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Data from: Defensive chemicals of neighboring plants limit visits of herbivorous insects: associational resistance within a plant population
负责人:
关键词:
Neighboring plants;Defensive traits;Associational effect;Neighborhood effect;Nicotiana tabacum;herbivore;nicotine
DOI:
doi:10.5061/dryad.6mn56r9
摘要:
ates that understanding of effects of plant defensive traits on plant-herbivore interactions requires careful consideration of the spatial distribution
Data from: Recent range expansion and agricultural landscape heterogeneity have only minimal effect on the spatial genetic str
负责人:
Carlier, Jean
关键词:
Landscape genetics Gene flow Genetic drift Cultural practises Emergent disease
DOI:
doi:10.5061/dryad.64p8t
摘要:
nsion on spatial genetic structure remains challenging. In the present study, we investigated the case of Mycosphaerella fijiensis-a plant pathogenic fungus that has recent
Data from: Resource overlap and dilution effects shape host plant use in a myrmecophilous butterfly
负责人:
Valdés, Alicia
关键词:
butterflies flowering phenology myrmecophily plant-herbivore interactions resource use spatial variation
DOI:
doi:10.5061/dryad.p3q2rq1
摘要:
on effect was stronger when neighbors flowered early. 5. Our results show that plant-herbivore interactions simultaneously depend on the spatio-temporal distribution
Data from: Spatial patterns of pathogenic and mutualistic fungi across the elevational range of a host plant
负责人:
关键词:
plant-fungal interactions;DNA metabarcoding;Pinus cembra;Plant\u2013soil (below-ground) interactions;Swiss stone pine;Host specificity;plant-soil feedback;Janzen-Connell Hypothesis
DOI:
doi:10.5061/dryad.66rm7
摘要:
h pathogenic and mutualistic fungi beyond the current elevational range of host plants may determine their potential range shifts under projected climate warming.
Data from: Defaunation increases the spatial clustering of lowland Western Amazonian tree communities
负责人:
Bagchi, Robert
关键词:
Determinants of plant community diversity and structure empty forest hunting Janzen-Connell hypothesis replicated spatial point patterns seed dispersal tropical forest plant-animal interactions density-dependence
DOI:
doi:10.5061/dryad.88bq8
摘要:
on and spatial structure of plant communities and impair ecosystem functions like carbon storage. 2.We analysed spatial patterns of tree recruitment within si
Data from: Spatial variability in a plant-pollinator community across a continuous habitat: high heterogeneity in the face of apparent uniformity
负责人:
关键词:
spatial variation;Honey bees;mosaic community;local scale-networks;beta-diversity;plant-pollinator interactions
DOI:
doi:10.5061/dryad.076v807
摘要:
Large-scale spatial variability in plant-pollinator communities (e.g., along geographic gradients, across different landscapes) is relative
Data from: Lack of spatial structure for phenotypic and genetic variation despite high self-fertilization in Aquilegia canadensis (Ranunculaceae)
负责人:
关键词:
gene flow;analysis of molecular variance;Aquilegia canadensis;hierarchical genetic structure;Bayesian cluster analysis;floral morphology;Holocene
DOI:
doi:10.5061/dryad.588d7
摘要:
two plots nested within each of seven rock outcrops distributed over several km, and comparing the spatial pattern of phenotypic variati
Data from: Impact of past climatic changes and resource availability on the population demography of three food-specialist bees
负责人:
关键词:
demographic history food specialization phytophagous insects intraspecific diversity population fragmentation coalescent simulations
DOI:
doi:10.5061/dryad.0g2f5
摘要:
st climate, and also the potential impact of host plant species abundance, on intraspecific genetic variation in three co-distributed and related special
Data from: Feeding and damage-induced volatile cues make beetles disperse and produce a more even distribution of damage for sagebrush
负责人:
关键词:
induced resistance;Spatial distribution;over-dispersed;herbivore behavior;movement;plant communication;Dispersion;Trirhabda
DOI:
doi:10.25338/B8162M
摘要:
within a plant.? Larvae damaged many leaves on a plant but removed relatively little tissue from each leaf. 5. Herbivore movement and the spatial pattern

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