Ocean weather, biological rates, and unexplained global ecological patterns

Abstract As on land, oceans exhibit high temporal and spatial temperature variation. This “ocean weather” contributes to the physiological and ecological processes that ultimately determine the patterns of species distribution and abundance, yet is often unrecognized, especially in tropical oceans....

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Veröffentlicht in:PNAS nexus 2024-08, Vol.3 (8), p.pgae260
Hauptverfasser: Li Shing Hiung, Darren L C Y, Schuster, Jasmin M, Duncan, Murray I, Payne, Nicholas L, Helmuth, Brian, Chu, Jackson W F, Baum, Julia K, Brambilla, Viviana, Bruno, John, Davies, Sarah W, Dornelas, Maria, Gagnon, Patrick, Guy-Haim, Tamar, Jackson, Jennifer M, Leichter, James J, Madin, Joshua S, Monteith, Zachary L, Queirós, Ana M, Schneider, Eric V C, Starko, Samuel, Talwar, Brendan S, Wyatt, Alex S J, Aichelman, Hannah E, Bensoussan, Nathaniel, Caruso, Carlo, Castillo, Karl, Choi, Francis, Dong, Yun-Wei, Garrabou, Joaquim, Guillemain, Dorian, Higgs, Nicholas, Jiang, Yuwu, Kersting, Diego K, Kushner, David J, Longo, Guilherme O, Neufeld, Christopher, Peirache, Marion, Smyth, Tim, Sprague, Joshua L, Urvoy, Gaëlle, Zuberer, Frederic, Bates, Amanda E
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Sprache:eng
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Zusammenfassung:Abstract As on land, oceans exhibit high temporal and spatial temperature variation. This “ocean weather” contributes to the physiological and ecological processes that ultimately determine the patterns of species distribution and abundance, yet is often unrecognized, especially in tropical oceans. Here, we tested the paradigm of temperature stability in shallow waters (
ISSN:2752-6542
2752-6542
DOI:10.1093/pnasnexus/pgae260