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November 13, 2025Science1 citations

Integrative phylogenomics positions sponges at the root of the animal tree

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JSJacob L. SteenwykNKNicole King

Key Points

  • To determine the phylogenetic root of the animal tree between sponges and ctenophores.
  • Constructed large data matrices from sequences of sponges, ctenophores, and other animal relatives.
  • Performed 785 topology tests using integrative phylogenomics.
  • Utilized both concatenation and coalescence in analyses.
  • All 490 significant tests supported the sponge-sister hypothesis.
  • None supported the ctenophore-sister hypothesis.
  • 295 tests yielded inconclusive results.

Abstract

Determining whether sponges or ctenophores root the animal tree has important implications for understanding early animal evolution. Here, we examined support for these competing hypotheses by constructing large and highly informative data matrices containing sequences from sponges, ctenophores, cnidarians, bilaterians, and diverse animal relatives. The new data matrices and 10 published datasets were analyzed in 785 topology tests conducted using integrative phylogenomics, a method that unifies concatenation and coalescence to identify genes with a consistent phylogenetic signal. All 490 statistically significant tests supported the sponge-sister hypothesis and none supported the ctenophore-sister hypothesis; the remaining 295 tests were inconclusive. These results provide compelling evidence for the sponge-sister hypothesis and suggest that integrative phylogenomics provides a robust and powerful approach for disentangling branches in the tree of life.

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Cite This Study

Steenwyk et al. (2025) studied this question.

synapsesocial.com/papers/692519b4c0ce034ddc354654https://doi.org/10.1126/science.adw9456
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