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  1. 1
    Corals Face Existential Threat as Super El Niño Heats Oceans●Corals Face an Existential Threat as the Super El Niño Heats Up✉newsEnvironmentOceans11 min ago

    Conservation groups warn that the strong El Niño event is pushing ocean temperatures to levels that threaten coral reefs worldwide, with warming waters causing mass bleaching that corals may not survive. Environmental commentators describe the situation as an existential threat to reef ecosystems, which support roughly a quarter of marine life and protect coastlines.

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    Two million tyres dumped to build a reef became an ecological disaster●On a site the size of 27 football fields, 2 million of these were dropped in the ocean to create an artificial reef – instead, it became a disaster✉newsEnvironmentOceans11 min ago

    A failed artificial reef project saw around two million tyres dumped across an underwater area the size of 27 football fields, in the hope of attracting marine life. Instead, the tyres shifted in currents, crushed coral and scattered across the seabed, damaging the surrounding ecosystem. The story is being highlighted as a cautionary tale about large-scale ocean interventions gone wrong.

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    US reef robot finds coral pillar with 25 times more fish▼In 2026, a US reef robot found one coral pillar hiding nearly 25 times more fish and followed reef sounds✉newsTechnologyRobotics4 h ago

    A US underwater robot has located a coral pillar hiding nearly 25 times more fish than surrounding reef, using reef sounds to navigate and identify hotspots. The 2026 finding suggests acoustic monitoring could transform how scientists survey reefs and prioritize conservation of dense fish habitats.

  4. 4
    Bacteria on coral reef fish gills carry chemosynthesis genes, DNA study finds●DNA reveals chemosynthesis genes in bacteria living on coral reef fish gills✉newsEnvironmentOceans2 h ago

    Scientists have found that bacteria living on the gills of coral reef fish carry genes for chemosynthesis, the process of making food from chemicals rather than sunlight. The discovery, reported by Phys.org, suggests gill-dwelling microbes may play a previously overlooked role in reef nutrient cycles and could reshape how researchers understand symbiosis on coral reefs.