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Data from: Phylogenomics of Lophotrochozoa with consideration of systematic error
负责人:
关键词:
Bryozoa Trochozoa Spiralia Mollusca Nemertea Annelida Brachiopoda Phoronida Entoprocta Platyzoa
DOI:
doi:10.5061/dryad.30k4v.1
摘要:
strict screening for paralogy using a tree-based approach. In order to reduce possible sources of systematic error, we calculated branch-length
Data from: Trepostomate bryozoans from the upper Katian (Upper Ordovician) of Morocco: gigantism in high latitude Gondwana platforms
负责人:
关键词:
gigantism;Upper Ordovician;Trepostomata;Upper Katian;Bryozoa;Bryozoans
DOI:
doi:10.5061/dryad.s5c90
摘要:
A study of the Upper Ordovician trepostomate bryozoans belonging to the families Amplexoporidae and Monticuliporidae, from the eastern Anti-Atlas
Data from: Functional innovation through vestigialisation in a modular marine invertebrate
负责人:
关键词:
Bugula flabellata;Modularity;avicularia;Bryozoa;polymorphism;vestigial organs
DOI:
doi:10.5061/dryad.p13s6
摘要:
ng laser scanning confocal microscopy with fluorescent staining and behavioural observations, we describe homologous structures in polymorphic modules (zooids) in the bryozoan Bugula
Data from: Phylogenomics of Lophotrochozoa with consideration of systematic error
负责人:
关键词:
Rhyssoplax olivaceus;Lineus lacteus;Novocrania anomala;Boccardia proboscidea;Clymenella torquata;Glottidia pyramidata;Phascolosoma agassizii;saturation;Patella vulgata;Adineta vaga;Leptochiton asellus;Megadasys sp.;Spathoderma clenchi;Schistosoma mansoni;Platyzoa;Brachionus plicatilis;Loxosoma pectinaricola;Paranemertes peregrina;Phenacolepas pulchella;Taenia pisiformis;Ruditapes philippinarum;Sepioteuthis lessoniana;Macellomenia schanderi;Capitella teleta;Phoronis vancouverensis;Pomatoceros lamarckii;Alexandromenia crassa;Prochaetoderma californicum;Entalina tetragona;Symbion americanus;Spiralia;Neomenia carinata;Dosidicus gigas;Alitta virens;Tubulanus polymorphus-Halanych;Nemertea;Cephalothrix linearis;Mollusca;drosophila melanogaster;Laqueus californicus;Crassostrea gigas;Laevipilina hyalina;Macrodasys sp.;Phoronida;Aplysia californica;Mytilus edulis;Hemithiris psittacea;Bryozoa;Pectinaria gouldii;Octopus vulgaris;Brachiopoda;Compositional heterogeneity;Lineus longissimus;Gnathostomula paradoxa;Leptochiton rugatus;Graptacme eborea;Cephalothrix hongkongensis;Lottia gigantea;Nuculana pernula;Helobdella robusta;Priapulus caudatus;Daphnia pulex;Barentsia gracilis;Trochozoa;Malacobdella grossa;Enucula tenuis;Loxosomella cf. vivipara;Crepidula fornicata;Haliotis rufescens;Polyzoa;Nucella lapillus;Pedicellina cernua;Sagitta sp.;Tubulanus polymorphus-Struck;Annelida;Gadila tolmiei;Cerebratulus marginatus;Entoprocta;Villosa lienosa;Bugula neritina;Glycera dibranchiata;Lineus ruber;Sepia esculenta;Solemya velum;Long branch attraction;Schmidtea mediterranea;Pinctada fucata;Phoronis psammophila
DOI:
doi:10.5061/dryad.30k4v
摘要:
strict screening for paralogy using a tree-based approach. In order to reduce possible sources of systematic error, we calculated branch-length
Data from: Relative size predicts competitive outcome through 2 million years
负责人:
关键词:
Size;Bryozoa;biotic interactions;competition;community;fossil;cheilostome bryozoans;Holocene;Marine;Pleistocene
DOI:
doi:10.5061/dryad.s612j
摘要:
ow, using communities of encrusting marine bryozoans spanning more than 2 million years, that size is a significant determinant of overgrowth outcomes

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