chemistry of exploding ants, Camponotus SPP. (cylindricus complex)
A detailed comparative analysis of the exocrine chemistry of nine Bruneian Camponotus species in the cylindricus complex is reported. Workers of these species are known to have hypertrophied mandibular glands and release their glandular contents suicidally from the head by rupturing the inter- segme...
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Published in: | Journal of chemical ecology Vol. 30; no. 8; pp. 1479 - 1492 |
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Main Authors: | , , , , , |
Format: | Journal Article |
Language: | English |
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01-08-2004
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Abstract | A detailed comparative analysis of the exocrine chemistry of nine Bruneian Camponotus species in the cylindricus complex is reported. Workers of these species are known to have hypertrophied mandibular glands and release their glandular contents suicidally from the head by rupturing the inter- segmental membrane of the gaster. All of the species produce mixtures of polyacetate-derived aromatics, including hydroxyacetophenones, which display pH-dependent color changes, and aliphatic hydrocarbons and alcohols. In addition, three species contained (6R)-2,6-dimethyl-(2E)-octen-1,8-dioic acid (9) or (3S)-8-hydroxycitro-nellic acid (10a), previously unreported from insects. These compounds were characterized from their spectral data, and confirmed by comparison with synthetic samples. The allomonal role of these compounds is based on numerous field observations, and their chemotaxonomic value is presented. |
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AbstractList | A detailed comparative analysis of the exocrine chemistry of nine Bruneian Camponotus species in the cylindricus complex is reported. Workers of these species are known to have hypertrophied mandibular glands and release their glandular contents suicidally from the head by rupturing the inter- segmental membrane of the gaster. All of the species produce mixtures of polyacetate-derived aromatics, including hydroxyacetophenones, which display pH-dependent color changes, and aliphatic hydrocarbons and alcohols. In addition, three species contained (6R)-2,6-dimethyl-(2E)-octen-1,8-dioic acid (9) or (3S)-8-hydroxycitro-nellic acid (10a), previously unreported from insects. These compounds were characterized from their spectral data, and confirmed by comparison with synthetic samples. The allomonal role of these compounds is based on numerous field observations, and their chemotaxonomic value is presented. A detailed comparative analysis of the exocrine chemistry of nine Bruneian Camponotus species in the cylindricus complex is reported. Workers of these species are known to have hypertrophied mandibular glands and release their glandular contents suicidally from the head by rupturing the intersegmental membrane of the gaster. All of the species produce mixtures of polyacetate-derived aromatics, including hydroxyacetophenones, which display pH-dependent color changes, and aliphatic hydrocarbons and alcohols. In addition, three species contained (6R)-2,6-dimethyl-(2E)-octen-1,8-dioic acid (9) or (3S)-8-hydroxycitro-nellic acid (10a), previously unreported from insects. These compounds were characterized from their spectral data, and confirmed by comparison with synthetic samples. The allomonal role of these compounds is based on numerous field observations, and their chemotaxonomic value is presented. A detailed comparative analysis of the exocrine chemistry of nine Bruneian Camponotus species in the cylindricus complex is reported. Workers of these species are known to have hypertrophied mandibular glands and release their glandular contents suicidally from the head by rupturing the inter- segmental membrane of the gaster. All of the species produce mixtures of polyacetate-derived aromatics, including hydroxyacetophenones, which display pH-dependent color changes, and aliphatic hydrocarbons and alcohols. In addition, three species contained (6R)-2,6-dimethyl-(2E)-octen-1,8-dioic acid (9) or (3S)-8-hydroxycitro-nellic acid (10a), previously unreported from insects. These compounds were characterized from their spectral data, and confirmed by comparison with synthetic samples. The allomonal role of these compounds is based on numerous field observations, and their chemotaxonomic value is presented.[PUBLICATION ABSTRACT] |
Author | Clark, D.A Jones, T.H Davidson, D.W Spande, T.F Snelling, R.R Edwards, A.A |
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Keywords | Taxonomy Insecta Chemical compound Chemotaxonomy Formicoidea Mandibular gland Chemical composition Aromatic compound acyclic terpenes Aculeata Formicidae Digestive system Salivary gland Componotus spp Social insect Camponotus Terpene Territorial behavior Arthropoda Exocrine gland Phenols Hymenoptera Invertebrata autothysis territoriality polyacetate-derived aromatics |
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References | 9647670 - Arch Biochem Biophys. 1998 Jul 1 ;355(1):84-92 11399355 - Biochem Syst Ecol. 2001 Jul;29(7):673-680 6186413 - Clin Chem. 1983 Mar;29(3):434-7 28308625 - Oecologia. 1974 Sep;14 (3):289-294 11442410 - J Org Chem. 2001 Jul 13;66(14):4814-8 9083051 - J Biol Chem. 1997 Apr 4;272(14 ):9197-203 11085642 - J Comp Physiol A. 2000 Sep;186(9):897-901 17843767 - Science. 1973 Jan 26;179(4071):388-9 28308738 - Oecologia. 2000 Apr;123(1):129-137 4750917 - Life Sci. 1973 Aug 16;13(3):201-11 24263444 - J Chem Ecol. 1990 Dec;16(12):3493-510 |
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Snippet | A detailed comparative analysis of the exocrine chemistry of nine Bruneian Camponotus species in the cylindricus complex is reported. Workers of these species... |
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SubjectTerms | Acetates - chemistry Acetophenones - chemistry Aliphatic hydrocarbons Animal and plant ecology Animal, plant and microbial ecology Animals Ant Venoms - analysis Ant Venoms - chemistry Ants - physiology Autoecology Biological and medical sciences Camponotus cylindricus chemical composition chemotaxonomy Comparative analysis Dicarboxylic Acids - chemical synthesis exocrine glands Exocrine Glands - chemistry Exocrine Glands - secretion Formicidae Fundamental and applied biological sciences. Psychology General aspects Hydrocarbons, Aromatic - analysis Hydrocarbons, Aromatic - chemistry Hydrogen-Ion Concentration Phenols - chemistry Species Specificity Submandibular Gland - chemistry Submandibular Gland - secretion Terpenes - chemistry terpenoids territoriality |
Title | chemistry of exploding ants, Camponotus SPP. (cylindricus complex) |
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