A broadly resolved molecular phylogeny of New Zealand cheilostome bryozoans as a framework for hypotheses of morphological evolution
Data files
Apr 30, 2021 version files 28.07 MB
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18s_ML.newick
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28s_ML.newick
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Adeonellopsis_gemina_BLEED1364.gbk
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Aetea_sp_BLEED601.gbk
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Aimulosia_marsupium_BLEED1305.gbk
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Aimulosia_marsupium_BLEED600.gbk
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Akatopora_circumsaepta_BLEED1670_A.gbk
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Akatopora_circumsaepta_BLEED1670_B.gbk
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Akatopora_circumsaepta_BLEED1670_D.gbk
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Akatopora_circumsaepta_BLEED1670_E.gbk
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Akatopora_circumsaepta_BLEED1670_F.gbk
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Amastigia_funiculata_BLEED650.gbk
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Amastigia_harmeri_BLEED1394.gbk
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Amphiblestrum_blandum_BLEED641.gbk
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Amphiblestrum_blandum_BLEED682.gbk
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Amphiblestrum_contentum_BLEED1318.gbk
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Amphiblestrum_n_sp1_BLEED1294.gbk
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Amphiblestrum_n_sp2_BLEED1395.gbk
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Antarctothoa_delta_BLEED703.gbk
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Arachnopusia_unicornis_BLEED183.gbk
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Arachnopusia_unicornis_BLEED221.gbk
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Arthropoma_cecilii_BLEED177.gbk
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atp6_ML.newick
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atp8_ML.newick
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Beania_plurispinosa_BLEED203.gbk
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Beania_serrata_BLEED1625.gbk
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Beania_sp_BLEED1333.gbk
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Beania_stonycha_BLEED84.gbk
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Bitectipora_mucronifera_BLEED1380.gbk
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Buffonellaria_biavicularis_BLEED189.gbk
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Buffonellaria_cf_regenerata_BLEED88.gbk
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Caberea_zelandica_BLEED648.gbk
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Calloporina_angustipora_BLEED793.gbk
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Calloporina_triporosa_BLEED1334.gbk
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Canda_filifera_BLEED1376.gbk
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Canda_filifera_BLEED608.gbk
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Catenicella_pseudoelegans_BLEED788.gbk
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Catenicella_sp_BLEED1699.gbk
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Cellaria_immersa_BLEED1631.gbk
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Cellaria_immersa_BLEED167.gbk
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Celleporaria_agglutinans_BLEED657_A.gbk
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Celleporina_sinuata_BLEED328.gbk
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Chaperia_n_sp1_BLEED200.gbk
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Chaperiopsis_n_sp_BLEED1616.gbk
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Chiastosella_jellyae_BLEED1626.gbk
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Chiastosella_longaevitas_BLEED1367.gbk
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Chiastosella_splendida_BLEED53.gbk
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Chiastosella_watersi_BLEED154.gbk
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Chiastosella_watersi_BLEED56.gbk
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cob_ML.newick
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Cornucopina_n_sp_BLEED168.gbk
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Cornucopina_sp_BLEED1673.gbk
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Cornuticella_taurina_BLEED199.gbk
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Cornuticella_trapezoidea_BLEED1687.gbk
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Cosciniopsis_vallata_BLEED202.gbk
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Costaticella_bicuspis_BLEED103.gbk
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Costaticella_bicuspis_BLEED647.gbk
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cox1_ML.newick
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cox2_ML.newick
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cox3_ML.newick
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Crassimarginatella_cucullata_BLEED674.gbk
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Crateropora_styliformis_BLEED320.gbk
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Crepidacantha_crinispina_BLEED1264.gbk
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Crepidacantha_crinispina_BLEED1265.gbk
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Crepidacantha_crinispina_BLEED662.gbk
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Crepidacantha_kirkpatricki_BLEED1676.gbk
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Crepidacantha_zelanica_BLEED1119.gbk
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Crepidacantha_zelanica_BLEED1319.gbk
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Cribellopora_napi_BLEED675.gbk
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Cyclicopora_aff_praelonga_BLEED1155.gbk
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Dimetopia_barbata_BLEED652.gbk
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Dimetopia_cornuta_BLEED1354.gbk
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Drepanophora_biperforata_BLEED1357.gbk
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Electra_scuticifera_BLEED98.gbk
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Ellisina_sericea_BLEED697.gbk
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Emma_triangula_BLEED1348_A.gbk
