Cuticular hydrocarbon pattern as a chemotaxonomy marker to assess six species of thrips
[Display omitted] •Cuticular hydrocarbons of insects may be useful in the chemotaxonomy of species.•A Thermal Separation Probe was used to identify the cuticular hydrocarbons of thrips.•The cuticular hydrocarbons profiles of 6 species of thrip were obtained.•The finding could provide a possible meth...
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Veröffentlicht in: | Journal of Asia-Pacific entomology 2020, 23(4), , pp.1255-1263 |
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Format: | Artikel |
Sprache: | eng |
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•Cuticular hydrocarbons of insects may be useful in the chemotaxonomy of species.•A Thermal Separation Probe was used to identify the cuticular hydrocarbons of thrips.•The cuticular hydrocarbons profiles of 6 species of thrip were obtained.•The finding could provide a possible method for the identification of thrips.
Thrips constitute several families of slender insects with fringed wings and unique asymmetrical mouthparts. They have become globally important pests, infesting a variety of agriculturally important crops. Species of thrips are difficult to identify due to their small size and similarities in morphology. Recently, in addition to morphology, both molecular and non-molecular taxonomic tools have been used to identify species differences. Insect cuticular hydrocarbons have been widely used in chemotaxonomy. In this study, a Thermal Separation Probe was used to identify the cuticular hydrocarbons of Frankliniella occidentalis, Frankliniella intonsa, Thrips palmi, Thrips hawaiiensis, Haplothrips chinensis and Gynaikothrips ficorum. We analyzed the hydrocarbon composition of adults in all 6 species, and in the larvae of F. occidentalis, T. hawaiiensis and T. palmi. The results showed that the composition of cuticular hydrocarbons differed between species. All 6 species of adults and 3 species of larvae were easily distinguishable by quantitative analysis of hydrocarbon profiles. These results provide a possible method for the identification of thrips. |
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ISSN: | 1226-8615 1876-7990 |
DOI: | 10.1016/j.aspen.2020.10.005 |