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Data from: The legacy of a vanished sea: a high level of diversification within a European freshwater amphipod species complex driven by 15
负责人:
关键词:
Bayesian dating analysis;Neogene;origin of freshwater fauna;molecular phylogeny;cryptic diversity;ancestral state reconstruction;Gammarus balcanicus;phylogeography
DOI:
doi:10.5061/dryad.2f0j5
摘要:
to diversify in the Early Miocene in the central Balkans, partially in the shallow epicontinental sea. It is possible that there were several episodes
Data from: The many faces of synapsid cranial allometry
负责人:
关键词:
Idelesaurus tataricus;\Tetracynodon\ darti;Patranomodon nyaphulii;Scalopodon tenuisfrons;Thrinaxodon liorhinus;Geikia locusticeps;Edaphosaurus cruciger;Lycideops longiceps;Gordonia traquairi;Abdalodon sp;Chiniquodon theotonicus;Eosimops newtoni;Eothyris parkeyi;Dicynodontoides nowacki;Dimetrodon limbatus;Viatkogorgon ivakhnenkoi;Peramodon amalitzkii;Alopecognathus angusticeps;Therocephalia;Vivaxosaurus trautscholdi;Dimetrodon grandis;Procynosuchus delaharpeae;Estemmenosuchus mirabilis;Tapinocaninus pamelae;Brachyprosopus broomi;Australosyodon nyaphuli;Lystrosaurus hedini;Tropidostoma dubium;Andescynodon mendozensis;Dolichuranus primaevus;Lumkuia fuzzi;Jonkeria truculenta;Dinodontosaurus pedroanum;Sycosaurus laticeps;Titanophoneus potens;Rhachiocephalus behemoth;Galeops whaitsi;Daqingshanodon limbus;Parakannemeyeria youngi;Cynosaurus suppostus;Mirotenthes digitipes;Vinceria andina;Arctops willistoni;Basilodon woodwardi;Charassognathus gracilis;Exaeretodon argentinus;Dinanomodon gilli;Inostrancevia alexandri;Eodicynodon oosthuizeni;Probelesodon lewisi;Rhachiocephalus magnus;Suminia getmanovi;Moschops capensis;Dvinia prima;Titanophoneus adamanteus;Varanosaurus acutirostris;Hofmeyria atavus;Hipposaurus boonstrai;Jimusaria sinkiangensis;Parakannemeyeria shenmuensis;Arctognathus curvimola;Syodon biarmicum;Angonisaurus cruickshanki;Exaeretodon riograndensis;Keyseria benjamini;Anteosaurus magnificus;Dinogorgon rubidgei;Cotylorhynchus romeri;Dinocephalia;Lystrosaurus murrayi;Endothiodon bathystoma;Olivierosuchus parringtoni;Probainognathus jenseni;Tritylodon longaevus;Ericiolacerta parva;Cyonosaurus longiceps;Stahleckeria potens;Struthiocephaloides duplessisi;Aerosaurus wellesi;Gorgonops torvus;Lycaenops ornatus;Ruhuhucerberus haughtoni;Sinognathus gracilis;Ophiacodon retroversus;Rhadiodromus mariae;Mycterosaurus longiceps;Elph borealis;Euchambersia mirabilis;Lycosuchus vanderrieti;Synapsida;Moschorhinus kitchingi;Clelandina rubidgei;Ictidosuchops rubidgei;Proburnetia viatkensis;Ctenospondylus;Odontocyclops whaitsi;Chaliminia musteloides;Cryptocynodon simus;Biarmosaurus tener;Scylacosaurus sclateri;Theriognathus microps;Shansiodon wuhsiangensis;Massetognathus pascuali;Mormosaurus seeleyi;Viatkosuchus sumini;Trirachodon berryi;Regisaurus jacobi;Platycraniellus elegans;Aleodon cf cromptoni;Aelurognathus tigriceps;Scaloporhinus angulorugatus;Sphenacodon ferox;Riograndia guaibensis;Casea brolii;Bauria cynops;Aulacephalodon bainii;Akidnognathus parvus;Glanosuchus macrops;Eriphostoma microdon;Pachygenelus monus;Emydops;Pachydectes elsi;Cynodontia;Moschowhaitsia vjuschkovi;Bulbasaurus phylloxyron;Ulemosaurus svijagensis;Rubidgea atrox;Dicynodon lacerticeps;Diademodon tetragonus;Cranial Allometry;Pascualgnathus polanskii;Lycaenops pricei;Diictodon feliceps;Lystrosaurus declivis;Mupashi migrator;Langbergia modisei;Annatherapsidus petri;Aleodon brachyrhamphus;Tapinocephalus atherstonei;Secodontosaurus obtusidens;Xiyukannemeyeria brevirostris;Ictidorhinus martinsi;Emydorhinus sciuroides;Ophiacodon sp;Australobarbarus kotelnitschi;Jachaleria candelariensis;Carboniferous;pelycosaurs;Sinophoneus yumenensis;Kawingasaurus fossilis;Galesaurus planiceps;Ictidosuchoides longiceps;Cistecephalus microrhinus;Compsodon helmoedi;Moschops koupensis;Leontosaurus vanderhorsti;Lycaenops n. sp.;Permian;Tetragonias njalilus;Microgomphodon oligocynus;Pristerognathus;Digalodon rubidgei;Kannemeyeria simocephalus;Lemurosaurus pricei;Oudenodon bainii;Herpetoskylax hopsoni;Triassic;Delectosaurus arefjevi;Daptocephalus