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    "headline": "Malaria Nuclei Shared One Scarce Clock",
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    "dek": "Live imaging and modeling indicate that parasite nuclei compete for a limiting replication resource, producing rapid asynchronous division.",
    "summary": "Live imaging and modeling indicate that parasite nuclei compete for a limiting replication resource, producing rapid asynchronous division.",
    "body_text": "A Heidelberg-led team tracked Plasmodium falciparum nuclei multiplying out of sync inside one infected blood cell. Their experiments and model indicate the nuclei compete for a shared, limiting protein resource needed for genome replication; changing that supply altered the timing pattern. A companion paper identified a molecular tether that connects each new nucleus to a budding daughter parasite. Together the studies explain organization in a strange division cycle and identify mechanisms for future drug research, not an immediate treatment.",
    "why_it_matters": "Live imaging and modeling indicate that parasite nuclei compete for a limiting replication resource, producing rapid asynchronous division.",
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      "Together the studies explain organization in a strange division cycle and identify mechanisms for future drug research, not an immediate treatment."
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    "tags": [
      "malaria",
      "Plasmodium",
      "cell division",
      "parasites"
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      "source_id": "source-2026-08-02-006",
      "title": "Nature Communications: competitive resource allocation in malaria parasites",
      "publisher": "Nature Communications",
      "url": "https://doi.org/10.1038/s41467-026-75378-x",
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    "title": "Malaria Nuclei Shared One Scarce Clock",
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