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Impacts of Climate Change on Marine Foundation Species

基础物种 气候变化 生态学 生物多样性 生态系统 过度捕捞 海洋生态系统 生态系统工程师 栖息地 生态系统服务 盐沼 生物 垂钓
作者
Thomas Wernberg,Mads S. Thomsen,Julia K. Baum,Melanie J. Bishop,John F. Bruno,Melinda A. Coleman,Karen Filbee‐Dexter,Karine Gagnon,Qiang He,Daniel Murdiyarso,Kerrylee Rogers,Brian R. Silliman,Dan A. Smale,Samuel Starko,Mathew A. Vanderklift
出处
期刊:Annual Review of Marine Science [Annual Reviews]
卷期号:16 (1): 247-282 被引量:64
标识
DOI:10.1146/annurev-marine-042023-093037
摘要

Marine foundation species are the biotic basis for many of the world's coastal ecosystems, providing structural habitat, food, and protection for myriad plants and animals as well as many ecosystem services. However, climate change poses a significant threat to foundation species and the ecosystems they support. We review the impacts of climate change on common marine foundation species, including corals, kelps, seagrasses, salt marsh plants, mangroves, and bivalves. It is evident that marine foundation species have already been severely impacted by several climate change drivers, often through interactive effects with other human stressors, such as pollution, overfishing, and coastal development. Despite considerable variation in geographical, environmental, and ecological contexts, direct and indirect effects of gradual warming and subsequent heatwaves have emerged as the most pervasive drivers of observed impact and potent threat across all marine foundation species, but effects from sea level rise, ocean acidification, and increased storminess are expected to increase. Documented impacts include changes in the genetic structures, physiology, abundance, and distribution of the foundation species themselves and changes to their interactions with other species, with flow-on effects to associated communities, biodiversity, and ecosystem functioning. We discuss strategies to support marine foundation species into the Anthropocene, in order to increase their resilience and ensure the persistence of the ecosystem services they provide.
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