Potential yield and food provisioning gains from rebuilding the world's coral reef fish stocks.

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Hauptverfasser: Zamborain-Mason, Jessica, Cinner, Joshua E, MacNeil, M Aaron, Beger, Maria, Booth, David, Ferse, Sebastian C A, Golden, Christopher D, Graham, Nicholas A J, Hoey, Andrew S, Mouillot, David, Connolly, Sean R
Format: Artículo científico
Sprache:en
Veröffentlicht: Proceedings of the National Academy of Sciences of the United States of America 2025
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author Zamborain-Mason, Jessica
Cinner, Joshua E
MacNeil, M Aaron
Beger, Maria
Booth, David
Ferse, Sebastian C A
Golden, Christopher D
Graham, Nicholas A J
Hoey, Andrew S
Mouillot, David
Connolly, Sean R
author_facet Zamborain-Mason, Jessica
Cinner, Joshua E
MacNeil, M Aaron
Beger, Maria
Booth, David
Ferse, Sebastian C A
Golden, Christopher D
Graham, Nicholas A J
Hoey, Andrew S
Mouillot, David
Connolly, Sean R
Zamborain-Mason, Jessica
Cinner, Joshua E
MacNeil, M Aaron
Beger, Maria
Booth, David
Ferse, Sebastian C A
Golden, Christopher D
Graham, Nicholas A J
Hoey, Andrew S
Mouillot, David
Connolly, Sean R
collection PubMed - marine biology
contents Potential yield and food provisioning gains from rebuilding the world's coral reef fish stocks. Zamborain-Mason, Jessica Cinner, Joshua E MacNeil, M Aaron Beger, Maria Booth, David Ferse, Sebastian C A Golden, Christopher D Graham, Nicholas A J Hoey, Andrew S Mouillot, David Connolly, Sean R Coral Reefs Animals Fishes Fisheries Conservation of Natural Resources Biomass Humans Food Supply Seafood Many coral reefs have fish stocks that are depleted below the level at which sustainable production is maximized. Lower production means that millions of people are losing out on potential food, income, and livelihoods. Rebuilding these stocks to maximize sustainable production can contribute toward ending hunger and malnutrition but requires active and effective fisheries management. Yet, for fish stock recovery plans to be implemented, recovery benefits, targets, and timeframes need to be quantified. Here, using 1,211 individual reef sites and 23 jurisdictions identified globally as being below maximum sustainable production levels, we show that reefs have the potential to increase sustainable yields by nearly 50% if allowed to recover toward their maximum production levels. For individual jurisdictions, this recovery represents from 20,000 up to 162 million additional sustainable servings of reef fish per year in comparison to current sustainable production, meeting recommended seafood intake for up to 1.4 million additional people a year. However, such growth and food provisioning will require fish stocks to double their standing biomass (increase by a median of 32 t/km). Recovery timeframes range from 6.4 y under the most stringent scenario (a moratorium) to 49.7 y under the maximum harvest scenario that results in recovery. We find that locations with the greatest potential for sustainable gains in yield are among those with the greatest food and micronutrient deficiencies, underscoring both the challenges and opportunities in recovering fish assemblages to achieve their maximum sustainable potential.
format Artículo científico
id pubmed_41401002
institution PubMed
language en
publishDate 2025
publisher Proceedings of the National Academy of Sciences of the United States of America
record_format pubmed
spellingShingle Potential yield and food provisioning gains from rebuilding the world's coral reef fish stocks.
Zamborain-Mason, Jessica
Cinner, Joshua E
MacNeil, M Aaron
Beger, Maria
Booth, David
Ferse, Sebastian C A
Golden, Christopher D
Graham, Nicholas A J
Hoey, Andrew S
Mouillot, David
Connolly, Sean R
Coral Reefs
Animals
Fishes
Fisheries
Conservation of Natural Resources
Biomass
Humans
Food Supply
Seafood
Potential yield and food provisioning gains from rebuilding the world's coral reef fish stocks. Zamborain-Mason, Jessica Cinner, Joshua E MacNeil, M Aaron Beger, Maria Booth, David Ferse, Sebastian C A Golden, Christopher D Graham, Nicholas A J Hoey, Andrew S Mouillot, David Connolly, Sean R Coral Reefs Animals Fishes Fisheries Conservation of Natural Resources Biomass Humans Food Supply Seafood Many coral reefs have fish stocks that are depleted below the level at which sustainable production is maximized. Lower production means that millions of people are losing out on potential food, income, and livelihoods. Rebuilding these stocks to maximize sustainable production can contribute toward ending hunger and malnutrition but requires active and effective fisheries management. Yet, for fish stock recovery plans to be implemented, recovery benefits, targets, and timeframes need to be quantified. Here, using 1,211 individual reef sites and 23 jurisdictions identified globally as being below maximum sustainable production levels, we show that reefs have the potential to increase sustainable yields by nearly 50% if allowed to recover toward their maximum production levels. For individual jurisdictions, this recovery represents from 20,000 up to 162 million additional sustainable servings of reef fish per year in comparison to current sustainable production, meeting recommended seafood intake for up to 1.4 million additional people a year. However, such growth and food provisioning will require fish stocks to double their standing biomass (increase by a median of 32 t/km). Recovery timeframes range from 6.4 y under the most stringent scenario (a moratorium) to 49.7 y under the maximum harvest scenario that results in recovery. We find that locations with the greatest potential for sustainable gains in yield are among those with the greatest food and micronutrient deficiencies, underscoring both the challenges and opportunities in recovering fish assemblages to achieve their maximum sustainable potential.
title Potential yield and food provisioning gains from rebuilding the world's coral reef fish stocks.
topic Coral Reefs
Animals
Fishes
Fisheries
Conservation of Natural Resources
Biomass
Humans
Food Supply
Seafood
url https://pubmed.ncbi.nlm.nih.gov/41401002/