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Intrasexual cuticular hydrocarbon dimorphism in a wasp sheds light on hydrocarbon biosynthesis genes in Hymenoptera.

Victoria C MorisLars PodsiadlowskiSebastian MartinJan Philip OeyenAlexander DonathMalte PetersenJeanne WilbrandtBernhard MisofDaniel LiedtkeMarkus ThammRicarda ScheinerThomas SchmittOliver Niehuis
Published in: Communications biology (2023)
Cuticular hydrocarbons (CHCs) cover the cuticle of insects and serve as desiccation barrier and as semiochemicals. While the main enzymatic steps of CHC biosynthesis are well understood, few of the underlying genes have been identified. Here we show how exploitation of intrasexual CHC dimorphism in a mason wasp, Odynerus spinipes, in combination with whole-genome sequencing and comparative transcriptomics facilitated identification of such genes. RNAi-mediated knockdown of twelve candidate gene orthologs in the honey bee, Apis mellifera, confirmed nine genes impacting CHC profile composition. Most of them have predicted functions consistent with current knowledge of CHC metabolism. However, we found first-time evidence for a fatty acid amide hydrolase also influencing CHC profile composition. In situ hybridization experiments furthermore suggest trophocytes participating in CHC biosynthesis. Our results set the base for experimental CHC profile manipulation in Hymenoptera and imply that the evolutionary origin of CHC biosynthesis predates the arthropods' colonization of land.
Keyphrases
  • genome wide
  • bioinformatics analysis
  • genome wide identification
  • fatty acid
  • cell wall
  • dna methylation
  • climate change
  • hydrogen peroxide
  • single cell
  • nitric oxide
  • gene expression