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Data from: Morphological and genetic analysis of sympatric dace within the Rhinichthys cataractae species complex: a case of isolation lost
负责人:
关键词:
secondary contact;Rhinichthys cataractae;ephemeral speciation;Cyprinidae;introgression;cryptic species;Pleistocene
DOI:
doi:10.5061/dryad.g4237
摘要:
e sympatric in three streams in the lower Fraser River valley, BC, and may represent cryptic species. We assayed 12 morphometric
Data from: Reproductive isolation and cryptic introgression in a sky island enclave of Appalachian birds
负责人:
关键词:
chickadees;Poecile carolinensis;reproductive isolating mechanism;Poecile atricapillus;hybridization;introgression;Holocene;metapopulation dynamics;speciation
DOI:
doi:10.5061/dryad.3nr84
摘要:
ern Appalachian Mountains. The Great Smoky Mountains harbor the last large breeding population of atricapillus in the southern Appalachians, isolated from the species’ main
Data from: Improved campephiline detection: an experiment conducted with the Magellanic woodpecker
负责人:
关键词:
Campephilus;Campephilus magellanicus;drumming device;detection technique;Southern Chile
DOI:
doi:10.5061/dryad.78dj7t9
摘要:
1. Woodpeckers can be difficult to detect, as they are often cryptic, secretive, occurring in low densities, and wary of humans. Several methods
Data from: Melanin-based sexual dichromatism in the Western Palearctic avifauna implies darker males and lighter females
负责人:
关键词:
sexual dichromatism;melanin;palearctic birds;Holocene
DOI:
doi:10.5061/dryad.q8r422h
摘要:
families regularly breeding in the Western Palearctic. Sexual dichromatism based on melanins in at least one integumentary part involved 205 (30.7%) species
Data from: Genetics of gene expression responses to temperature stress in a sea urchin gene network
负责人:
关键词:
Strongylocentrotus purpuratus;climate change;Transcriptomics;Phenotypic Plasticity;Echinoderms;quantitative genetics
DOI:
doi:10.5061/dryad.36md8
摘要:
on a well-characterized gene network involved in endomesoderm and ectoderm specification. Using a breeding design with wild-caught individuals, we measured genetic
Data from: Validating the use of coloration patterns for individual recognition in the worm pipefish using a novel set of microsatellite markers
负责人:
关键词:
Population Ecology Animal Mating/Breeding Systems Conservation Biology Fish Life History Evolution Sexual Selection
DOI:
doi:10.5061/dryad.7c04d
摘要:
cryptic information regarding group structure, movement patterns, population size and mating strategies. The use of natural markings is arguably the least
Data from: Refining trophic dynamics through multi-factor Bayesian mixing models: a case study of subterranean beetles.
负责人:
关键词:
food web dynamics;Paroster macrosturtensis;Paroster mesosturtensis;Paroster microsturtensis;Scutachiltonia axfordi;Yilgarniella sturtensis
DOI:
doi:10.5061/dryad.2z34tmpj7
摘要:
ecosystems due to the cryptic nature of these environments. To unravel trophic interactions between subterranean biota, we applied an interdisciplinary Bayesian
Data from: Metabarcoding dietary analysis of coral dwelling predatory fish demonstrates the minor contribution of coral mutualists to their highly
负责人:
关键词:
Camallanidae;Vanikoridae;Miraciidae;Coelosphaeridae;Temora discaudata;Eviota;Trematoda;Actaeinae;food web;Autolytinae;Menaethius monoceros;Copepoda;Echinoidea;Caranx melampygus;Chromis vanderbilti;Liocarpilodes integerrimus;Trapezia areolata;Polychaeta;Trapezia rufopunctata;Cirratulidae;Palaemonella tenuipes;Lienardia mighelsi;Thalassoma hardwicke;Gammaropsis;Maxillopoda;Lysiosquillidae;Harpacticus;Cerithium;Enterogona;Gobiidae;Terebellidae;Pomachromis fuscidorsalis;Tanaidacea;Trapezia bidentata;Petrolisthes;Chlorurus sordidus;Syllidae;Maera;Pandalidae;Ampharetidae;Palaemonidae;Thor;Poecilostomatoida;Gigartinales;Apogon nigrofasciatus;Huenia;Hapalocarcinus;Pagurixus;Lithoglyptidae;Palaemonella rotumana;Mysida;Scarus globiceps;COI;Galatheidae;Palmyria;Pilodius;Plumularia;Demospongiae;Agalmatidae;Clionaidae;Decapterus macarellus;Emiliania huxleyi;Phylladiorhynchus;Dolabrifera dolabrifera;Paranamixis fijiensis;Gelidiaceae;Ophiactis;Brachyura;Nemichthys;Anthuridea;Aphelenchoididae;Argonautidae;Clausocalanus arcuicornis;Nephtyidae;Dendropoma;Eviota disrupta;Amblycirrhitus bimacula;Amphilochus;Santiidae;Plectroglyphidodon dickii;Chromis margaritifer;Titanoderma prototypum;Enchelyurus ater;Manaethius monoceros;Xanthias lamarcki;coral reefs;Atergatopsis germaini;Caranx sexfasciatus;Calcinus morgani;Cerithiidae;Dascyllus flavicaudus;Bemlos waipio;Viriola incisa;mutualism;Metabarcoding;Gymnothorax buroensis;Chlorodiella laevissima;Corallinaceae;Sagittidae;Candacia ethiopica;Harpacticoida;Phylladiorhynchus integrirostris;Azadinium poporum;Gastropoda;Phenacolepadidae;Homalopoma maculosa;Ctenochaetus striatus;Amphipoda;Clausocalanus minor;Scarus psittacus;Alpheidae;Sipuncula;Caridea;Chromis viridis;Esola;Isopoda;Jonesius triunguiculatus;Calanoida;Ceramiales;Cirripectes variolosus;Petalifera;Didemnidae;Perciformes;Plectroglyphidodon johnstonianus;Ptychoderidae;Chlorodiella crispipleopa;Corycaeus;Siphonostomatoida;Pseudocheilinus hexataenia;Sebastapistes tinkhami;Cuapetes ensifrons;Pocillopora;Stegastes nigricans;Gomphosus varius;Pascula muricata;Acartia negligens;Chaetodon trichrous;Zebrasoma scopas;Dascyllus aruanus;Stomatolina rubra;Vitricithna marmorata;Oithonidae;Perinia tumida;Hydrozoa;Cyclodius ungulatus;Halopteris constricta;Hippolytidae;Pilodius pugil;Arete indicus;Polynesoecetes kekeae;trophic interactions;Raoulserenea ornata;Fennera chacei;Oncaeidae;Trapeziidae;Bunodeopsis medusoides;Lachnopodus subacutus;Cestoda;Halichoeres hortulanus;Stylocheilus striatus;Erythrotrichiaceae;Monetaria annulus;Sargassaceae;Trapezia serenei;Ophiocoma pica;Decapoda;Harpiliopsis beaupresii;Drupa ricinus;3 days;Notopygos;Polynoidae;Galathea mauritiana;Margaretta;Verrucidae;Monetaria caputdraconis;Alpheus dolerus;Haminoea natalensis;Paguridae;Cheilopogon pitcairnensis;Munnidae;Pilodius flavus;Turbellaria;Chlorodiella barbata;Clausocalanus furcatus;Dendropoma gregaria;Malacostraca
DOI:
doi:10.5061/dryad.v0p71
摘要:
Understanding the role of predators in food webs can be challenging in highly diverse predator/prey systems composed of small cryptic

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