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Data from: Progressive sensitivity of trophic levels to warming underlies an elevational gradient in ant-aphid mutualism strength
负责人:
关键词:
Elevation;Aphis varians;Formica podzolica;Ant-aphid mutualism;Multi-trophic interactions;Chamerion angustifolium
DOI:
doi:10.5061/dryad.kf2553j
摘要:
-aphid protection mutualism. To do so, we characterized the multi-trophic interactions among the ant Formica podzolica, the aphid Aphis varians, and aphi
Data from: Mapping the imprint of biotic interactions on ?-diversity
负责人:
关键词:
partial correlation networks;interaction network;graphical model;graphical lasso;meta-communities;Holocene;?-diversity
DOI:
doi:10.5061/dryad.5b58400
摘要:
ups. Using simulated community data generated from a multi-trophic model, we showed that this method can approximate biotic interactions in multi-trophic
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 interactions
Data from: Spatial insurance in multi-trophic metacommunities
负责人:
关键词:
trophic interactions;environmental change;Dispersal;metacommunity
DOI:
doi:10.5061/dryad.360k8v0
摘要:
ity of dispersal to mitigate effects of environmental change might vary among trophic groups, potentially resulting in changes in trophic interactions
Data from: Species traits as drivers of food web structure
负责人:
Laigle, Idaline
关键词:
interactions functional structure network structure
DOI:
doi:10.5061/dryad.1sg4j
摘要:
ure is the result of 1) the match between consumer and resource traits, which determine the occurence of a trophic interaction between them, and 2) the distributi
Data from: Landscape composition, configuration, and trophic interactions shape arthropod communities in rice agroecosystems
负责人:
Dominik, Christophe
关键词:
landscape heterogeneity trophic interactions natural enemies arthropods farmland biodiversity rice pest control
DOI:
doi:10.5061/dryad.6mv5372
摘要:
e is known about the multi-scale effects of landscape heterogeneity on arthropod communities in rice agroecosystems, especially in combination with trophic interactions.
Data from: Indirect interactions shape selection in a multi-species foodweb
负责人:
关键词:
Ecology: evolutionary;Parasitoids;Ecology: community;food web;Interactions: coevolution;Evolution: host\/parasite;Interactions: trophic;Foraging: ecology;insect;Selection: natural
DOI:
doi:10.5061/dryad.1sv2t4c
摘要:
a plant, its herbivores, and enemies that select for opposite defensive phenotypes in one of the herbivores. We show that ecological indirect interactions
Data from: Plant adaptation to different climates shapes the strengths of chemically-mediated tritrophic interactions
负责人:
关键词:
Multi-trophic interactions;Cardamine;Entomopathogenic nematodes;root herbivore;plant\u2013herbivore interactions;terpenoids volatile compounds;Ecological gradients;indirect plant defences
DOI:
doi:10.5061/dryad.174v48d
摘要:
und herbivory and tritrophic interactions involving plant herbivores and their predators. To address heritable, climate-driven, variation of root traits mediati
Data from: Light availability impacts structure and function of phototrophic stream biofilms across domains and trophic levels
负责人:
关键词:
Protists;Transcriptomics;Algae;bacteria;Freshwater;Microbial Eukaryotes
DOI:
doi:10.5061/dryad.gj3vj
摘要:
sity with biotic interactions across domains and trophic levels. Here, we examine how community structure and function of these biofilms respond to varying light availability
Data from: Symbiotic polydnavirus and venom reveal parasitoid to its hyperparasitoids
负责人:
关键词:
plant-mediated interaction network;multitrophic interactions;herbivore saliva;Cotesia glomerata;Pieris brassicae;Brassica oleracea;herbivore-induced plant volatiles;Lysibia nana;parasitic wasp
DOI:
doi:10.5061/dryad.ss5r686
摘要:
ide to the parasitoid’s progeny by initiating a multi-trophic chain of interactions that reveals the parasitoid larvae to their enemies. These enemies ar

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