Open Journal of Ecology

Open Journal of Ecology

ISSN Print: 2162-1985
ISSN Online: 2162-1993
www.scirp.org/journal/oje
E-mail: oje@scirp.org
"Insect herbivory along environmental gradients"
written by Nigel R. Andrew, Isobel R. Roberts, Sarah J. Hill,
published by Open Journal of Ecology, Vol.2 No.4, 2012
has been cited by the following article(s):
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[5] When 'Higher'means 'Hungrier': Climate and population trait differences drive increased insect herbivory with elevation in a perennial subalpine wildflower
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[7] Mixed effects of landscape structure, tree diversity and stand's relative position on insect and pathogen damage in riparian poplar forests
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[8] Microclimate structures communities, predation and herbivory in the High Arctic
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[9] Assessing fluctuation of ant populations in a distinct ecological habitat to track climate change effects
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[10] Herbivory and leaf traits of Amazonian tree species as affected by irradiance
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[11] Latitudinal gradient in the intensity of biotic interactions in terrestrial ecosystems: sources of variation and differences from the diversity gradient revealed by meta …
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[12] Insect herbivory and herbivores of Ficus species along a rain forest elevational gradient in Papua New Guinea
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[13] Phytochemical screening, GC-MS profiling of invasive cocklebur (Xanthium strumarium)-insect-pathogen interaction and simulated volatile chemical signaling at …
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[14] Weak latitudinal gradients in insect herbivory for dominant rangeland grasses of North America
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[15] Response of a rice insect pest, Scirpophaga incertulas (Lepidoptera: Pyralidae) in warmer world
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[16] Elevational relationship between functional leaf traits and insect herbivory in two cloud forest understory species in Mexico
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[17] Leaf traits mediate changes in invertebrate herbivory along broad environmental gradients on Mt. Kilimanjaro, Tanzania
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[18] Biases in studies of spatial patterns in insect herbivory
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[19] The latitudinal herbivory hypothesis revisited: To be part is to be whole
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[20] Patrones de depredación de orugas con colores crípticos y aposemáticos/Caterpillar depredation patterns with cryptic colors and aposematics
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[21] Global patterns of insect herbivory in gap and understorey environments, and their implications for woody plant carbon storage
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[22] Intraspecific Variation in Plant-Animal Interactions of the Brassicaceae Family Along a Steep Rainfall Gradient in the Eastern Mediterranean Basin
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[23] 한국 남부 온대림 초식 곤충 식흔량에 영향을 주는 식물 다양성과 밀도
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[24] Role hmyzí herbivorie v populačním cyklu rostlin na příkladu čeledi Lycaenidae
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[25] Latitudinal patterns of herbivore pressure in a temperate herb support the biotic interactions hypothesis
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[26] Latitudinal variation in seagrass herbivory: Global patterns and explanatory mechanisms
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[27] Interacciones biológicas y patrones espaciales de diversidad: plantas, artrópodos herbívoros y herbivoría en gradientes altitudinales
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[28] Plant Diversity and Density, Driving Forces of the Feeding Activity of Herbivores in a Temperate Forest of Southern South Korea
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[29] Patterns and drivers of herbivore diversity and invertebrate herbivory along elevational and land use gradients at Mt. Kilimanjaro, Tanzania
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[30] Morphological and functional diversity of foliar damage on Quercus mongolica Fisch. ex Ledeb.(Fagaceae) by herbivorous insects and pathogenic fungi
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[31] Interactive effects of climate and nutrient enrichment on patterns of herbivory by different feeding guilds in mangrove forests
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[32] Higher predation risk for insect prey at low latitudes and elevations
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[33] Tree diversity increases levels of herbivore damage in a subtropical forest canopy: evidence for dietary mixing by arthropods?
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[34] Responses of insect herbivores and herbivory to habitat fragmentation: a hierarchical meta‐analysis
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[35] The association of leaf lifespan and background insect herbivory at the interspecific level
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[36] Forest diversity effects on insect herbivores: do leaf traits matter?
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[37] Plant-herbivore interactions along elevational gradient: Comparison of field and common garden data
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[38] A Framework for Predicting Intraspecific Variation in Plant Defense
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[39] Latitudinal variation in herbivory: hemispheric asymmetries and the role of climatic drivers
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[40] Is there a latitudinal gradient in the proportion of species with spinescence?
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[41] Galling Insect Species Richness and Leaf Herbivory in an Abrupt Transition Between Cerrado and Tropical Dry Forest
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[42] Global patterns in background losses of woody plant foliage to insects
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[43] The equal effectiveness of different defensive strategies
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[44] Mutualism with aphids affects the trophic position, abundance of ants and herbivory along an elevational gradient
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[45] Feeding guild-‐specific effects of tree species richness on herbivory in a subtropical forest canopy
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[46] Genetic diversity and adaptation in Eucalyptus pauciflora
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[47] Biogeographical variation in arthropod communities on
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[48] Potential impacts of climate change on insect communities: a transplant experiment
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[49] Spatial variation in leaf traits and herbivore community within the beech canopy between two different latitudes
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[50] Biogeographical variation in arthropod communities on coyote bush, Baccharis pilularis
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[51] Herbivory makes major contributions to ecosystem carbon and nutrient cycling in tropical forests
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[52] Confirmation bias leads to overestimation of losses of woody plant foliage to insect herbivores in tropical regions
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[53] Plant defense against insect herbivores
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[54] Patterns of insect herbivory on four Australian understory plant species
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[55] Different mechanisms explain feeding type-specific patterns of latitudinal variation in herbivore damage among diverse feeding types of herbivorous insects
Basic and Applied Ecology, 2013
[56] Patterns of insect herbivory on four A ustralian understory plant species
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