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1.
Sci Rep ; 11(1): 2105, 2021 01 22.
Article in English | MEDLINE | ID: mdl-33483578

ABSTRACT

Host plant attributes are essential factors determining the population dynamics of herbivorous insects. The developmental stage of host plants, in particular, may affect the biology of Grapholita molesta (Busck), a possibility that has rarely been examined. Here we assessed the effect of developmental stage of plum, peach, and apple fruits on the development and fecundity performance of G. molesta, along with an examination of the firmness and sugar content of the fruits. Among the fruits collected earliest (May 31), plum and apple were better food sources for G. molesta compared to peach in terms of development, reproduction, and life table parameters. However, despite the higher sugar content in peach, G. molesta larvae showed a lower rate of fruit penetration in peach, probably due to fruit firmness. In the later-collected fruit (June 25), both peach and apple were better than plum, as peach and apple were softer and had higher sugar content. Nevertheless, the penetration rate of larva was still low in peach probably due to pubescence on the fruit surface. Although the plum fruits in the later collection date were softer with higher sugar content, there was a negative impact on the development and reproduction because fruits started to liquefy earlier. In conclusion, the developmental stage of fruits with changes in fruit firmness or sugar content affected the development and reproduction of G. molesta, and apple would be the best food source.


Subject(s)
Fertility/physiology , Fruit/growth & development , Malus/growth & development , Prunus domestica/growth & development , Prunus persica/growth & development , Animals , Female , Fruit/metabolism , Fruit/parasitology , Host-Parasite Interactions , Larva/physiology , Malus/metabolism , Malus/parasitology , Moths/physiology , Plant Diseases/parasitology , Population Dynamics , Prunus domestica/metabolism , Prunus domestica/parasitology , Prunus persica/metabolism , Prunus persica/parasitology , Seasons , Species Specificity , Sucrose/metabolism
2.
PLoS One ; 14(5): e0217492, 2019.
Article in English | MEDLINE | ID: mdl-31150441

ABSTRACT

Both Grapholita molesta (Busck) and Grapholita dimorpha Komai (Lepidoptera: Tortricidae) are important pests of pome and stone fruits. Mature fruits of peach and plum have been tested as food sources for G. molesta, but no studies have examined the suitability of immature fruits, which are the fruit stage more likely to be available for the spring populations of both G. molesta and G. dimorpha. Thus, we evaluated immature fruits of peach, plum, and apple as food sources by assessing their effects on biological and behavioral attributes of these moths in the laboratory. Immature fruits were collected in May and June of 2016 and again in 2017. The first-instar larvae of G. molesta preferred either peach or plum, which showed exit rates of mature larvae of 81.0 and 100.0% for the two fruits, respectively. On peach, development time was shorter, and fecundity was lower than plum. However, G. dimorpha preferred plum and apple, showing the lowest fruit-boring rate and lowest mature larval exit rate on peach, from which only one female moth emerged but produced no eggs. In conclusion, it seems that at the immature fruit stage, plum and apple are better food sources for both G. molesta and G. dimorpha than is peach.


Subject(s)
Feeding Behavior/physiology , Larva/growth & development , Moths/physiology , Animals , Female , Fertility/physiology , Fruit , Male , Malus/parasitology , Prunus domestica/parasitology , Prunus persica/parasitology , Seasons
3.
J Chem Ecol ; 43(9): 891-901, 2017 Sep.
Article in English | MEDLINE | ID: mdl-28836040

ABSTRACT

Yeast-insect interactions have been well characterized in drosophilid flies, but not in tephritid fruit flies, which include many highly polyphagous pest species that attack ripening fruits. Using the Queensland fruit fly (Bactrocera tryoni) as our model tephritid species, we identified yeast species present in the gut of wild-collected larvae and found two genera, Hanseniaspora and Pichia, were the dominant isolates. In behavioural trials using adult female B. tryoni, a fruit-agar substrate inoculated with Pichia kluyveri resulted in odour emissions that increased the attraction of flies, whereas inoculation with Hanseniaspora uvarum, produced odours that strongly deterred flies, and both yeasts led to decreased oviposition. Larval development trials showed that the fruit-agar substrate inoculated with the 'deterrent odour' yeast species, H. uvarum, resulted in significantly faster larval development and a greater number of adult flies, compared to a substrate inoculated with the 'attractive odour' yeast species, P. kluyveri, and a yeast free control substrate. GC-MS analysis of volatiles emitted by H. uvarum and P. kluyveri inoculated substrates revealed significant quantitative differences in ethyl-, isoamyl-, isobutyl-, and phenethyl- acetates, which may be responsible for the yeast-specific olfactory responses of adult flies. We discuss how our seemingly counterintuitive finding that female B. tryoni flies avoid a beneficial yeast fits well with our understanding of female choice of oviposition sites, and how the contrasting behavioural effects of H. uvarum and P. kluyveri raises interesting questions regarding the role of yeast-specific volatiles as cues to insect vectors. A better understanding of yeast-tephritid interactions could assist in the future management of tephritid fruit fly pests through the formulation of new "attract and kill" lures, and the development of probiotics for mass rearing of insects in sterile insect control programs.


Subject(s)
Pichia/physiology , Saccharomycetales/physiology , Tephritidae/microbiology , Animals , Female , Insect Control , Larva/anatomy & histology , Larva/microbiology , Larva/physiology , Odorants/analysis , Oviposition , Pest Control, Biological , Pichia/isolation & purification , Plant Diseases/parasitology , Prunus domestica/parasitology , Prunus persica/parasitology , Psidium/parasitology , Reproduction , Saccharomycetales/isolation & purification , Smell , Tephritidae/anatomy & histology , Tephritidae/physiology
4.
Biomed Chromatogr ; 30(11): 1721-1727, 2016 Nov.
Article in English | MEDLINE | ID: mdl-27106875

ABSTRACT

This study was conducted to characterize the residual level and perform a risk assessment on buprofezin formulated as an emulsifiable concentrate, wettable powder, and suspension concentrate over various treatment schedules in plum (Prunus domestica). The samples were extracted with an AOAC quick, easy, cheap, effective, rugged, and safe, 'QuEChERS', method after major modifications. As intrinsic interferences were observed in blank plum samples following dispersive-solid phase extraction (consisting of primary secondary amine and C18 sorbents), amino cartridges were used for solid-phase extraction. Analysis was carried out using liquid chromatography with diode array detection and confirmed by liquid chromatography-tandem mass spectrometry. The method showed excellent linearity with determination coefficient (R2 = 1) and satisfactory recoveries (at two spiking levels, 0.5 and 2.5 mg/kg) between 90.98 and 94.74% with relative standard deviation (RSD) ≤8%. The limit of quantification (0.05 mg/kg) was considerably lower than the maximum residue limit (2 mg/kg) set by the Codex Alimentarius. Absolute residue levels for emulsifiable concentrates were highest, perhaps owing to the dilution rate and adjuvant. Notably, all formulation residues were lower than the maximum residue limit, and safety data proved that the fruits are safe for consumers. Copyright © 2016 John Wiley & Sons, Ltd.


Subject(s)
Food Contamination/analysis , Pesticides/analysis , Prunus domestica/chemistry , Tandem Mass Spectrometry/methods , Thiadiazines/analysis , Chromatography, High Pressure Liquid/methods , Prunus domestica/parasitology
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