Predicting tropical insect herbivore abundance from host plant traits and phylogeny
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Ground-Vegetation Clutter Affects Phyllostomid Bat Assemblage Structure in Lowland Amazonian ForestInsect herbivory in a mature Eucalyptus woodland canopy depends on leaf phenology but not CO2 enrichment.Why are there more arboreal ant species in primary than in secondary tropical forests?Combining food web and species distribution models for improved community projections.Disentangling the diversity of arboreal ant communities in tropical forest treesWoody plant phylogenetic diversity mediates bottom-up control of arthropod biomass in species-rich forests.Forest carbon in lowland Papua New Guinea: Local variation and the importance of small trees.Trophic phylogenetics: evolutionary influences on body size, feeding, and species associations in grassland arthropods.Host associations and beta diversity of fungal endophyte communities in New Guinea rainforest trees.Host range expansion is density dependent.Landscape simplification weakens the association between terrestrial producer and consumer diversity in Europe.Significant Local-Scale Plant-Insect Species Richness Relationship Independent of Abiotic Effects in the Temperate Cape Floristic Region Biodiversity Hotspot.Coevolutionary arms race versus host defense chase in a tropical herbivore-plant system.Turnover of plant lineages shapes herbivore phylogenetic beta diversity along ecological gradients.Community structure of insect herbivores is driven by conservatism, escalation and divergence of defensive traits in Ficus.Variably hungry caterpillars: predictive models and foliar chemistry suggest how to eat a rainforest.Effects of indole glucosinolates on performance and sequestration by the sawfly Athalia rosae and consequences of feeding on the plant defense system.Mesophyll cell-sucking herbivores (Cicadellidae: Typhlocybinae) on rainforest trees in Papua New Guinea: local and regional diversity of a taxonomically unexplored guildBeta diversity of herbivorous insects is coupled to high species and phylogenetic turnover of plant communities across short spatial scales in the Cape Floristic RegionHerbivory, growth rates, and habitat specialization in tropical tree lineages: implications for Amazonian beta-diversityDeterminants of litter decomposition rates in a tropical forest: functional traits, phylogeny and ecological successionThe island rule of body size demonstrated on individual hosts: phytophagous click beetle species grow larger and predators smaller on phylogenetically isolated trees
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Predicting tropical insect herbivore abundance from host plant traits and phylogeny
description
article
@en
im August 2012 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в серпні 2012
@uk
name
Predicting tropical insect herbivore abundance from host plant traits and phylogeny
@en
Predicting tropical insect herbivore abundance from host plant traits and phylogeny
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type
label
Predicting tropical insect herbivore abundance from host plant traits and phylogeny
@en
Predicting tropical insect herbivore abundance from host plant traits and phylogeny
@nl
prefLabel
Predicting tropical insect herbivore abundance from host plant traits and phylogeny
@en
Predicting tropical insect herbivore abundance from host plant traits and phylogeny
@nl
P2093
P2860
P356
P1433
P1476
Predicting tropical insect herbivore abundance from host plant traits and phylogeny
@en
P2093
George D. Weiblen
Petr Klimes
Scott E. Miller
Timothy J. S. Whitfeld
Vojtech Novotny
P2860
P304
P356
10.1890/11-0503.1
P407
P577
2012-08-01T00:00:00Z