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1.
Nature ; 616(7955): 104-112, 2023 04.
Article in English | MEDLINE | ID: mdl-36813964

ABSTRACT

Blue foods, sourced in aquatic environments, are important for the economies, livelihoods, nutritional security and cultures of people in many nations. They are often nutrient rich1, generate lower emissions and impacts on land and water than many terrestrial meats2, and contribute to the health3, wellbeing and livelihoods of many rural communities4. The Blue Food Assessment recently evaluated nutritional, environmental, economic and justice dimensions of blue foods globally. Here we integrate these findings and translate them into four policy objectives to help realize the contributions that blue foods can make to national food systems around the world: ensuring supplies of critical nutrients, providing healthy alternatives to terrestrial meat, reducing dietary environmental footprints and safeguarding blue food contributions to nutrition, just economies and livelihoods under a changing climate. To account for how context-specific environmental, socio-economic and cultural aspects affect this contribution, we assess the relevance of each policy objective for individual countries, and examine associated co-benefits and trade-offs at national and international scales. We find that in many African and South American nations, facilitating consumption of culturally relevant blue food, especially among nutritionally vulnerable population segments, could address vitamin B12 and omega-3 deficiencies. Meanwhile, in many global North nations, cardiovascular disease rates and large greenhouse gas footprints from ruminant meat intake could be lowered through moderate consumption of seafood with low environmental impact. The analytical framework we provide also identifies countries with high future risk, for whom climate adaptation of blue food systems will be particularly important. Overall the framework helps decision makers to assess the blue food policy objectives most relevant to their geographies, and to compare and contrast the benefits and trade-offs associated with pursuing these objectives.


Subject(s)
Aquatic Organisms , Food Security , Internationality , Seafood , Sustainable Development , Humans , Diet/methods , Diet/statistics & numerical data , Diet/trends , Environment , Meat , Nutritional Status , Internationality/legislation & jurisprudence , Seafood/economics , Seafood/statistics & numerical data , Seafood/supply & distribution , Sustainable Development/economics , Sustainable Development/legislation & jurisprudence , Sustainable Development/trends , Food Security/economics , Food Security/legislation & jurisprudence , Food Security/methods , Climate Change , Health Policy , Environmental Policy , Socioeconomic Factors , Cultural Characteristics , Fatty Acids, Omega-3 , Carbon Footprint , Cardiovascular Diseases/epidemiology
2.
Nature ; 574(7776): 95-98, 2019 10.
Article in English | MEDLINE | ID: mdl-31554969

ABSTRACT

Micronutrient deficiencies account for an estimated one million premature deaths annually, and for some nations can reduce gross domestic product1,2 by up to 11%, highlighting the need for food policies that focus on improving nutrition rather than simply increasing the volume of food produced3. People gain nutrients from a varied diet, although fish-which are a rich source of bioavailable micronutrients that are essential to human health4-are often overlooked. A lack of understanding of the nutrient composition of most fish5 and how nutrient yields vary among fisheries has hindered the policy shifts that are needed to effectively harness the potential of fisheries for food and nutrition security6. Here, using the concentration of 7 nutrients in more than 350 species of marine fish, we estimate how environmental and ecological traits predict nutrient content of marine finfish species. We use this predictive model to quantify the global spatial patterns of the concentrations of nutrients in marine fisheries and compare nutrient yields to the prevalence of micronutrient deficiencies in human populations. We find that species from tropical thermal regimes contain higher concentrations of calcium, iron and zinc; smaller species contain higher concentrations of calcium, iron and omega-3 fatty acids; and species from cold thermal regimes or those with a pelagic feeding pathway contain higher concentrations of omega-3 fatty acids. There is no relationship between nutrient concentrations and total fishery yield, highlighting that the nutrient quality of a fishery is determined by the species composition. For a number of countries in which nutrient intakes are inadequate, nutrients available in marine finfish catches exceed the dietary requirements for populations that live within 100 km of the coast, and a fraction of current landings could be particularly impactful for children under 5 years of age. Our analyses suggest that fish-based food strategies have the potential to substantially contribute to global food and nutrition security.


Subject(s)
Fisheries , Fishes/metabolism , Food Supply , Internationality , Micronutrients/deficiency , Micronutrients/metabolism , Nutritional Status , Animals , Bayes Theorem , Calcium/analysis , Child, Preschool , Dietary Proteins/analysis , Fatty Acids, Omega-3/analysis , Fish Products/analysis , Fish Products/economics , Fisheries/economics , Fishes/classification , Humans , Infant , Iron/analysis , Micronutrients/analysis , Selenium/analysis , Vitamin A/analysis , Zinc/analysis
3.
Environ Manage ; 61(4): 597-614, 2018 04.
Article in English | MEDLINE | ID: mdl-29387947

ABSTRACT

There has been increasing attention to and investment in local environmental stewardship in conservation and environmental management policies and programs globally. Yet environmental stewardship has not received adequate conceptual attention. Establishing a clear definition and comprehensive analytical framework could strengthen our ability to understand the factors that lead to the success or failure of environmental stewardship in different contexts and how to most effectively support and enable local efforts. Here we propose such a definition and framework. First, we define local environmental stewardship as the actions taken by individuals, groups or networks of actors, with various motivations and levels of capacity, to protect, care for or responsibly use the environment in pursuit of environmental and/or social outcomes in diverse social-ecological contexts. Next, drawing from a review of the environmental stewardship, management and governance literatures, we unpack the elements of this definition to develop an analytical framework that can facilitate research on local environmental stewardship. Finally, we discuss potential interventions and leverage points for promoting or supporting local stewardship and future applications of the framework to guide descriptive, evaluative, prescriptive or systematic analysis of environmental stewardship. Further application of this framework in diverse environmental and social contexts is recommended to refine the elements and develop insights that will guide and improve the outcomes of environmental stewardship initiatives and investments. Ultimately, our aim is to raise the profile of environmental stewardship as a valuable and holistic concept for guiding productive and sustained relationships with the environment.


Subject(s)
Conservation of Natural Resources/methods , Cooperative Behavior , Ecology , Environmental Policy , Humans , Investments , Motivation , Research
4.
Mar Pollut Bull ; 85(1): 8-23, 2014 Aug 15.
Article in English | MEDLINE | ID: mdl-24997002

ABSTRACT

Over 1.3 billion people live on tropical coasts, primarily in developing countries. Many depend on adjacent coastal seas for food, and livelihoods. We show how trends in demography and in several local and global anthropogenic stressors are progressively degrading capacity of coastal waters to sustain these people. Far more effective approaches to environmental management are needed if the loss in provision of ecosystem goods and services is to be stemmed. We propose expanded use of marine spatial planning as a framework for more effective, pragmatic management based on ocean zones to accommodate conflicting uses. This would force the holistic, regional-scale reconciliation of food security, livelihoods, and conservation that is needed. Transforming how countries manage coastal resources will require major change in policy and politics, implemented with sufficient flexibility to accommodate societal variations. Achieving this change is a major challenge - one that affects the lives of one fifth of humanity.


Subject(s)
Climate Change , Conservation of Natural Resources , Ecosystem , Animals , Anthozoa , Computer Simulation , Demography , Ecology , Environmental Monitoring/methods , Fisheries , Geography , Humans , Oceans and Seas
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