Transcript profiling reveals mechanisms for lipid conservation during diapause in the mosquito, Aedes albopictus
Autor: | Julie A. Reynolds, Zahra Rahman, Monica F. Poelchau, Peter Armbruster, David L. Denlinger |
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Rok vydání: | 2012 |
Předmět: |
Fatty Acid Desaturases
Aedes albopictus Physiology Molecular Sequence Data Diapause Article chemistry.chemical_compound Aedes Membrane fluidity Animals Lipase Fatty acid synthesis Regulation of gene expression biology Gene Expression Profiling Acyl CoA dehydrogenase Gene Expression Regulation Developmental Lipid metabolism biology.organism_classification Lipid Metabolism chemistry Biochemistry Insect Science Larva biology.protein Insect Proteins |
Zdroj: | Journal of insect physiology. 58(7) |
ISSN: | 1879-1611 |
Popis: | The Asian tiger mosquito, Aedes albopictus, is a medically important invasive species whose geographic distribution has expanded dramatically during the past 20 years, and one of the key elements of its success is its capacity to survive long distance transport as a diapausing pharate first instar larva, encased within the chorion of the egg. We report that pharate larvae entering diapause are larger and contain 30% more lipid than their nondiapausing counterparts. To improve our understanding of the molecular regulation of lipid metabolism during diapause, we assessed the relative mRNA abundance of 21 genes using qRT-PCR. Elevated expression of lipid storage droplet protein 2 during embryonic development likely contributes to the higher amounts of lipid we noted in diapausing individuals. The conservation of lipids during diapause is reflected in downregulation of genes involved in lipid catabolism, including lipase 2, lipase 3, lipase 4, acyl-CoA dehydrogenase 4, and isovaleryl-CoA dehydrogenase. Two genes involved in fatty acid synthesis and modification, Δ(9)-desaturase, and fatty acyl-CoA elongase, were both upregulated in diapausing pharate larvae, suggesting roles for their gene products in generating unsaturated fatty acids to enhance membrane fluidity at low temperatures and generating precursors to the surface hydrocarbons needed to resist desiccation, respectively. Together, the results point to substantial distinctions in lipid metabolism within the embryo as a consequence of the diapause program, and these differences occur both before the actual onset of diapause as well as during the diapause state. |
Databáze: | OpenAIRE |
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