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A model-based analysis of chemical and temporal patterns of cuticular hydrocarbons in male Drosophila melanogaster.


ABSTRACT: Drosophila Cuticular Hydrocarbons (CH) influence courtship behaviour, mating, aggregation, oviposition, and resistance to desiccation. We measured levels of 24 different CH compounds of individual male D. melanogaster hourly under a variety of environmental (LD/DD) conditions. Using a model-based analysis of CH variation, we developed an improved normalization method for CH data, and show that CH compounds have reproducible cyclic within-day temporal patterns of expression which differ between LD and DD conditions. Multivariate clustering of expression patterns identified 5 clusters of co-expressed compounds with common chemical characteristics. Turnover rate estimates suggest CH production may be a significant metabolic cost. Male cuticular hydrocarbon expression is a dynamic trait influenced by light and time of day; since abundant hydrocarbons affect male sexual behavior, males may present different pheromonal profiles at different times and under different conditions.

SUBMITTER: Kent C 

PROVIDER: S-EPMC1978534 | biostudies-literature | 2007 Sep

REPOSITORIES: biostudies-literature

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A model-based analysis of chemical and temporal patterns of cuticular hydrocarbons in male Drosophila melanogaster.

Kent Clement C   Azanchi Reza R   Smith Ben B   Chu Adrienne A   Levine Joel J  

PloS one 20070926 9


Drosophila Cuticular Hydrocarbons (CH) influence courtship behaviour, mating, aggregation, oviposition, and resistance to desiccation. We measured levels of 24 different CH compounds of individual male D. melanogaster hourly under a variety of environmental (LD/DD) conditions. Using a model-based analysis of CH variation, we developed an improved normalization method for CH data, and show that CH compounds have reproducible cyclic within-day temporal patterns of expression which differ between L  ...[more]

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