Group, University of Edinburgh said, 鈥ecological connectivity allows organisms, nutrients, sediment, and energy to move between different marine habitats. These exchanges drive crucial ecosystem services - from carbon storage to water filtration, coastal protection to fishery productivity.鈥
The research compiles evidence from global temperate regions showing that habitat co-location consistently improves ecosystem service delivery. In California, for example, seagrasses grow more robustly when adjacent to oyster reefs. On the US east coast in the Chesapeake Bay region, oyster beds dramatically increase water clarity and nutrient removal. Additionally, in New Zealand, kelp-derived carbon boosts fish populations in fjords.
鈥淐onnected habitats are more productive, more resilient, and more beneficial to people,鈥 said co-author Alison Debney, Estuaries and Wetlands Programme Lead at ZSL. 鈥淩estoring isolated patches isn鈥檛 enough. We need to think like the sea - fluid, linked, dynamic - and we need to act at scale.鈥
In response, the authors propose a formal definition of seascape restoration: the concurrent or sequential restoration of multiple habitats to rebuild functional, resilient, and connected marine ecosystems.
They call for a shift away from 鈥渇eature-based鈥 conservation approaches toward holistic, connectivity-based planning. This includes updating marine protected area (MPA) frameworks, development policies, and restoration funding criteria to account for the value of ecological links across habitats.
Connected habitats are more productive, more resilient, and more beneficial to people. Restoring isolated patches isn鈥檛 enough. We need to think like the sea - fluid, linked, dynamic - and we need to act at scale.
Alison Debney, Estuaries and Wetlands Programme Lead at ZSL
鈥淲e are at a critical moment,鈥 said Professor Preston. 鈥淭he UN Decade on Ecosystem Restoration and the give us the tools and momentum. But unless we restore the seascape as a whole - the full mosaic of habitats and their connections - we risk missing the targets set by policymakers.鈥
The study outlines clear recommendations to policymakers, including:
- Mainstreaming seascape connectivity into climate and biodiversity policies
- Integrating restoration goals across land-sea interfaces
- Recognising the role of connectivity in climate mitigation and adaptation
- Updating environmental assessments to evaluate ecosystem service delivery at the seascape scale
鈥淲e need to view coastal habitats as interconnected systems,鈥 said co-author Rosalie Wright, Blue Marine Foundation. 鈥淥ur fragmented policy and regulatory approaches must transition to holistic, seascape-scale thinking. Addressing these barriers will enable the urgently needed recovery of our coastlines.鈥
This work directly supports, which calls for at least 30 per cent of degraded coastal and marine ecosystems to be under effective restoration by 2030, specifically enhancing connectivity and ecological function.
The findings come amid growing concern over the collapse of marine habitats in temperate zones. Over the past two centuries, the UK alone has lost up to 95 per cent of its oyster reefs, 90 per cent of its seagrasses, and vast expanses of saltmarsh. These losses jeopardise not only biodiversity but also carbon storage, fish stocks, and coastal protection.
Restoring at scale and in a way that mirrors the ecological realities of the coast offers a powerful nature-based solution to the interlinked crises of climate change, biodiversity loss, and pollution.
As the world gathers momentum around ocean recovery, the message from the science is unequivocal: seascape-scale restoration is not optional. It is essential.
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