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Data from: Year-round sexual harassment as a behavioral mediator of vertebrate population dynamics
负责人:
Wearmouth, Victoria
关键词:
behavior dimorphism elasmobranch habitat and social segregation mammal sex sexual conflict shark small-spotted catshark telemetry
DOI:
doi:10.5061/dryad.5f4d8
摘要:
e coercive mating attempts has the potential to influence the social structure of animal populations, yet it has been largely overlooked as a driver of sexual
Data from: Convergence of gut microbiotas in the adaptive radiations of African cichlid fishes
负责人:
关键词:
microbiota;OTU;cichlid;Cichlidae;alignment;Fishes;16S
DOI:
doi:10.5061/dryad.q6s1m
摘要:
vores of bacterial taxa and functions associated with fiber degradation and detoxification of plant chemical compounds. Overall, compositional and functional aspect
Data from: Soil nutrients and dispersal limitation shape compositional variation in secondary tropical forests across multiple scales
负责人:
Breugel, Michiel van
关键词:
Determinants of plant community diversity and structure dispersal limitation niche process resource partitioning secondary forest succession soil nutrients human-modified landscape Community assembly landscape connectivity Forest fragments
DOI:
doi:10.5061/dryad.4t46jj6
摘要:
interspecific variation in species’ responses to successional age and soil nutrients with a joint species distribution model. 3.Dispersal limitation and soil niche partitioni
Data from: Reproductive performance of a declining forest passerine in relation to environmental and social factors: implications
负责人:
关键词:
passerines;Phylloscopus sibilatrix;reproductive performance;biotic and abiotic factors;Exposure Time Method
DOI:
doi:10.5061/dryad.1th60
摘要:
Identifying factors influencing a species’ ecological niche and demography is a prerequisite for species conservation. However, our understanding
Data from: Phylogeography and diversification history of the day-gecko genus Phelsuma in the Seychelles islands
负责人:
关键词:
character displacement;Seychelles;Biogeography;diversification;Pliocene;phylogeography;Species-trees;Phelsuma sundbergi;Phelsuma astriata;Phelsuma;Morphological Evolution;Miocene;Pleistocene
DOI:
doi:10.5061/dryad.6q3t1
摘要:
lude different habitats/resources available within each island group, niche differentiation and/or character displacement. We also bring again into considerati
Data from: Contrasting taxonomic stratification of microbial communities in two hypersaline meromictic lakes
负责人:
关键词:
Archaea;hypersaline meromictic lakes;bacteria;biogeochemical cycling;methanogenesis;prokaryotic diversity;ultrasmall uncultivated Archaea;deep coverage SSU rDNA amplicon sequencing
DOI:
doi:10.5061/dryad.2gm06
摘要:
biogeochemical functions. To assess the composition and structure of prokaryotic communities and the environmental factors that structure them, deep-coverage
Data from: Beyond neutral and forbidden links: morphological matches and the assembly of mutualistic hawkmoth-plant networks
负责人:
关键词:
morphological forbidden link hypothesis;Coevolution;Lepidoptera;plant-pollinator networks;morphological match hypothesis;neutral hypothesis;Sphingidae
DOI:
doi:10.5061/dryad.qn83r
摘要:
trait mismatches constraints (forbidden links hypothesis), and how these processes structure hawkmoth–plant mutualistic networks from five communiti
Data from: Diet breadth and exploitation of exotic plants shift the core microbiome of Cephaloleia, a group of tropical herbivorous beetles
