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Data from: Longer food chains in pelagic ecosystems: trophic energetics of animal body size and metabolic efficiency
负责人:
McGarvey, Richard
关键词:
Ecology: ecosystem Energetics Food web
DOI:
doi:10.5061/dryad.ps1h0
摘要:
to the hypothesis that greater energy flows permit higher trophic levels. We hypothesize that longer food chain length in pelagic ecosystems, compared
Data from: Phylogenetic diversity and coevolutionary signals among trophic levels change across a habitat edge
负责人:
关键词:
coevolution food web ParaFit phylogeny Phylomatic
DOI:
doi:10.5061/dryad.t5557
摘要:
phylogenetic diversity at different trophic levels (plants, herbivores, parasitoids) and signals of coevolution (i.e. phylogenetic congruence) among interacting
Data from: Amino acid-specific δ15N trophic enrichment factor in fish fed with formulated diets varying in protein quantity and quality
负责人:
Herzka, Sharon
关键词:
DOI:
doi:10.5061/dryad.843372d
摘要:
ations for identifying nitrogen (N) sources and estimating animal trophic level. Controlled experiments are essential for determining which dietary conditions influence
Data from: Reconstructing hyperdiverse food webs: gut content metabarcoding as a tool to disentangle trophic interactions on coral reefs
负责人:
关键词:
DOI:
doi:10.5061/dryad.t7pd371
摘要:
groups (families) and traditional, broad-scale trophic assignments explained fish diet across four different metrics of quantifying
Data from: The role of ecotype-environment interactions in intraspecific trophic niche partitioning subsequent to stocking
负责人:
关键词:
Salvelinus namaycush;phenotype-genotype;supplementation;stable isotope;fish stocking
DOI:
doi:10.5061/dryad.nt511dp
摘要:
ing introgressive hybridization on the trophic niches occupied by stocked, local and hybrid Lake Trout (Salvelinus namaycush) within populations of piscivorous and planktivoro
Data from: DNA metabarcoding unveils multi?scale trophic variation in a widespread coastal opportunist
负责人:
关键词:
Environmental DNA;Metabarcoding;Crustaceans;Foodwebs;Community Ecology;Diet Analysis
DOI:
doi:10.5061/dryad.sk2155m
摘要:
A thorough understanding of ecological networks relies on comprehensive information on trophic relationships among species. Since unpicking the diet
Data from: Out-of-sample predictions from plant–insect food webs: robustness to missing and erroneous trophic interaction records
负责人:
关键词:
novel interactions;food web;Lepidoptera;host-use model;Herbivory;trophic niche model;Holocene;plant-herbivore;introduced species;predictions
DOI:
doi:10.5061/dryad.5c1g6
摘要:
With increasing biotic introductions, there is a great need for predictive tools to anticipate which new trophic interactions will develop and whic
Data from: Can ancestry and morphology be used as surrogates for species niche relationships?
负责人:
关键词:
Similarity matrix;phylogeny;morphology;diet;isotopic ratios;freshwater fishes;Venezuela;Costa Rica
DOI:
doi:10.5061/dryad.0k6djh9x2
摘要:
t diets and stable isotopic ratios (?15N and ?13C), two common descriptors of the trophic niche, in fish assemblages of two small streams in the Neotropic
Data from: Tree diversity increases robustness of multi-trophic interactions
负责人:
关键词:
Diospyros japonica;Tetramorium wroughtonii;Aphis gossypii;tri-trophic;Crematogaster cf. nawai;Tuberculatus radisectuae;Eutrichosiphum tattakanum;Cinnamomum camphora;bottom-up;aphid;Nyssa sinensis;Camponotus vitiosus;Aphis odinae;Camponotus albosparsus;Aphis aurantii;Tuberculatus querceus;Lachnus tropicalis;Pheidole roberti;Tuberculatus castanocallis;Technomyrmex brunneus;Phylloxera castanea;Idesia polycarpa;Tuberculatus indicus;Paraparatrechina sauteri;Siculaphis vittoriensis;Prenolepis shanialena;Pochazia speculum;Machilus leptophylla;Tuberculatus glauca;Cyclobalanopsis glauca;Iridomyrmex anceps;Tapinoma melanocephalum;Castanea henryi;Machilus thunbergii;Neonipponaphis pustulosis;Dilobocondyla fouqueti;Dolichoderus taprobanae;Kerria lacca;Pheidole noda;redundancy;Sapindus saponaria;Hemiptera;Phylloxera querceus;Crematogaster cf. rogenhoferi;Daphniphyllum oldhamii;Mollitrichosiphum tenuicorpus;Cervaphis quercus;Membracidae;Camponotus cf. compressus;Monomorium floricola;Eutrichosiphum radisectuae;Quercus serrata;Machilus grijsii;Melia azedarach;insect-plant interactions;Lithocarpus glaber;Eutrichosiphum sclerophyllum;Tuberculatus capitatus;Nylanderia flavipes;Phoebe bournei;Choerospondias axillaris;Castanopsis fargesii;Tuberculatus stigmatus;Carebara altinoda;Pristomyrmex punctatus;Celtis biondii;Camponotus pseudoirritans;Polyrhachis dives;Manglietia yuyuanensis;Castanopsis sclerophylla;Elaeocarpus chinensis;insect;Ailanthus altissima;Eutrichosiphum pasaniae;Elaeocarpus glabripetalus;stability;Betacallis querciphaga;Formicidae;Elaeocarpus japonicus;2011-2014;tree;Acer davidii;Castanopsis eyrei;Tuberculatus japonicus;Ochetellus glaber;BEF-China;Eutrichosiphum heterotrichum;Quercus phillyreoides;Paratrechina longicornis;Lepisiota cf. capensis;Quercus fabri;Schima superba;Myzus persicae;Aphis citricidus;Quercus acutissima;Prenolepis naoroji;Cyclobalanopsis myrsinaefolia;coccid;Triadica cochinchinensis;Castanopsis carlesii;biodiversity;ecosystem functioning;Meliosma flexuosa;ant;Triadica sebifera;Rhus chinensis;Diphyllaphis quercus;Pochazia obapicula;Technomyrmex obscurior;Alniphyllum fortunei;Greenidea pallidipes;Liquidambar formosana;Interaction;Tuberculatus ceroerythros;Betula luminifera;Koelreuteria bipinnata
DOI:
doi:10.5061/dryad.847km00
摘要:
Multi-trophic interactions maintain critical ecosystem functions. Biodiversity is declining globally, while responses of trophic

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