ASTF1, an AP2/ERF-family transcription factor and ortholog of cultivated tomato LEAFLESS, is required for acylsugar biosynthesis

Author:

Mandal SabyasachiORCID,Rezenom Yohannes H.,McKnight Thomas D.ORCID

Abstract

ABSTRACTAcylsugars, specialized metabolites produced by solanaceous trichomes, provide protection against biotic and abiotic stresses. Here, we report ACYLSUGAR TRANSCRIPTION FACTOR1 (ASTF1/Sopen05g008450; AP2/ERF-family member) positively regulates acylsugar biosynthesis. Virus-induced gene silencing (VIGS) of ASTF1 in Solanum pennellii reduced acylsugar production by 65%. Most acylsugar (and several flavonoid) metabolic genes were downregulated in ASTF1-silenced plants, and these genes showed strong co-expression with ASTF1. In promoters of potential ASTF1-targets, we identified three enriched motifs, and one motif showed similarity with binding sites of other AP2/ERFs. Phylogenetic analysis and data mining indicated trichome-enriched expression of ASTF1 orthologs in several acylsugar-producing solanaceous species, suggesting a conserved role in acylsugar biosynthesis. This was supported by VIGS of ASTF1 orthologs in Nicotiana benthamiana. Broader phylogenetic analysis revealed relationships among specialized metabolic AP2/ERFs in several asterid species and provided clues about evolutionary emergence of acylsugar phenotype. Cultivated tomato ortholog (LEAFLESS/Solyc05g013540) has been reported to coordinate leaf initiation with transient expression at incipient primordia, and data mining revealed downregulation of trichome-preferentially-expressed genes, including acylsugar (and flavonoid) metabolic genes, in leafless mutants’ shoot apices, indicating remarkable spatiotemporal functional diversity. Our work will pave a way to disentangle acylsugar regulatory network and holds promise for future metabolic engineering of acylsugar production.

Publisher

Cold Spring Harbor Laboratory

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