Global mangrove distribution on the open coast is controlled by waves

Abstract Mangrove forests are ecologically important ecosystems that provide services such as coastal protection 1 and climate change mitigation 2 . Understanding why mangroves are present at a location can provide causal links for mangrove management, restoration science 3 and climate change adaptation. On the open coast, the influence of waves in shaping mangrove distribution is poorly understood. Here we show that waves are a key control on global coastal mangrove distribution. We developed a process-driven mangrove presence or absence model to assess 20 years of open-source hindcast wave data including three swell partitions at 400 globally distributed coastal sites. By defining and identifying windows of opportunity for mangrove establishment in cases for which wave forcing is low, the mechanistic model achieved 78.2% accuracy. Modest increases or decreases in wave forcing affect the suitability of mangrove sites, demonstrating that future region-specific changes to wave climate may lead to distributional shifts along the coast. Waves are a primary control on open-coast mangroves globally and this knowledge is essential to predict current and future mangrove distributions in a changing climate.

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Publication Details

Journal
Nature
Published
2026-09-30
DOI
https://doi.org/10.1038/s41586-026-11089-z
Primary Topic
Coastal wetland ecosystem dynamics
Type
article
Field-Weighted Citation Impact
0.00
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article

Global mangrove distribution on the open coast is controlled by waves

Daniel A. Friess, Andrew P. Dansie, S Wells, Will Glamore et al.
Nature
Coastal wetland ecosystem dynamics
article

Global mangrove distribution on the open coast is controlled by waves

Daniel A. Friess, Andrew P. Dansie, S Wells, Will Glamore, Bradley Henderson, Thorsten Balke
article en

Abstract

Abstract Mangrove forests are ecologically important ecosystems that provide services such as coastal protection 1 and climate change mitigation 2 . Understanding why mangroves are present at a location can provide causal links for mangrove management, restoration science 3 and climate change adaptation. On the open coast, the influence of waves in shaping mangrove distribution is poorly understood. Here we show that waves are a key control on global coastal mangrove distribution. We developed a process-driven mangrove presence or absence model to assess 20 years of open-source hindcast wave data including three swell partitions at 400 globally distributed coastal sites. By defining and identifying windows of opportunity for mangrove establishment in cases for which wave forcing is low, the mechanistic model achieved 78.2% accuracy. Modest increases or decreases in wave forcing affect the suitability of mangrove sites, demonstrating that future region-specific changes to wave climate may lead to distributional shifts along the coast. Waves are a primary control on open-coast mangroves globally and this knowledge is essential to predict current and future mangrove distributions in a changing climate.

Nature
Tulane University (US), Carl von Ossietzky Universität Oldenburg (DE), Sydney Water (AU), UNSW Sydney (AU), Institute for Chemistry and Biology of the Marine Environment (DE)
Life below water
Openalex Percentile: Top 78%
Coastal wetland ecosystem dynamics
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