Jasmonic acid (JA) and its derivatives are lipid-derived phytohormones that coordinate plant growth, development, and stress responses through the bioactive conjugate jasmonoyl-isoleucine (JA-Ile). Their role in reproductive development is well established, particularly in stamen maturation through the R2R3-MYB transcription factor MYB21, which has been considered largely flower-specific. Here, we reveal a previously unrecognized role of MYB21 in vegetative tissues of Arabidopsis thaliana. Although basal MYB21 transcript levels in leaves are extremely low and spatially restricted, wounding and exogenous hormone applications induced MYB21 transcription in a JA- and COI1-dependent manner. Transcriptional GUS reporter analyses showed localized MYB21 promoter activity in specialized epidermal cells, including trichomes, hydathodes, and in the vasculature at wound sites. Functional characterization using the myb21-5 mutant indicated roles in germination and vegetative growth, partially phenocopying JA-insensitive mutants despite unaltered JA biosynthesis and signaling. Transcriptome profiling further revealed changes in expression of genes involved in lignin biosynthesis, light-harvesting complex components, cytokinin pathways, and defense-related responses, consistent with reduced resistance of myb21-5 to insect herbivory and infection by Botrytis cinerea. Together, these findings identify MYB21 as a JA-responsive regulator of growth and defense in seedlings and leaves, extending its function beyond reproductive development.
Khansa Mekkaoui, Lisa Thuy Linh Nguyen, Olivia Putri Herdani et al.· Journal of Experimental Bota...· 0 citations
Auxin is an important regulator of reproductive development. The families of the AUXIN RESPONSE FACTOR (ARF) genes, important components of the auxin signal, have expanded in flowering plants. Tomato (Solanum lycopersicum) has two copies of ARF8, which are negatively regulated by miR167. Here, we investigated the involvement of this expanded SlmiR167‐SlARF8 module in flower development. Mutants were generated in 5 SlmiR167 and 2 SlARF8 genes, and flower development and fruit set were characterized in mutant combinations. We show that the SlmiR167‐SlARF8 module regulates flower‐organ development and fruit set. The two SlARF8 paralogs are found to have both overlapping and distinct roles. They additively affect stigma position by oppositely affecting stamen and pistil growth, while SlARF8B has evolved a unique role in the inhibition of anther dehiscence. Loss of SlARF8B in the Slmir167a background uncovers a unique reproductive syndrome of fast, early, fertilization‐independent fruit set and increased yield under cold stress, mediated by the deregulation of SlARF8A. These results demonstrate how gene duplication within the miR167–ARF8 module enables fine‐tuning of auxin signaling to achieve coordinated, robust reproductive development, with implications for the control of fruit set in tomato.
Nave Man, Naama Teboul, Amir Bahu et al.· New Phytologist· 0 citations
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