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Emma_triangula_BLEED1348_B.gbk
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Emma_tricellata_BLEED196.gbk
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Escharoides_angela_BLEED636.gbk
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Escharoides_cf_excavata_BLEED1275.gbk
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Escharoides_cf_excavata_BLEED59.gbk
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Euplozoum_n_sp_BLEED322.gbk
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Eurystomella_aupouria_BLEED319.gbk
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Eurystomella_biperforata_BLEED336.gbk
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Eurystomella_foraminigera_BLEED135.gbk
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Euthyroides_episcopalis_BLEED651.gbk
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Euthyroides_n_sp_BLEED1344.gbk
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Exochella_armata_BLEED713.gbk
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Exochella_cf_tricuspis_BLEED1665.gbk
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Exochella_jullieni_BLEED231.gbk
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Fenestrulina_cf_disjuncta_BLEED708.gbk
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Fenestrulina_n_sp1_BLEED237.gbk
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Fenestrulina_n_sp2_BLEED1115.gbk
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Fenestrulina_reticulata_BLEED1120.gbk
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Figularia_mernae_BLEED179.gbk
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Foveolaria_sp_BLEED85.gbk
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Fovoporella_spectabilis_BLEED673.gbk
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Galeopsis_n_sp1_BLEED1617.gbk
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Galeopsis_n_sp2_BLEED1618.gbk
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Galeopsis_polyporus_BLEED590.gbk
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Galeopsis_porcellanicus_BLEED591.gbk
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Gigantopora_pupa_BLEED1335.gbk
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GLOBAL_18s.fas
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GLOBAL_18s.fas-gb
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GLOBAL_28s.fas
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GLOBAL_28s.fas-gb
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GLOBAL_atp6.fas
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GLOBAL_atp6.fas-gb
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GLOBAL_atp8.fas
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GLOBAL_atp8.fas-gb
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GLOBAL_Bayes.newick
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GLOBAL_CONCAT.nex
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GLOBAL_cox1.fas
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GLOBAL_cox1.fas-gb
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GLOBAL_cox2.fas
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GLOBAL_cox2.fas-gb
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GLOBAL_cox3.fas
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GLOBAL_cox3.fas-gb
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GLOBAL_cytb.fas
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GLOBAL_cytb.fas-gb
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GLOBAL_mitogenome.nex
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GLOBAL_ML.newick
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GLOBAL_nad1.fas
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GLOBAL_nad2.fas
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GLOBAL_nad2.fas-gb
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GLOBAL_nad3.fas
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GLOBAL_nad4.fas
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GLOBAL_nad4.fas-gb
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GLOBAL_nad4l.fas
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GLOBAL_nad4l.fas-gb
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GLOBAL_nad5.fas
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GLOBAL_nad5.fas-gb
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GLOBAL_nad6.fas
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GLOBAL_nad6.fas-gb
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GLOBAL_rDNA.nex
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GLOBAL_rrnL.fas
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GLOBAL_rrnL.fas-gb
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GLOBAL_rrnS.fas
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GLOBAL_rrnS.fas-gb
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Hemismittoidea_hexaspinosa_BLEED619.gbk
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Hincksina_n_sp_BLEED1252.gbk
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Hincksina_n_sp_BLEED61.gbk
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Hippellozoon_novaezelandiae_BLEED1639.gbk
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Hippomenella_cf_vellicata_BLEED1389_A.gbk
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Hippomenella_cf_vellicata_BLEED1389_B.gbk
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Hippomenella_cf_vellicata_BLEED92.gbk
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Hippomenella_n_sp_BLEED1640.gbk
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Hippomenella_vellicata_BLEED597.gbk
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Hippothoa_watersi_BLEED1316.gbk
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Icong_mitogenome_70%.nex
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Icong_mt.newick
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Icong_rDNA_70%.nex
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Icong_rDNA.newick
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Inversiula_fertilis_BLEED1393.gbk
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Inversiula_fertilis_BLEED1668.gbk
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Iodictyum_yaldwynii_BLEED1387.gbk
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Macropora_grandis_BLEED1293.gbk
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Macropora_grandis_BLEED1315.gbk
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Macropora_levinseni_BLEED1298.gbk
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Macropora_nodulosa_BLEED1134.gbk
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Macropora_nodulosa_BLEED124.gbk
