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1.
Environ Entomol ; 39(4): 1276-82, 2010 Aug.
Article in English | MEDLINE | ID: mdl-22127178

ABSTRACT

The raspberry weevil, Aegorhinus superciliosus (Guérin) (Coleoptera: Curculionidae), is the most important pest in blueberry and raspberry fields in the south of Chile. In this study, we investigated the electroantennographic and behavioral responses of A. superciliosus to semiochemicals released from conspecific individual adults, with particular attention to male attraction to females. Odors released from females significantly attracted males in a Y-tube olfactometer. Gas chromatographic and mass spectral analysis of female volatile extracts revealed the presence of limonene and α-pinene. Electroantennogram recordings from both sexes indicated that males of A. superciliosus possess olfactory sensitivity for the R isomer of limonene and α-pinene, whereas females only perceived R-limonene. Behavioral assays using synthetic compounds showed that only R-limonene elicited an attraction response from male weevils. Field experiments confirmed the laboratory results, showing that R-limonene was attractive to weevils. This is the first report of intraspecific chemical communication in this weevil. We discuss the origin of these compounds, their possible role in the sexual behavior of this species, and their potential use in a pest control strategy.


Subject(s)
Arthropod Antennae/physiology , Sex Attractants/isolation & purification , Sexual Behavior, Animal , Weevils/physiology , Animals , Female , Male , Odorants , Volatile Organic Compounds/chemistry , Weevils/chemistry
2.
Environ Entomol ; 38(1): 192-7, 2009 Feb.
Article in English | MEDLINE | ID: mdl-19791614

ABSTRACT

Numerous studies of insect species have shown that a subset of female cuticular hydrocarbons is used as short-range or contact pheromones. Here, we studied the possible use of contact pheromones in the mating behavior of the weevil Aegorhinus superciliosus, a native species of Chile. Males mounted females only after antennal contact with the female's cuticle, and only 33% of the males attempted to mate with dead females washed with solvent. When a glass rod (dummy) was coated with female cuticular extracts, males exhibited behaviors similar to those observed with females. A preliminary gas chromatography-mass spectrometry (GC-MS) analysis of cuticular extracts indicated that males and females share a series of aliphatic hydrocarbons but that the relative abundance of some of these compounds differ between the sexes. These results suggest that cuticular lipids mediate mating behavior of the raspberry weevil and provide the first evidence of contact pheromones in curculionids.


Subject(s)
Sex Attractants/physiology , Sexual Behavior, Animal/physiology , Weevils/physiology , Animals , Female , Integumentary System , Male , Sex Attractants/chemistry
3.
Environ Entomol ; 38(3): 781-9, 2009 Jun.
Article in English | MEDLINE | ID: mdl-19508787

ABSTRACT

The objective of this study was to evaluate the role of host volatiles in the relationship between a blueberry plant Vaccinium corymbosum L. and the raspberry weevil Aegorhinus superciliosus (Guérin) (Coleoptera: Curculionidae), the principal pest of blueberry in the south of Chile. Volatiles from the aerial part of different phenological stages of the host were collected on Porapak Q and analyzed by coupled gas chromatography-mass spectrometry (GC-MS). Several chemical groups were identified including green leaf volatiles, aromatic compounds, and terpenes. The olfactometric responses of A. superciliosus toward different odor sources were studied in a four-arm olfactometer. Blueberry shoots at the phenological stages of fruit set, and blue-pink fruit color elicited the greatest behavioral responses from weevils. Five compounds (2-nonanone, eucalyptol, R- and S-limonene, and 4-ethyl benzaldehyde) elicited an attractant behavioral response from A. superciliosus. The results suggest the host location behavior of A. superciliosus could be mediated by volatiles derived from V. corymbosum. This work has identified a number of compounds with which it is possible to develop a lure for the principal pest of blueberry in southern Chile.


Subject(s)
Behavior, Animal/physiology , Blueberry Plants/metabolism , Pest Control, Biological , Volatile Organic Compounds/metabolism , Weevils/physiology , Animals , Blueberry Plants/growth & development , Female , Fruit/growth & development , Male , Population Dynamics , Seasons , Volatile Organic Compounds/analysis
4.
J Agric Food Chem ; 50(8): 2283-92, 2002 Apr 10.
Article in English | MEDLINE | ID: mdl-11929285

ABSTRACT

Plant growth inhibitory effects of acetophenones 1-6, tremetones 7-12, and MeOH and CH(2)Cl(2) extracts from the aerial parts of Baccharis linnearis, Baccharis magellanica, and Baccharis umbelliformis collected in Chile were assayed as growth inhibitory activity in ranges of 10-500 microM and 0.1-150 ppm, respectively. The effects on seedling growth, germination, and respiration of ryegrass, lettuce, green tomato, and red clover weedy target species were measured. In addition to the inhibitory activity on bleaching of crocin induced by alkoxyl radicals, these compounds also demonstrated scavenging properties toward 2,2-diphenyl-1-picrylhydrazyl in thin-layer chromatography autographic and spectrophotometric assays. In addition, acetophenones and tremetones also showed inhibition of H(+) uptake and oxygen uptake respiration in isolated chloroplasts and mitochondria, respectively. Our results indicate that 1, 4, 7-12, and CH(2)Cl(2) extracts interfere with the dicot preemergence properties, mainly energy metabolism of the seeds at the level of respiration. These compounds appear to have selective effects on the radicle more than shoot growth of dicot seeds. Also, the levels of radicle inhibition obtained with some compounds on Physalis ixocarpa and Trifolium pratense are totally comparable to those of ovatifolin, a known natural growth inhibitor. This behavior might be responsible for its plant growth inhibitory properties and its possible role as an allelopathic agent.


Subject(s)
Acetophenones/pharmacology , Asteraceae/chemistry , Plant Development , Plant Growth Regulators/pharmacology , Antioxidants/pharmacology , Chile , Chloroplasts/drug effects , Chloroplasts/metabolism , Free Radical Scavengers , Hydrogen/metabolism , Mitochondria/drug effects , Mitochondria/metabolism , Oxygen/metabolism , Plant Extracts/pharmacology , Plants/drug effects , Plants/ultrastructure , Seeds/drug effects
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