Diffuse pacemaker mechanism with distinctive organization drives pulsation in the octocoral Xenia umbellata- additional phylogenetic trees (NEXUS format)
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Diffuse pacemaker mechanism with distinctive organization drives pulsation in the octocoral Xenia umbellata Elinor Nadir1, Yehuda Benayahu1*, Maya Ofek-Lalzar2, Tslil Gabrieli3, Tamar Lotan3* 1School of Zoology, George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv 69978, Israel. 2Bioinformatic Unit, University of Haifa, Haifa 3103301, Israel. 3Department of Marine Biology, the Leon H. Charney School of Marine Sciences, University of Haifa, Haifa 3103301, Israel. Phylogenetic trees for additional transcripts presented in this study. Maximum-likelihood (ML) gene trees were inferred from Xenia umbellata (Xu) orthogroups using IQ-TREE v3 after MAFFT alignment. The MAFFT alignments and the corresponding tree files (NEXUS format) are provided. The dataset comprised eight cnidarian species spanning the major lineages—Hexacorallia (Nematostella vectensis, Nv; Stylophora pistillata, S), Octocorallia (Xenia umbellata, Xu; Xenia sp. Carnegie, Xe; Dendronephthya gigantea, Dg), Scyphozoa (Aurelia aurita, Aa), Cubozoa (Morbakka virulenta, Mv), and Hydrozoa (Hydra vulgaris, Hv)—alongside four non-cnidarian metazoans: Homo sapiens (Hs), Mus musculus (Mm), Drosophila melanogaster (Dm), and Strongylocentrotus purpuratus (Sp). The files are related to Dataset S5.



