par Horáček, Natan;Lukšan, Ondřej;Rebholz, Zarley;Harant, Karel;Pohl, Radek;Mutabdžija-Nedelcheva, Lana;Hellemans, Simon
;Jungwirth, Daniel;Křivánek, Jan;Amirianová, Anna;Kyjaková, Pavlína;Bourguignon, Thomas
;Tholl, Dorothea;Hanus, Robert
;Štáfková, Jitka
Référence PLoS biology, 24, 4, page (e3003648)
Publication Publié, 2026-04-27
;Jungwirth, Daniel;Křivánek, Jan;Amirianová, Anna;Kyjaková, Pavlína;Bourguignon, Thomas
;Tholl, Dorothea;Hanus, Robert
;Štáfková, JitkaRéférence PLoS biology, 24, 4, page (e3003648)
Publication Publié, 2026-04-27
Article révisé par les pairs
| Résumé : | Termites produce the most diverse array of terpenoids among terrestrial metazoans, comprising over 200 structures. However, their biosynthesis has not yet been elucidated. Here, we identify a gene family which arose through a series of duplications of geranylgeranyl pyrophosphate synthase in the common ancestor of Neoisoptera, the terpene-producing termite lineage. We functionally characterized several proteins from this rich GGPPS-like family as terpene synthases generating biologically relevant sesqui- and diterpenes. These include the queen pheromone (3 R ,6 E )-nerolidol in Embiratermes neotenicus and the presumed precursor of polycyclic defensive diterpenes ( E , E , E )-neocembrene in Nasutitermes takasagoensis . We report significant enrichment of transposable elements in the GGPPS-like genomic loci, study the selection pressures acting in the evolution of the GGPPS-like family, and highlight an amino acid site crucial for cyclization capacity and enantiospecificity of the characterized enzymes. We conclude that we have identified an enzyme family that facilitated the emergence of the remarkable richness of termite terpenoids. |



