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Journal Article
Science (American Association for the Advancement of Science), ISSN 1095-9203, 2018, Volume 361, Issue 6405, pp. 916 - 919
Journal Article
The Plant cell, ISSN 1532-298X, 2008, Volume 20, Issue 2, pp. 482 - 494
Journal Article
Plant, cell and environment, ISSN 0140-7791, 2011, Volume 34, Issue 7, pp. 1088 - 1103
ABSTRACT Determining links between plant defence strategies is important to understand plant evolution and to optimize crop breeding strategies. Although... 
Zea mays | root herbivory | synergy | pathogens | induced defence | herbivore‐induced plant volatiles | resistance | Resistance | Herbivore-induced plant volatiles | Pathogens | Induced defence | Root herbivory | Synergy | DEFENSE | COEVOLUTION | HERBIVORES | PLANT VOLATILES | ZEA-MAYS | SPODOPTERA | VOLATILE EMISSION | PLANT SCIENCES | GENETICS | herbivore-induced plant volatiles | ATTRACTION | INSIGHTS | Green Fluorescent Proteins | Plant Diseases - immunology | Plant Diseases - microbiology | Biomass | Coleoptera - growth & development | Ascomycota - pathogenicity | Colletotrichum - pathogenicity | Larva - growth & development | Larva - pathogenicity | Coleoptera - pathogenicity | Volatile Organic Compounds - chemistry | Genetic Linkage | Plant Leaves - chemistry | Zea mays - genetics | Plant Leaves - parasitology | Volatile Organic Compounds - analysis | Feeding Behavior | Genotype | Zea mays - parasitology | Immunity, Innate | Plant Roots - microbiology | Animals | Zea mays - microbiology | Plant Roots - chemistry | Zea mays - immunology | Plant Diseases - parasitology | Spodoptera - pathogenicity | Plant Leaves - microbiology | Plant Roots - parasitology | Spodoptera - growth & development | Corn | Drug resistance in microorganisms | Evolution | Plants | Historical account | herbivores | Crops | natural populations | ecotypes | insects | Genotypes | breeding
Journal Article
Journal Article
PLoS ONE, ISSN 1932-6203, 09/2015, Volume 10, Issue 9, p. e0136689
Feeding by insect herbivores activates plant signaling pathways, resulting in the enhanced production of secondary metabolites and other resistance-related... 
INSECT HERBIVORES | SALICYLIC-ACID | MULTIDISCIPLINARY SCIENCES | TOMATO PLANTS | INDIRECT DEFENSE | TRADE-OFFS | JASMONIC ACID | HELICOVERPA-ZEA | SYSTEMIC ACQUIRED-RESISTANCE | COTTON | PATHOGENS | Gibberellins - immunology | Soybeans - parasitology | Soybeans - drug effects | Oxylipins - immunology | Thiadiazoles - immunology | Gossypium - parasitology | Cyclopentanes - immunology | Gossypium - immunology | Crops, Agricultural - immunology | Dicarboxylic Acids - immunology | Oryza - parasitology | Oryza - immunology | Gossypium - drug effects | Spodoptera - physiology | Crops, Agricultural - parasitology | Crops, Agricultural - drug effects | Zea mays - drug effects | Soybeans - immunology | Disease Resistance - drug effects | Zea mays - parasitology | Oryza - drug effects | Herbivory - drug effects | Animals | Zea mays - immunology | Spodoptera - growth & development | Physiological aspects | Research | Plant immunology | Plant parasites | Larvae | Crosstalk | Plant resistance | Hormones | Cotton | Soil treatment | Signal transduction | Secondary metabolites | Pathways | Metabolites | Plant tissues | Jasmonic acid | Legumes | Salicylic acid | Pathogens | Crops | Beneficial arthropods | Corn | Adjuvants | Seed treatments | Feeding | Signaling | Injury prevention | Acids | Insects | Morphology | Herbivores | Gibberellic acid | Fitness
Journal Article