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Data from: The changing environment of conservation conflict: geese and farming in Scotland
负责人:
关键词:
goose conservation conflict;conservation conflict;habitat modification;Branta leucopsis;grass damage;human-wildlife conflict;barnacle geese;Spatial ecology;population dynamics;climate change
DOI:
doi:10.5061/dryad.pj59h
摘要:
ve spread to previously less favoured farms. 6.Synthesis and applications. Our study demonstrates the primary role of habitat modification in the emerge
Data from: Incorporating anthropogenic effects into trophic ecology: predator-prey interactions in a human-dominated landscape
负责人:
关键词:
large herbivores;habitat modification;trophic cascade;mesopredators;apex predators;top-down versus bottom-up
DOI:
doi:10.5061/dryad.v702q
摘要:
represent additional predators in the system. Using structural equation modelling, we found that apex predators suppress lower trophic levels, esp
Data from: An empirical test of the mechanistic underpinnings of interference competition
负责人:
关键词:
Manorina melanocephala;Anthropocene;overabundant native species;population control;foraging;noisy miner;cull;harassment;interference competition;Foraging rate
DOI:
doi:10.5061/dryad.n8d6g1s
摘要:
. Where competition interacts with anthropogenic habitat modification, this natural ecosystem process can become a threatening process. Understandi
Data from: Species co-occurrence networks show reptile community reorganization under agricultural transformation
负责人:
关键词:
Anthropogenic land-use;Agroecosystems;global change;Holocene
DOI:
doi:10.5061/dryad.3j7f6
摘要:
Agricultural transformation represents one of the greatest threats to biodiversity, causing degradation and loss of habitat, leading to change
Data from: Compounded perturbations in coastal areas: contrasting responses to nutrient enrichment and the regime of storm-related disturbance depend
负责人:
Bertocci, Lacopo
关键词:
climate change eutrophication mean intensity rocky intertidal storminess temporal variance
DOI:
doi:10.5061/dryad.kv5h0
摘要:
ensity for shaping the structure of assemblages. Specifically, climate-related physical disturbances and nutrient inputs due to natural and/or anthropogenic activiti
Data from: Responses of interspecific associations in mixed-species bird flocks to selective logging
负责人:
关键词:
Multi-species groups;Flocking propensity;Network analysis;null model;abundance;Insectivore
DOI:
doi:10.5061/dryad.09j54
摘要:
interspecific associations to anthropogenic environmental change are poorly understood. 2. Selective logging is pervasive in the tropics, and can affect associations in mixed
Data from: Landscape Corridors (LSCorridors): a new software package for modeling ecological corridors based on landscape patterns and species
负责人:
关键词:
landscape connectivity;landscape ecology;matrix permeability;corridor modeling;species perception
DOI:
doi:10.5061/dryad.r7kj2
摘要:
biodiversity conservation, especially in anthropogenic landscapes. LSCorridors provides what we may call a zone for conservation, showing a set of connected area
Data from: Species characteristics affect local extinctions
负责人:
关键词:
Portulacaceae;local extinction;phylogenetic;habitat specialists;Amaranthaceae;Violaceae;Potamogetonaceae;Vitaceae;Primulaceae;Papaveraceae;Urticaceae;Lythraceae;Scrophulariaceae;Saxifragaceae;Araliaceae;Betulaceae;Santalaceae;Droseraceae;Iridaceae;Dryopteridaceae;Pteridaceae;Fumariaceae;Nyctaginaceae;Ceratophyllaceae;Caryophyllaceae;Chenopodiaceae;Dioscoreaceae;Salicaceae;Aquifoliaceae;Commelinaceae;Cupressaceae;Liliaceae;Typhaceae;Verbenaceae;Haloragaceae;Alismataceae;Ericaceae;Umbelliferae;Cannabaceae;Najadaceae;Caprifoliaceae;Lemnaceae;Guttiferae;Asclepiadaceae;Rosaceae;Nyssaceae;Platanaceae;Sparganiaceae;Cornaceae;Elaeagnaceae;Magnoliaceae;Pontederiaceae;Taxaceae;Limnanthaceae;Annonaceae;Berberidaceae;Rhamnaceae;Cactaceae;Ranunculaceae;Cucurbitaceae;Moraceae;Fagaceae;Geraniaceae;Xyridaceae;Osmundaceae;Lentibulariaceae;Labiatae;Cyperaceae;Gentianaceae;Juncaginaceae;Ulmaceae;Amaryllidaceae;Malvaceae;Polemoniaceae;Historical;Monotropaceae;Aristolochiaceae;Convolvulaceae;Aceraceae;Thelypteridaceae;Juncaceae;Staphyleaceae;Linaceae;Sarraceniaceae;Pyrolaceae;Rubiaceae;Simbaroubaceae;Bignoniaceae;Solanaceae;Brassicaceae;Anacardiaceae;Oleaceae;Hippocastanaceae;1890-2003;Hamamelidaceae;Hydrocharitaceae;Valerianaceae;Nymphaeaceae;Lycopodiaceae;Plantaginaceae;Dennstaedtiaceae;Saururaceae;Araceae;Juglandaceae;Thymelaeaceae;Campanulaceae;Grossulariaceae;Oxalidaceae;Penthoraceae;rarity;Crassulaceae;Rutaceae;Cistaceae;Poaceae;Menispermaceae;equisetaceae;Apocynaceae;Orchidaceae;Balsaminaceae;species characteristics;Euphorbiaceae;Hydrophyllaceae;Eriocaulaceae;Lauraceae;Pinacae;Molluginaceae;Polygalaceae;Celastraceae;Cuscutaceae;Selaginellaceae;prairie;Fabaceae;Onograceae;Dipacaceae;Ophioglossaceae;Tiliaceae;Asteraceae;Orobanchaceae;Isetaceae;Phytolaccaceae
DOI:
doi:10.5061/dryad.231m570
摘要:
ny vulnerable species. Species characteristics help predict responses to anthropogenic environmental change and may help predict likelihood of extinction. Phylogenetic

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