| Literature DB >> 32221322 |
Humberto Reyes-Prado1, Alfredo Jiménez-Pérez2, René Arzuffi2, Norma Robledo3.
Abstract
Herbivory insects can discriminate the quality of a host plant for food or oviposition, by detecting the volatile organic compounds (VOC's) released by the plant, however, damaged plants may release a different VOC's profile modifying the insects' response. We tested if the VOC's profile from damaged plants affected the response of Copitarsia decolora as these moths oviposit preferably around undamaged host plants. We assessed the response in wind tunnel conditions of C. decolora mated females to volatiles collected by dynamic headspace from 30-40 d old cabbage undamaged plants and mechanical and larval damaged plants. Headspace volatile compounds from undamaged cabbage plants were more attractive to mated females than those from larval and mechanical damaged cabbage plants. Moths stimulated with headspace volatiles from undamaged plants performed more complete flight and ovipositor displays than those moths stimulated with headspace volatiles from damaged cabbage plants. A mixture of synthetic compounds identified from undamaged cabbages elicited similar antennal and wind tunnel responses in mated females as headspace volatiles from undamaged cabbage plants. C. decolora females may discriminate between damaged and undamaged host plants by detecting their VOC's profiles as a strategy to avoid unsuitable plants for their offspring increasing their fitness.Entities:
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Year: 2020 PMID: 32221322 PMCID: PMC7101309 DOI: 10.1038/s41598-020-62365-5
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Percentage of mated females performing partial flight (empty bars), complete flight (solid bars) and ovipositor display (crossed bars) in the presence of headspace from undamaged cabbage and larvae- and mechanical-damaged cabbage plants in the wind tunnel. Hexane served as a control. Same color bars topped by the same letter are not significantly different (χ2, n = 10, P > 0.05).
Chemical compounds identified by GC-MS in the headspace from undamaged, larvae-damaged and mechanical-damaged cabbage plants, in the wind tunnel.
| Chemical compound | RT | CAS | MF | RI | HUC | HLD | HMD |
|---|---|---|---|---|---|---|---|
| Allyl isothiocyanate | 4.13 | 57-06-7 | C4H5NS | 887 ^a | * | * | |
| α-pinene | 5.3 | 80-56-8 | C10H16 | 982 | * | * | |
| 6-methyl-5-hepten-2-one | 7.56 | 110-93-0 | C8H14O | 974 | * | * | |
| (Z) 3-hexenyl acetate | 8.15 | 3681-71-8 | C8H14O2 | 1004 | * | * | * |
| Limonene | 8.84 | 138-86-3 | C10H16 | 1017 | * | * | * |
| Nonanal | 11.29 | 124-19-6 | C9H18O | 1057 | * | * | * |
| Decanal | 14.78 | 112-31-2 | C10H20O | 1203 | * | * | * |
| Benzyl isothiocyanate | 18.93 | 622-78-6 | C8H7NS | 1278 | * | * | |
| Tetradecane | 21.19 | 629-59-4 | C14H30 | 1400 | * | * | |
| Geranyl acetone | 21.73 | 689-67-8 | C13H22O | 1458 ^b | * | ||
| Pentadecane | 24.28 | 629-62-9 | C15H32 | 1500 | * | ||
| Hexadecane | 27.24 | 544-76-3 | C16H34 | 1600 | * | * | * |
| Heptadecane | 30.02 | 629-78-7 | C17H36 | 1700 | * | * | * |
| Octadecane | 31.44 | 593-45-3 | C18H38 | 1800 ^c | * | * |
RT = Retention Time, CAS = Chemical Abstracts Service, MF = Molecular Formula, RI = Kovats Retention Index, HUC = headspace from undamaged cabbage, HLD = headspace from larvae-damaged cabbage, HMD = headspace from mechanical-damaged cabbage. ^aEngel et al.[20] ^bLeffingwell and Alford[21]. ^cChung et al.[22] *Identified in the headspace.
Figure 2Copitarsia decolora mated females that performed a complete flight (solid bars) and ovipositor display (empty bars) responding to the headspace from undamaged cabbage plants and to the mixture of synthetic compounds in the wind tunnel. Same colored bars topped by the same letter are not significantly different (χ2, P > 0.05). n = 10.
Figure 3Mean antennal depolarization (± SEM) of mated females in response to the mixture of synthetic compounds, headspace from undamaged cabbage and hexane. Bars headed by the same letter are not significantly different, n = 12 (Tukey’s test, P > 0.05).