🚨Paper Alert🚨
Marine protected areas #MPAs are increasingly promoted as #ocean-based #solution to #ClimateChange, but their contribution to climate change #adaptation and #mitigation remains contentious. Our meta-analysis of 22,403 papers brings clarity. Link below.
🧵(1/17)
🙈Spoiler alert🙉
#FullyProtected #MPAs can can significantly enhance:
©️ carbon sequestration
🌊 coastal protection
🐟 biodiversity
🐡 reproductive capacity of marine organisms
🎣 fishers’ catch
💰 fishers’ income
🧵(2/17)
We identified the potential “climate pathways” through which #MPAs could contribute to #ClimateChange #mitigation and #adaptation. First along mitigation and adaptation dimensions, and then distinguishing among #ecological and #social dimensions of adaptation.
🧵(3/17)
We then carried out a systematic literature #review and summarized the results of all empirical studies documenting #MPA outcomes on these climate pathways using both vote-counting and a #MetaAnalytical approach.
🧵(4/17)
The systematic literature review on #MPA effects on #climate pathways generated a total of 22,403 publications of which 378 were included in vote counting, providing insights from 241 different #MPAs.
🧵(5/17)
Publications were unevenly distributed among continents, with most #ecological adaptation pathways studied in #Europe and most mitigation and #social adaptation pathways studied in #Asia.
🧵(6/17)
We investigated the effects of conservation on the Carbon (C) #sequestration capacity of 6 marine C sinks: 3 Blue Carbon ecosystems (#mangrove, #TidalMarsh and #seagrass), recognized by @IPCC_CH for C accounting schemes, as well as #sediments, #macroalgae and #fish.
🧵(7/17)
Significant increases in C sequestration were found in preserved or restored #seagrass and #mangrove in comparison to similar areas undergoing human pressures. Similarly, untrawled #sediments sequestered significantly more C than areas exposed to trawling.
🧵(8/17)
Major knowledge gaps remain on how conservation affects #macroalgae living biomass and thus their contribution to C sequestration.
Further research is needed to quantify the exportation rates of organic C from #fish biomass towards #sediments.
🧵(9/17)
#MPAs contribute to #ecological #adaptation by increasing biodiversity levels, reproductive output and coastal protection compared to unprotected sites.
🧵(10/17)
#MPAs had a majority of positive outcomes across all #social #adaptive pathways (except social organization):
🎣#CPUE
💰#income
🧐environmental #awareness
🤝#participation
👩🔧alternative #livelihoods
🧵(11/17)
Across all 4 pathways, only #full and #high levels of protection resulted in #mitigation or #adaptation benefits. In contrast, low levels of protection generated no benefits.
🧵(12/17)
↗️ in species richness and in fishers’ income only occurred for #FullyProtectedAreas, where no fishing is allowed.
↗️ in CPUE also achieved by #HighlyProtectedAreas, where low-impact fishing is allowed only if a #FullyProtectedArea was also present in the #MPA.
🧵(13/17)
Clear signal that #ProtectionLevel should take precedence in #MPA design in stark contrast to current paradigm of ocean protection globally, with proportion of fully and highly protected MPAs plummeting as countries have rushed to meet conservation commitments.
🧵(14/17)
The diverse effects of MPAs on #social #organization and #agency of coastal communities underscore that #governance is a fundamental factor in determining whether #MPAs will enhance or impede social #adaptation.
🧵(15/17)
Our synthesis provides empirical evidence that #MPAs contribute to #ClimateChange #mitigation and #adaptation, particularly when #fully protected, making them a key tool for achieving the goals of the UN Sustainable Development Agenda and the Paris Climate Agreement.
🧵(16/17)
This work is the first chapter of @JJacquemont's PhD, in collaboration with the @ocean_climate platform, and published in @OneEarth_CP. Watch-out for more papers to come on #MPAs.
📖🔗#OpenAccess: doi.org/10.1016/j.onee…
🧵(17/17)
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