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Macropora_nodulosa_BLEED676.gbk
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Malakosaria_sinclairii_BLEED1685.gbk
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Margaretta_barbata_BLEED318.gbk
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Menipea_n_sp1_BLEED1340.gbk
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Menipea_n_sp2_BLEED1672.gbk
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Menipea_vectifera_BLEED89.gbk
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Metroperiella_n_sp_BLEED1666.gbk
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Micropora_n_sp1_BLEED607.gbk
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Micropora_n_sp2_BLEED1663.gbk
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Micropora_n_sp2_BLEED187.gbk
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Micropora_n_sp3_BLEED1662.gbk
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Micropora_n_sp4_BLEED192.gbk
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Microporella_aff_diademata_BLEED77.gbk
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Microporella_cf_agonistes_BLEED1114.gbk
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Microporella_cf_agonistes_BLEED1144_A.gbk
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Microporella_cf_agonistes_BLEED1144_B.gbk
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Microporella_cf_agonistes_BLEED75.gbk
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Microporella_cf_intermedia_BLEED1330.gbk
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Microporella_cf_intermedia_BLEED66.gbk
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Microporella_discors_BLEED5.gbk
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Microporella_n_sp_BLEED709.gbk
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Microporella_ordo_BLEED101.gbk
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Microporella_ordo_BLEED64.gbk
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Microporella_ordo_BLEED71.gbk
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Microporella_sp_1_BLEED151.gbk
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mitogenome.newick
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Mobunula_bicuspis_BLEED1287.gbk
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Monoporella_n_sp_BLEED1360.gbk
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Monoporella_n_sp_BLEED1690.gbk
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Mucropetraliella_vultur_BLEED1362.gbk
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nad1_ML.newick
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nad2_ML.newick
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nad3_ML.newick
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nad4_ML.newick
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nad4l_ML.newick
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nad5_ML.newick
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nad6_ML.newick
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NZ_18s.fas
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NZ_18s.fas-gb
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NZ_28s.fas
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NZ_28s.fas-gb
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NZ_atp6.fas
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NZ_atp6.fas-gb
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NZ_atp8.fas
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NZ_atp8.fas-gb
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NZ_Bayes.newick
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NZ_CONCAT.nex
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NZ_cox1.fas
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NZ_cox1.fas-gb
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NZ_cox2.fas
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NZ_cox2.fas-gb
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NZ_cox3.fas
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NZ_cox3.fas-gb
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NZ_cytb.fas
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NZ_cytb.fas-gb
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NZ_ML.newick
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NZ_nad1.fas
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NZ_nad1.fas-gb
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NZ_nad2.fas
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NZ_nad2.fas-gb
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NZ_nad3.fas
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NZ_nad3.fas-gb
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NZ_nad4.fas
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NZ_nad4.fas-gb
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NZ_nad4l.fas
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NZ_nad4l.fas-gb
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NZ_nad5.fas
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NZ_nad5.fas-gb
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NZ_nad6.fas
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NZ_nad6.fas-gb
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NZ_rrnL.fas
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NZ_rrnL.fas-gb
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NZ_rrnS.fas
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NZ_rrnS.fas-gb
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Odontionella_n_sp_BLEED1382.gbk
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Opaeophora_lepida_BLEED218.gbk
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Opaeophora_n_sp_BLEED1157.gbk
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Orthoscuticella_innominata_BLEED201.gbk
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Orthoscuticella_ventricosa_BLEED1623.gbk
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Osthimosia_cf_avicularis_BLEED1141.gbk
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Osthimosia_cf_avicularis_BLEED134.gbk
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Osthimosia_n_sp_BLEED1635.gbk
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Paracribricellina_cribraria_BLEED1693.gbk
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Parasmittina_aotea_BLEED663.gbk
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Parasmittina_aotea_BLEED86.gbk
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Parasmittina_aotea_BLEED948.gbk
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Parasmittina_delicatula_BLEED191.gbk