负责人:
关键词:
Cephaloleia
DOI:
doi:10.5061/dryad.5fj6t
摘要:
16S rRNA ribotypes recovered from all specimens. Further, microbiome diversity and community structure was significantly linked to beetle diet breadth, bet
Data from: Habitat formation prevails over predation in influencing fouling communities
负责人:
关键词:
Amphiglena mediterranea;Molgula;Salvatoria clavata;Leucothoe spinicarpa;Stylochoplana maculata;Polydorinae;Oerstedia dorsalis;Pisidia longicornis;Eualus cranchii;Lepidonotus squamatus;Galathea squamifera;Bivalvia;Orchomene humilis;Syllis armillaris;Bodotria;Copepoda;Gammarella fucicola;Tricellaria inopinata;Microdeutopus chelifer;Nicolea zostericola;Zeuxo;Botryllus schlosseri;Stylostomum ellipse;Cancer pagurus;Ascidiella aspersa;Cirratulidae;Watersipora subatra;Pectinidae;Ostracoda;Aoroides longimerus;Endeis spinosa;Anomia ephippium;Branchiomma bombyx;Musculus subpictus;Nicolea venustula;Chironomidae;Apocorophium acutum;Spio;Sabellidae;Jassa marmorata;urban ecology;Cycloporus papillosus;Doto;Hiatella arctica;Ampharetidae;Aonides oxycephala;Syllis;Ampithoe ramondi;Necora puber;Mysta picta;Botrylloides;Pholoe inornata;Spirorbis;Gammaropsis maculata;Terebellomorpha;Jassa falcata;Anoplodactylus petiolatus;Heteranomia squamula;Syllidia armata;Leodice;Crepidula fornicata;Maera grossimana;Clavelina lepadiformis;Mytilus;Echinogammarus stoerensis;Marinas;Laomedea flexuosa;Austrominius modestus;Polycirrus;Facelina;Psamathe fusca;Parvicardium pinnulatum;Dexamine spinosa;Aequipecten opercularis;Siriella clausii;Ophryotrocha;Janolus cristatus;Harmothoe extenuata;Pionosyllis;Microdeutopus gryllotalpa;Myrianida;Pterocirrus macroceros;Rissoa parva;Veneridae;Aora spinicornis;None;Gnathia maxillaris;Crisilla semistriata;Monocorophium acherusicum;Thecacera pennigera;Calliopidae;Thyone roscovita;Bugulina fulva;Marine invertebrates;Cancridae;Platynereis dumerilii;Psammechinus miliaris;Syllis gracilis;Ericthonius punctatus;Websterinereis glauca;Nematoda;Palaemon serratus;Goniodoris castanea;Retusidae;facilitation;Spionidae;Syllis hyalina;Lamellaria latens;Phtisica marina;Ciona intestinalis;Pista cristata;Cyanophthalma cordiceps;Nannonyx goesi;Corella eumyota;Perinereis cultrifera;Amblyosyllis Formosa;Lamellaria perspicua;non-indigenous species;Prostheceraeus vittatus;Eupolymnia nesidensis;Microprotopus longimanus;biotic resistance;Talochlamys pusio;Pilumnus hirtellus;Pherusa;Polititapes rhomboides;Ciona robusta;Kirchenpaueria pinnata;Gobiusculus flavescens;Stenothoe marina;Flabellina;Syllis columbretensis;Exogone;Nemertea;Eualus occultus;Hippolytidae;Aplidium;Lysidice ninetta;Harmothoe spinifera;Palaemon elegans;Lysianassa ceratina;Liocarcinus navigator;Harmothoe impar;Microdeutopus versiculatus;Stenothoe gallensis;Eulalia;Lumbrineris;Styela clava;Aora gracilis;Hippolyte varians;Alvania testae;Caprella acanthifera;Microdeutopus anomalus;Subadyte pellucida;Polynoidae;Janira maculosa;Janolus;Hesperibalanus fallax;Cymodoce;Asterocarpa humilis;Amathia pruvoti;Ctenodrilidae;Fabriciidae;Bugula neritina;Gammarus locusta;Sycon;Stenothoe monoculoides;predation;Diplosoma;Caprella equilibra;Alentia gelatinosa
DOI:
doi:10.5061/dryad.80780
摘要:
of predation (i.e. caging experiment), artificial structural complexity (i.e. mimics of turf-forming species), and their interactions (i.e. refuge effect

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