Evaluation of differential gene expression during behavioral development in the honeybee using microarrays and northern blots
Open Access
- 14 January 2002
- journal article
- research article
- Published by Springer Nature in Genome Biology
Abstract
The honeybee (Apis mellifera) has been used with great success in a variety of behavioral studies. The lack of genomic tools in this species has, however, hampered efforts to provide genome-based explanations for behavioral data. We have combined the power of DNA arrays and the availability of distinct behavioral stages in honeybees to explore the dynamics of gene expression during adult development in this insect. In addition, we used caffeine treatment, a procedure that accelerates learning abilities in honeybees, to examine changes in gene expression underlying drug-induced behavioral modifications. Spotted microarrays containing several thousand cDNAs were interrogated with RNAs extracted from newly emerged worker bees, experienced foragers and caffeine-treated bees. Thirty-six differentially expressed cDNAs were verified by northern blot hybridization and characterized in silico by sequencing and database searches. Experienced foragers overexpressed royal jelly proteins, a putative imaginal disc growth factor, a transcriptional regulator (Stck) and several enzymes, including alpha-glucosidases, aminopeptidases and glucose dehydrogenase. Naive workers showed increased expression of members of the SPARC and lectin families, heat-shock cognate proteins and several proteins related to RNA translation and mitochondrial function. A number of novel genes overexpressed in both naive and experienced bees, and genes induced by caffeine, have also been identified. We have shown the usefulness of this transcriptome-based approach for gene discovery, in particular in the context of the efficacy of drug treatment, in a model organism in which routine genetic techniques cannot be applied easily.Keywords
This publication has 34 references indexed in Scilit:
- Effect of Juvenile Hormone on Short-Term Olfactory Memory in Young Honeybees (Apis mellifera)Hormones and Behavior, 2001
- Contrasting Effects of Imidacloprid on Habituation in 7- and 8-Day-Old Honeybees (Apis mellifera)Neurobiology of Learning and Memory, 2001
- Roles of the heat shock transcription factors in regulation of the heat shock response and beyondThe FASEB Journal, 2001
- Protein functions and biological contextsProteomics, 2001
- Parallel organization in honey bee mushroom bodies by peptidergic kenyon cellsJournal of Comparative Neurology, 2000
- Analysis of Drosophila yellow-B cDNA Reveals a New Family of Proteins Related to the Royal Jelly Proteins in the Honeybee and to an Orphan Protein in an Unusual Bacterium Deinococcus radioduransBiochemical and Biophysical Research Communications, 2000
- Honeybee Navigation: Nature and Calibration of the "Odometer"Science, 2000
- The effects of age on olfactory learning and memory in the honey bee Apis melliferaNeuroReport, 1997
- Extraribosomal functions of ribosomal proteinsTrends in Biochemical Sciences, 1996
- Changes in the Expression of Genes Involved in Protein Synthesis during Drosophila AgingGerontology, 1996