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After decades of ocean warming, extreme marine heat waves forced a 100-kilometer range contraction of extensive kelp forests and saw temperate species replaced by seaweeds, invertebrates, corals, and fishes characteristic of subtropical and tropical waters.
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We replicate Wernberg et al.’s spatial–temporal correspondence at the multi-taxon level. Their study used diver surveys across 65 reefs over ~2,000 km in Western Australia (2001–2015). We extend this to all GBIF marine taxa for the same region and years on a shared HEALPix grid with NOAA OISST. Results support a biodiversity-wide regime shift and show that climate and biodiversity data integrate cleanly on a common spherical grid.
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Anne Fouilloux
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Paper annotation: After decades of ocean warming, extreme marine heat waves forced a 100-kilometer range contraction of extensive kelp forests and saw temperate species replaced by seaweeds, invertebrates, corals, and fishes characteristic of subtropical and tropical waters.
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