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Microplastic Ingestion by Copepods in the Banggai Sea, Indonesia
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The Impact of Microplastics on Marine Copepods
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Marine copepods, a foundational link in ocean food webs, ingest microplastics alongside natural prey, causing reduced feeding, reproductive impairment, and energy depletion that can cascade up through fish, seabirds, and marine mammals. Because copepods transfer energy from phytoplankton to higher trophic levels, their contamination with microplastics poses systemic risks to entire marine food chains.
Microplastics ingestion by fish in the Pangandaran Bay, Indonesia
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Researchers examined the digestive tracts of 18 fish from Pangandaran Bay, Indonesia, finding 193 microplastic particles across two species — predominantly fragments (50%) and films (27%) — and providing the first documented evidence of microplastic contamination in fish from that coastal region.
Microplastic concentration in the water column of the Banggai Sea, Central Sulawesi, Indonesia
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Scientists found microplastic pollution isn't just floating on the ocean surface, it's spread throughout the entire water column, from the surface down to the deep sea, in Indonesia's Banggai Sea, with tiny plastic fibers being the most common type found. This matters because these waters support fish and seafood that people eat, meaning plastic contamination at all depths could make its way into our food supply, not just from surface pollution but from deep-sea sources too.
Ecotoxicological Effects of Microplastics in Marine Zooplankton
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Marine zooplankton ingest microplastics, mistaking them for food, which reduces feeding, impairs reproduction, and can transfer particles up the food chain. Because zooplankton form the base of marine food webs, their ecotoxicological responses to microplastics have cascading consequences for ocean ecosystems and human seafood consumers.
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