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March 3, 2026Nature0 citationsOpen Access

A Cambrian soft-bodied biota after the first Phanerozoic mass extinction

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HZHan ZengQLQi LiuFZFangchen Zhao

Key Points

  • The Huayuan biota displays exceptional taxonomic richness, with 153 species across 16 phyla dominated by arthropods, poriferans, and cnidarians.
  • Nearly 59% of the identified species are new, indicating a significant contribution to our understanding of Cambrian biodiversity.
  • Network analysis uncovers close relationships between the Huayuan and Burgess Shale biotas, hinting at biotic connections across oceans.
  • The findings highlight the ecological transitions following the first Phanerozoic mass extinction, especially contrasting shallow and deep-water ecosystems.

Abstract

Cambrian Burgess Shale-type (BST) fossil biotas document nearly complete snapshots of the oldest Phanerozoic marine ecosystems1-4. However, the rarity of deposits bearing high-diversity BST biotas5 has restricted our understanding of the evolutionary and ecological dynamics of the Cambrian explosion. Here we report the Huayuan biota-a lower Cambrian (Stage 4, approximately 512 million years ago) BST Lagerstätte from an outer shelf, deep-water setting of the Yangtze Block in Hunan, South China. The Huayuan biota yields remarkable taxonomic richness, comprising 153 animal species of 16 phylum-level clades dominated by arthropods, poriferans and cnidarians, among which 59% of species are new. The biota is comprised overwhelmingly of soft-bodied forms that include preserved cellular tissues. The complex ecosystem contained diverse radiodonts and pelagic tunicates, filling a gap of high-diversity BST biotas from the Cambrian Stage 4. Critically, multivariate ordination based on a global dataset of Cambrian BST biotas places the Huayuan biota within a main transition of marine animal ecosystems between Cambrian Age 3 and Age 4. Network analysis reveals close faunal connections between the Huayuan and Burgess Shale biotas, indicating transoceanic dispersal. Dated shortly after the Sinsk event6-8, the Huayuan biota illuminates differences in the impacts of this extinction in shallow- versus deep-water settings during the first Phanerozoic mass extinction and offers critical insights into the transformation of global ecosystems in the early Cambrian.

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Cite This Study

Zeng et al. (2026) studied this question.

synapsesocial.com/papers/69a75d4dc6e9836116a2717ehttps://doi.org/10.1038/s41586-025-10030-0
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