1. Re-Analysis of Abdominal Gland Volatilome Secretions of the African Weaver Ant, Oecophylla longinoda (Hymenoptera: Formicidae).
- Author
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Mekonnen B, Cheseto X, Pirk C, Yusuf A, Ekesi S, Deletre E, and Torto B
- Subjects
- Abdomen, Alcohols chemistry, Alcohols isolation & purification, Aldehydes chemistry, Aldehydes isolation & purification, Animals, Ants metabolism, Carboxylic Acids chemistry, Carboxylic Acids isolation & purification, Gas Chromatography-Mass Spectrometry, Hydrocarbons chemistry, Hydrocarbons isolation & purification, Ketones chemistry, Ketones isolation & purification, Pheromones biosynthesis, Pheromones chemistry, Pheromones isolation & purification, Solid Phase Microextraction, Sterols chemistry, Sterols isolation & purification, Terpenes chemistry, Terpenes isolation & purification, Ants chemistry, Exocrine Glands chemistry, Pest Control, Biological
- Abstract
The African weaver ant, Oecophylla longinoda , is used as a biological control agent for the management of pests. The ant has several exocrine glands in the abdomen, including Dufour's, poison, rectal, and sternal glands, which are associated with pheromone secretions for intra-specific communication. Previous studies have analyzed the gland secretions of Dufour's and poison glands. The chemistry of the rectal and sternal glands is unknown. We re-analyzed the secretions from Dufour's and poison glands plus the rectal and sternal glands to compare their chemistries and identify additional components. We used the solid-phase microextraction (SPME) technique to collect gland headspace volatiles and solvent extraction for the secretions. Coupled gas chromatography-mass spectrometry (GC-MS) analysis detected a total of 78 components, of which 62 were being reported for the first time. These additional components included 32 hydrocarbons, 12 carboxylic acids, 5 aldehydes, 3 alcohols, 2 ketones, 4 terpenes, 3 sterols, and 1 benzenoid. The chemistry of Dufour's and poison glands showed a strong overlap and was distinct from that of the rectal and sternal glands. The different gland mixtures may contribute to the different physiological and behavioral functions in this ant species.
- Published
- 2021
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