Microbial Volatile Organic Compounds from Tempered and Incubated Grain Mediate Attraction by a Primary but Not Secondary Stored Product Insect Pest in Wheat
Микробные летучие органические соединения из кондиционированного и инкубированного зерна опосредуют привлечение первичного, но не вторичного вредителя запасов зерна в пшенице
2021-09-20
SCID: 54.1/f5kdc7cw
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Rhyzopertha dominicaTribolium castaneumgas chromatography–mass spectrometrymicrobial volatile organic compoundsstored product insects
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Abstract (AI)
There has been a dearth of research elucidating the behavioral effect of microbially-produced volatile organic compounds on insects in postharvest agriculture. Demonstrating attraction to MVOC's by stored product insects would provide an additional source of unique behaviorally-relevant stimuli to protect postharvest commodities at food facilities. Here, we assessed the behavioral response of a primary (Rhyzopertha dominica) and secondary (Tribolium castaneum) grain pest to bouquets of volatiles produced by whole wheat that were untempered, or tempered to 12%, 15%, or 19% grain moisture and incubated for 9, 18, or 27 days. We hypothesized that MVOC's may be more important for the secondary feeder because they signal that otherwise unusable, intact grains have become susceptible by weakening of the bran. However, contrary to our expectations, we found that the primary feeder, R. dominica, but not T. castaneum was attracted to MVOC's in a wind tunnel experiment, and in a release-recapture assay using commercial traps baited with grain treatments. Increasing grain moisture resulted in elevated grain damage detected by near-infrared spectroscopy and resulted in small but significant differences in the blend of volatiles emitted by treatments detected by gas chromatography coupled with mass spectrometry (GC-MS). In sequencing the microbial community on the grain, we found a diversity of fungi, suggesting that an assemblage was responsible for emissions. We conclude that R. dominica is attracted to a broader suite of MVOC's than T. castaneum, and that our work highlights the importance of understanding insect-microbe interactions in the postharvest agricultural supply chain.
Key Findings
1
Increasing wheat moisture produced greater grain damage and small but significant changes in volatile blends detected by GC-MS.
2
Rhyzopertha dominica was attracted to microbial volatile organic compounds from tempered or incubated wheat, whereas Tribolium castaneum was not.
3
The attraction of R. dominica to microbial volatiles occurred in both wind-tunnel tests and release-recapture assays using commercially baited traps.
4
The findings indicate that R. dominica responds to a broader suite of microbial volatiles than T. castaneum, emphasizing insect-microbe interactions in postharvest agriculture.
5
Wheat grains hosted diverse fungal communities, suggesting that microbial volatile emissions arose from a fungal assemblage rather than a single organism.
Research Object
Microbial volatile organic compounds emitted by whole wheat under different tempering moisture levels and incubation durations, and their attraction effects on Rhyzopertha dominica and Tribolium castaneum
Research Subject
Behavioral attraction and species-specific responses of a primary and a secondary stored-product insect pest to grain-emitted MVOC blends, including effects of grain moisture and incubation on volatile composition
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2021-09-20
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