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Sustainable Marine Management Implementation

Summary of the impact

Based on biogenic reef research at Heriot-Watt University (HWU), nine Marine Protected Areas (MPAs) have been designated and established in the Northeast Atlantic, Caribbean and Eastern Pacific, and a further six are under consideration. These MPAs represent 10% of the Caribbean Sea area, 6% of the UK's inshore Special Areas of Conservation (SAC) and 18% of the MPAs under consideration in Scotland. In addition, our ecological assessments of the biodiversity value and structure of biogenic habitats, and their sensitivities to widespread stressors, stakeholder conflict assessment and economic assessments have underpinned the objectives, management measures and assessment of MPAs, and other marine spatial planning initiatives, undertaken in the context of both the current marine environmental conditions and future climate change trajectories.

Submitting Institution

Heriot-Watt University

Unit of Assessment

Earth Systems and Environmental Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Environmental Sciences: Environmental Science and Management
Biological Sciences: Ecology, Other Biological Sciences

Informing sustainable management of the deep-sea

Summary of the impact

This case study highlights the research at Plymouth University evidencing the problems of deep sea fishing in European waters. Working with policy makers, NEAFC, GOs, NGOs, and industry the researchers have contributed to solutions to deep-sea management problems across Europe. They have developed new techniques for habitat mapping which, coupled with human use data, has helped establish large offshore Marine Protected Areas (MPAs) that have minimized the effects of displacement on the industry while providing key refuges for ecosystem recovery and conservation.

Submitting Institution

Plymouth University

Unit of Assessment

Earth Systems and Environmental Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Earth Sciences: Oceanography
Environmental Sciences: Environmental Science and Management
Biological Sciences: Ecology

BIO11 - Developing the rationale for landscape-scale conservation

Summary of the impact

York research on the responses of species to habitat fragmentation has led to a paradigm shift in the approach to conservation that has permeated non-governmental organisations (NGOs), governmental agencies and intergovernmental bodies; the traditional concept of protecting and managing populations of species in isolated reserves has largely been replaced by landscape-scale conservation strategies, which increase the long-term survival of species. This new approach is now accepted government policy and has altered practical land designation and management for conservation over millions of hectares in the UK, as well as affecting the strategies adopted by most global conservation organisations and countries in the world.

Submitting Institution

University of York

Unit of Assessment

Biological Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Environmental Sciences: Environmental Science and Management
Biological Sciences: Ecology, Genetics

Quantification of ecosystem effects of fishing underpins the policy and practice of government, industry and retailers in relation to sustainable fisheries

Summary of the impact

Bangor Research since 1998 has pioneered, through experimental, comparative and modelling studies and industry collaborations, quantification of the wider ecosystem effects of fishing, specifically on seabed habitats. Novel findings gave policy and economic benefits to the fishing industry and led to the sustainable, continued profitable development of the UK's largest blue mussel fishery and Isle of Man scallop fishery, with a combined value of £22M. It directly led to Marine Stewardship Council (MSC) certification of these fisheries and underpinned certification of dozens of other demersal fisheries. Additionally, the research has influenced UK retailer policies on sustainable fish sourcing, providing direct environmental and commercial benefits and improving public knowledge and sustainable consumption.

Submitting Institutions

Bangor University,Aberystwyth University

Unit of Assessment

Earth Systems and Environmental Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Environmental Sciences: Environmental Science and Management
Biological Sciences: Ecology
Agricultural and Veterinary Sciences: Fisheries Sciences

BIO14 - The control of invasive alien species

Summary of the impact

York research developed the essential common ground of our understanding of invasive alien species, highlighting their effects on biodiversity and their economic costs. The conceptual frameworks developed at York underpin all subsequent policies and practical strategies in 2008-2013, including the Convention on Biological Diversity (CBD), whose 193 signatory countries are legally bound to "prevent the introduction of, control or eradicate those alien species which threaten ecosystems, habitats or species". UK and international policies and strategies to prevent new introductions and control established aliens stem directly from York research.

Submitting Institution

University of York

Unit of Assessment

Biological Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Mathematical Sciences: Statistics
Environmental Sciences: Environmental Science and Management
Biological Sciences: Ecology

Molecular Ecology and Conservation

Summary of the impact

Since 2008, the School of Environment & Life Sciences at the University of Salford has expanded its research in the field of population and conservation genetics, focusing on the application of molecular genetics and evolutionary theory on supporting the management of exploited living resources and conservation of endangered species and ecosystems.
Molecular Ecology and Conservation demonstrates the following impact:

  • Improving mechanisms for seafood authenticity and traceability, the identification of stocks and providing advice on their management;
  • Supporting the conservation of endangered boreal species and endangered amphibians:

Increasing consumer awareness of the environmental implications of food choices, improving consumer confidence and food management policy, supporting environmental management and biodiversity, and guiding international conservation policy and management processes.

Submitting Institution

University of Salford

Unit of Assessment

Biological Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Environmental Sciences: Environmental Science and Management
Agricultural and Veterinary Sciences: Fisheries Sciences

Global Sea Turtle Conservation

Summary of the impact

Research on the status, distribution and ecology of sea turtles at the University of Exeter has driven national and international conservation policy, engaged millions of people worldwide and raised substantial funding for conservation. Governments including the UK, Cayman Islands, Cyprus and Gabon have used this research in making legislation and multi-million pound management decisions. Development of open-access animal tracking tools has facilitated a global network of over 135 countries, with more than 300 projects tracking thousands of animals from 118 species. The ability to adopt tracked animals online has attracted millions of visitors and raised funding for conservation projects world-wide.

Submitting Institution

University of Exeter

Unit of Assessment

Biological Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Environmental Sciences: Environmental Science and Management
Biological Sciences: Ecology
Agricultural and Veterinary Sciences: Fisheries Sciences

The use of citizen science in recording wildlife: ladybirds and invasive alien species

Summary of the impact

We set up one of Britain's first online recording projects (www.harlequin-survey.org) to track the spread and study the effects of an invasive alien species (IAS), the harlequin ladybird. We used this as a model to develop a recording programme for other IAS (www.nonnativespecies.org/recording/). The main areas of impact are: (i) Informing conservation policy through collecting and analysing wildlife data (e.g. GB non-natives surveillance and monitoring system stemmed from our work; long-term trends data used to address Convention on Biological Diversity targets); (ii) Utilizing `citizen science' and (iii) Changing public attitudes to IAS (e.g. by engaging the public, changing the way that IAS are recorded; educating and training the public).

Submitting Institution

Anglia Ruskin University

Unit of Assessment

Geography, Environmental Studies and Archaeology

Summary Impact Type

Environmental

Research Subject Area(s)

Environmental Sciences: Environmental Science and Management
Biological Sciences: Other Biological Sciences

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