leoniceps;Silphoictidoides ruhuhuensis;Bienotheroides wansienensis;Protheriodon estudianti;Smilesaurus ferox;Heleosaurus scholtzi;Robertia broomiana;Progalesaurus lootsbergensis;Rhinodicynodon gracile;Ophiacodon mirus;Struthiocephalus whaitsi;Scalaoposaurus constrictus;Prosictodon dubei;Ischigualastia jenseni;Paraburnetia sneeubergensis;Otsheria netzvetajevi;Eodicynodon oelofseni;Dimetrodon loomisi;Sycosaurus nowaki;Lystrosaurus curvatus;Cistecephaloides boonstrai;Allometry;Lycaenops angusticeps;Sinokannemeyeria sunchuanheensis;Kayentatherium wellesi;Varanops brevirostris;Ulemica efremovi;Cynognathus crateronotus;Proalopecopsis haughtoni;Ennatosaurus tecton;Gorgonopsia;Glaucosaurus megalops;Rechnisaurus cristarhynchus;Biarmosuchia;Euptychognathus bathyrhynchus;Burnetia mirabilis;Sintocephalus alticeps;Pristerodon mackayi
DOI:
doi:10.5061/dryad.56qq231
摘要:
Previous studies of cranial shape have established a consistent interspecific allometric pattern relating the relative lengths of the fac
Data from: Bioerosion by pit-forming, temperate-reef sea urchins: history, rates and broader implications
负责人:
关键词:
grazing;knock-on effect;sediment load;coastal sediment;temperate reefs;sea urchin;bioerosion;Strongylocentrotus purpuratus;sea otters;microhabitat;Enhydra lutris;trophic cascade;surface rugosity;intertidal ecology
DOI:
doi:10.5061/dryad.ts608
摘要:
e differences in pit size and shapes of the urchins (height:diameter ratio). The pits were shallow and urchins flatter at the granite site, and the pits wer
Data from: Expanding anchored hybrid enrichment to resolve both deep and shallow relationships within the spider tree of life
负责人:
关键词:
Araneomorphae;Arachnida;Mygalomorphae;Aphonopelma;Conserved regions;ultraconserved elements;Araneae;Aptostichus;Anchored phylogenomics;targeted sequence capture;Anchored Hybrid Enrichment
DOI:
doi:10.5061/dryad.5027d
摘要:
Enrichment (AHE), is designed to recover hundreds of unique orthologous loci from across the genome, for resolving both shallow and deep-scale
Data from: From limb to fin: an Eocene protocetid forelimb from Senegal sheds new light on the early locomotor evolution of cetaceans
负责人:
关键词:
Protocetidae;Eocene;Forelimb;Cetacea
DOI:
doi:10.5061/dryad.2vr4152
摘要:
, and the transition from a limb?adapted morphology for an amphibious life in shallow water to a fin?adapted morphology for a pelagic lifestyle remains poorly documented
Data from: Drivers of spatio-temporal patterns of salinity in Spanish rivers: a nationwide assessment
负责人:
关键词:
Agriculture;Water Framework Directive;conductivity;urbanisation;Salinisation
DOI:
doi:10.5061/dryad.5m3338v
摘要:
e is known about the spatial extent of freshwater salinization and the relative contribution of each human activity (e.g. agriculture, urbanization, mining or shale-gas extraction
Data from: Preservation of uropygial gland lipids in a 48-million-year-old bird
负责人:
O'Reilly, Shane
关键词:
Soft tissue preservation Molecular fossils Uropygial gland Fossil bird
DOI:
doi:10.5061/dryad.7g1tb
摘要:
the host oil shale sediment matrix and from feathers of the same fossil. The fossil gland contained abundant n-alkenes, n-alkanes and al
Data from: Scale-dependent foraging ecology of a marine top predator modelled using passive acoustic data
负责人:
关键词:
Tursiops;habitat preference;Generalized Estimating Equations;modelling;Multi-scale;PODs;Odontoceta;Echolocation;Feeding buzz;Tursiops truncatus
DOI:
doi:10.5061/dryad.83h07
摘要:
at a daily scale, accounting for site-specificity in the shape of the estimated relationships. 4. This study demonstrates how passive acoustic data can be use
Data from: Macroevolutionary patterning in glucocorticoids suggests different selective pressures shape baseline and stress-induced levels
负责人:
关键词:
Evolution: physiological;Macroevolution;vertebrates;Ecology: physiological;Environmental variability;Endocrinology;Life history: endocrine
DOI:
doi:10.5061/dryad.th03671
摘要:
patterns indicate a surprising degree of consistency in how some selective pressures shape GCs across broad taxonomic scales; at the same time

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