Widespread Coral Bleaching and Mass Mortality of Reef-Building Corals in Southern Mexican Pacific Reefs Due to 2023 El Niño Warming

Oceans Pub Date : 2024-04-04 DOI:10.3390/oceans5020012
Andrés López-Pérez, R. Granja‐Fernández, E. Ramírez-Chávez, Omar Valencia-Méndez, F. Rodríguez-Zaragoza, Tania González‐Mendoza, Armando Martínez-Castro
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Abstract

In May 2023, oceanic and atmospheric anomalies indicated El Niño conditions in the eastern Pacific, followed by coral bleaching in coral communities and reefs of Huatulco. We conducted surveys and sampled coral reef communities from late June to mid–August of 2023 to evaluate the intensity and extent of the changes associated with the warming event. From January of 2023, Huatulco experienced positive sea surface temperature (SST) anomalies; however, beginning in June, the high-temperature anomalies became extreme (>31 °C; ~2 °C above historical records). These high temperatures resulted in extensive coral bleaching in middle–late June and mortality from middle–late July (>50–93%). In addition, the area experienced significant reductions in echinoderm abundance and fish biomass. In 2023, severe bleaching affected coral systems in the Central Mexican Pacific, Gulf of Mexico, and Mexican Caribbean, making this the most devastating marine heatwave event, simultaneously impacting coral reefs across Mexico’s Pacific and Atlantic coasts.
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2023 年厄尔尼诺变暖导致墨西哥南部太平洋珊瑚礁大面积珊瑚白化和建礁珊瑚大量死亡
2023 年 5 月,海洋和大气异常现象显示东太平洋出现厄尔尼诺现象,随后华图尔科的珊瑚群落和珊瑚礁出现珊瑚白化现象。我们在 2023 年 6 月下旬至 8 月中旬对珊瑚礁群落进行了调查和取样,以评估与气候变暖事件相关的变化强度和范围。从 2023 年 1 月开始,华图尔科的海表温度(SST)出现了正向异常;然而,从 6 月开始,高温异常变得极端(>31 °C;比历史记录高出约 2 °C)。高温导致 6 月中下旬珊瑚大面积白化,7 月中下旬珊瑚死亡(>50-93%)。此外,该地区棘皮动物数量和鱼类生物量也大幅减少。2023 年,墨西哥中部太平洋、墨西哥湾和墨西哥加勒比海的珊瑚系统受到严重白化影响,成为最具破坏性的海洋热浪事件,同时影响到墨西哥太平洋和大西洋沿岸的珊瑚礁。
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Reply to Kahng, S.E. Comment on “Lesser et al. Using Stable Isotope Analyses to Assess the Trophic Ecology of Scleractinian Corals. Oceans 2022, 3, 527–546” Cnida Morphology as Taxonomic Tools within Tube-Dwelling Anemones (Ceriantharia, Cnidaria) Comment on Lesser et al. Using Stable Isotope Analyses to Assess the Trophic Ecology of Scleractinian Corals. Oceans 2022, 3, 527–546 A Comparison between the Production of Edible Macroalgae Worldwide and in the Mediterranean Sea Coupled Meteo–Hydrodynamic Approach in Semi-Enclosed Basins and Sensitivity Assessment of Wind-Driven Current
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