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  4. Heterotrophy in marine animal forests in an era of climate change
 
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Heterotrophy in marine animal forests in an era of climate change

Journal
Biological Reviews
Date Issued
2024-01-01
Author(s)
VIANNEY DENIS  
Ferrier-Pagès, Christine
Schubert, Nadine
Coppari, Martina
Baker, David M.
Camp, Emma F.
Gori, Andrea
Grottoli, Andréa G.
Houlbrèque, Fanny
Maier, Sandra R.
Mancinelli, Giorgio
Martinez, Stephane
Yalçın Özdilek, Şükran
Radice, Veronica Z.
Ribes, Marta
Richter, Claudio
Viladrich, Nuria
Rossi, Sergio
DOI
10.1111/brv.13053
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/639974
URL
https://api.elsevier.com/content/abstract/scopus_id/85183933709
Abstract
Marine animal forests (MAFs) are benthic ecosystems characterised by biogenic three-dimensional structures formed by suspension feeders such as corals, gorgonians, sponges and bivalves. They comprise highly diversified communities among the most productive in the world's oceans. However, MAFs are in decline due to global and local stressors that threaten the survival and growth of their foundational species and associated biodiversity. Innovative and scalable interventions are needed to address the degradation of MAFs and increase their resilience under global change. Surprisingly, few studies have considered trophic interactions and heterotrophic feeding of MAF suspension feeders as an integral component of MAF conservation. Yet, trophic interactions are important for nutrient cycling, energy flow within the food web, biodiversity, carbon sequestration, and MAF stability. This comprehensive review describes trophic interactions at all levels of ecological organisation in tropical, temperate, and cold-water MAFs. It examines the strengths and weaknesses of available tools for estimating the heterotrophic capacities of the foundational species in MAFs. It then discusses the threats that climate change poses to heterotrophic processes. Finally, it presents strategies for improving trophic interactions and heterotrophy, which can help to maintain the health and resilience of MAFs.
Subjects
Anthropocene | benthic suspension feeders | conservation | ecosystem interactions | filter-feeders | ocean warming | restoration | trophic interactions
Type
journal article

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