Canonical terpene synthases in arthropods: Intraphylum gene transfer.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 39671179.
- Also identified by DOI 10.1073/pnas.2413007121 and PMC identifier 11665903.
- Licence recorded as CC BY-NC-ND.
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Abstract
Insects employ terpenoids for communication both within and between species. While terpene synthases derived from isoprenyl diphosphate synthase have been shown to catalyze terpenoid biosynthesis in some insects, canonical terpene synthases (TPS) commonly found in plants, fungi, and bacteria were previously unidentified in insects. This study reveals the presence of <i>TPS</i> genes in insects, likely originating via horizontal gene transfer from noninsect arthropods. By examining 361 insect genomes, we identified <i>TPS</i> genes in five species of the Sciaridae family (fungus gnats). Additionally, <i>TPS</i> genes were found in Collembola (springtails) and Acariformes (mites) among diverse noninsect arthropods. Selected TPS enzymes from Sciaridae, Collembola, and Acariformes display monoterpene, sesquiterpene, and/or diterpene synthase activities. Through comprehensive protein database search and phylogenetic analysis, the <i>TPS</i> genes in Sciaridae were found to be most closely related to those in Acariformes, suggesting transfer of <i>TPS</i> genes from Acariformes to Sciaridae. In the model Sciaridae <i>Bradysia coprophila</i>, all five <i>TPS</i> genes are most highly expressed in adult males, suggesting a sex- and developmental stage-specific role of their terpenoid products. The finding of <i>TPS</i> genes in insects and their possible evolutionary origin through intraphylum gene transfer within arthropods sheds light on metabolic innovation in insects.
Medical subject headings
- Alkyl and Aryl Transferases
- Gene Transfer, Horizontal
- Arthropods
- Phylogeny