Haruko Kurihara, Hiroya Yamano, Kohsaku Yokoyama, Sayaka Yasunaka, Nina Yasuda, Chuki Hongo, Masako Nakamura, Teruki Nagamine
Marine heatwaves in 2024 drove record-breaking sea surface temperatures (SSTs) across the Japanese coast, generating the highest Degree Heating Weeks (DHW), which quantifies the accumulation of thermal stress, observed in the past four decades. Here, we quantify thermal stress and coral bleaching responses across a latitudinal gradient spanning subtropical reef systems and non-reef temperate regions (24°-35°N). DHW exceeded 8 °C-weeks at all sites and reached extreme levels of 17-19 °C-weeks at high latitudes. This unprecedented heat stress triggered widespread mass coral bleaching across both subtropical and temperate regions, with bleaching prevalence reaching 55-95% at most temperate sites. Severe bleaching was recorded not only at well-established subtropical reef but also at marginal temperate communities, including the first documented event at Tsushima and consecutive bleaching events at previously unaffected sites. Notably, poleward-expanding Acropora species exhibited near-complete bleaching, demonstrating that recently established high-latitude populations remain highly vulnerable to extreme thermal stress. Bleaching susceptibility in corals was also found to be species- and site-specific. Strikingly, no bleaching was observed at Tateyama despite high DHW, underscoring the importance of local thermal thresholds and environmental context, and highlighting limitations of DHW as a predictor in temperate regions. Our results demonstrate that extreme ocean warming can drive severe and widespread coral bleaching beyond tropical reef boundaries, affecting both endemic and poleward-expanding coral assemblages. These findings challenge the paradigm that temperate regions function as climate refugia and suggest that the pace of ongoing climate change may outstrip the capacity of corals to adapt or shift their distributions.