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Parasmittina_solenosmilioides_BLEED1267.gbk
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Parkermavella_punctigera_BLEED1317.gbk
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Parkermavella_punctigera_BLEED661.gbk
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Patsyella_acanthodes_BLEED131.gbk
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Patsyella_n_sp_BLEED1346.gbk
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Phidolopora_avicularis_BLEED1374.gbk
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Phidolopora_avicularis_BLEED1381.gbk
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Phidolopora_avicularis_BLEED1615.gbk
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Phonicosia_n_sp1_BLEED1329.gbk
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Phonicosia_n_sp2_BLEED594.gbk
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Phonicosia_n_sp2_BLEED671.gbk
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Powellitheca_n_sp_BLEED1689.gbk
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Powellitheca_n_sp_BLEED1698.gbk
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Powellitheca_terraenovae_BLEED1389.gbk
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Prenantia_firmata_BLEED626.gbk
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Pterocella_scutella_BLEED104.gbk
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Pterocella_vesiculosa_BLEED105.gbk
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Pterocella_vesiculosa_BLEED181.gbk
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Pterocella_vesiculosa_BLEED810.gbk
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rDNA.newick
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README.txt
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Reciprocus_regalis_BLEED1290.gbk
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Retevirgula_aggregata_BLEED1349.gbk
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Rhabdozoum_wilsoni_BLEED695.gbk
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Rhynchozoon_angulatum_BLEED694.gbk
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Rhynchozoon_n_sp_BLEED1262.gbk
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Rhynchozoon_n_sp_BLEED1311.gbk
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Rhynchozoon_paa_BLEED1694.gbk
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Rhynchozoon_zealandicum_BLEED127.gbk
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rrnL_ML.newick
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rrnS_ML.newick
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Schizomavella_aotearoa_BLEED1112.gbk
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Schizosmittina_cinctipora_BLEED700.gbk
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Schizosmittina_melanobater_BLEED666.gbk
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Smittina_purpurea_BLEED1398.gbk
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Smittina_rosacea_BLEED1700.gbk
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Smittoidea_maunganuiensis_BLEED223.gbk
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Smittoidea_n_sp_BLEED1677.gbk
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Smittoidea_n_sp_BLEED691.gbk
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Steginocellaria_magnimandibulata_331.gbk
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Steginoporella_discors_BLEED100.gbk
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Steginoporella_discors_BLEED31.gbk
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Steginoporella_magnifica_BLEED1323.gbk
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Steginoporella_marcusi_BLEED1652.gbk
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Steginoporella_neozelanica_BLEED1628.gbk
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Steginoporella_perplexa_BLEED1651.gbk
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Stephanollona_aff_scintillans_BLEED679.gbk
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Stephanollona_scintillans_BLEED170.gbk
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Talivittaticella_problematica_BLEED324.gbk
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Taylorus_arcuatus_BLEED37.gbk
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Terminocella_n_sp_BLEED194.gbk
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Valdemunitella_cf_fraudatrix_BLEED1144.gbk
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Valdemunitella_huttoni_BLEED1158.gbk
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Valdemunitella_huttoni_BLEED195.gbk
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Valdemunitella_n_sp_BLEED1653.gbk
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Valdemunitella_n_sp_BLEED1679.gbk
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Valdemunitella_pyrula_BLEED1156.gbk
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Xenogma_rhomboidale_BLEED1115.gbk
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Yrbozoon_conspicuum_BLEED1279.gbk
Abstract
Larger and larger molecular phylogenies based on ever more genes are becoming commonplace with the advent of cheaper and more streamlined sequencing and bioinformatics pipelines. However, many groups of inconspicuous but no less evolutionarily or ecologically important marine invertebrates are still neglected in the quest for understanding species- and higher-level phylogenetic relationships using high-throughput sequencing approaches. Here, we alleviate this issue by presenting a 17 gene phylogeny of >200 newly sequenced cheilostome bryozoan species, mainly from New Zealand waters. New Zealand is our geographic region of choice as its cheilostome fauna is taxonomically, functionally and ecologically diverse, and better characterized than many other such faunas in the world. Using this most taxonomically broadly-sampled and statistically-supported cheilostome phylogeny to date, we tested several existing systematic hypotheses based solely on morphological observations. We find that lower taxonomic level hypotheses (species and genera) are very robust while our inferred trees often did not reflect current higher-level systematics (family and above), illustrating a general need for the rethinking of current hypotheses. To illustrate the utility of our new phylogeny, we reconstructed the evolutionary history of frontal shields (i.e. a calcified body-wall layer in ascus-bearing cheilostomes) and asked if the presence of a calcified frontal shield has any bearing on the diversification rates of cheilostomes.