‘Incredibly encouraging’: healing the scars of traditional anchors in Dorset’s seagrass meadows

One of the UK’s most precious underwater habitats – Dorset’s seagrass meadows – is recovering thanks to “eco moorings” designed to prevent the seabed being ripped up, a study has revealed.

Scars caused by traditional anchors in some areas of seagrass in Studland Bay have almost entirely vanished, which is boosting the number of seahorses that thrive in the submerged meadows.

The Studland Bay Marine Partnership, which includes a wide range of organisations including conservationists and boating enthusiasts, hopes the findings could help protect and restore seagrass in other busy marine environments around the UK.

Seagrass meadows are considered one of the world’s most valuable ecosystems because, as well as supporting creatures such as seahorses, they store carbon and help protect coastlines from erosion.

Three corkwing fish swim among tall green seagrass in murky underwater light.
Corkwing fish swimming among the seagrass. Photograph: Pete Lightowler

They are declining globally due to pressures including pollution, coastal development and the climate emergency. The meadows at Studland Bay are particularly at risk because the spot is so popular with leisure boaters.

Research conducted by Kira Dunn, as part of her masters degree at the University of Southampton, analysed data collected since eco-moorings were installed by the partnership in 2021.

In the area where 10 trial eco-moorings were installed five years ago, bare patches in the seagrass shrank by an average of 94% between 2021 and 2025. In a second study area, where traditional chain moorings remained until 2023, the scars reduced by 65%.

Kira Dunn stands in a wetsuit holding a thin rectangular blue object, with the sea behind her.
Kira Dunn: ‘It’s incredibly encouraging to see how quickly this important habitat can regenerate.’ Photograph: Valerie Mather

Dunn said: “The results clearly show that seagrass is recovering in areas where physical disturbance has been removed. It’s incredibly encouraging to see how quickly this important habitat can regenerate when given the opportunity.”

David Brown, the chair of the Studland Bay Marine Partnership steering group and lead ecologist for the National Trust, said: “The impact has been beyond our expectations, and thanks to robust monitoring and research, we have the science to prove how the eco-moorings benefit seagrass and all the species that rely on it.”

A large crab underwater on the seatbed, surrounded by seagrass.
A spider crab in seagrass. Photograph: Jon Bunker

Studland Bay was designated a marine conservation zone in 2019 and is home to one of the UK’s largest seagrass meadows, supporting numerous marine species including the protected spiny seahorse and the occasionally recorded short-snouted seahorse.

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Since eco-moorings were introduced volunteer divers who monitor seahorses have reported increases in numbers. Other creatures spotted in the seagrass include conger eels, spider crabs and corkwing wrasse.

Eco-moorings consist of a 2-metre helical screw, which is drilled securely into the seabed. Attached to this is a 2-metre elasticated riser that connects to a surface buoy. As the tide rises and falls, the riser stretches and retracts, preventing any scouring of the seabed and seagrass.

A boat tied to an eco-mooring at Studland Bay.
A boat tied to an eco-mooring at Studland Bay. Photograph: Brad Wakefield/National Trust

Ken Collins, emeritus research fellow and diving officer at the University of Southampton and supervisor of the study, said: “This research provides robust scientific evidence that eco-moorings are an effective tool for seagrass conservation and restoration.

“The findings support the continued use and expansion of eco-mooring schemes, not only in Studland but in other sensitive marine environments where seagrass habitats are under pressure.”

A conger eel in seagrass.
A conger eel in seagrass. Photograph: The Seahorse Trust