Phytohormone auxin controls various aspects of plant growth and development. The typical auxin signalling involves the degradation of canonical Aux/IAA proteins upon auxin perception releasing the auxin response factors (ARF) to activate auxin-regulated gene expression. Extensive research has been pursued in deciphering the role of canonical Aux/IAAs, however, the function of non-canonical genes remains elusive. Here we identified a non-canonical gene, from spearmint (), which lacks the TIR1-binding domain and shows its involvement in the development of peltate glandular trichomes (PGT), which are the sites for production and storage of commercially important essential oils. Using yeast two-hybrid studies, two canonical Aux/IAAs, MsIAA3, MsIAA4 and an ARF, MsARF3 were identified as the preferred binding partners of MsIAA32. Expression of a R2R3-MYB gene and a cyclin gene was altered in suppressed plants indicating that these genes are possible downstream targets of MsIAA32 mediated signalling. Ectopic expression of in affected non-glandular trichome formation along with other auxin related developmental traits. Our findings establish the role of non-canonical Aux/IAA mediated auxin signalling in PGT development and reveal species-specific functionalization of Aux/IAAs.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10875047PMC
http://dx.doi.org/10.3389/fpls.2024.1284125DOI Listing

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