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WALL-ASSOCIATED KINASE Like 14 regulates vascular tissue development in Arabidopsis and tomato.

Authors :
Ma, Yingxuan
Wang, Zhenghang
Humphries, John
Ratcliffe, Julian
Bacic, Antony
Johnson, Kim L.
Qu, Guiqin
Source :
Plant Science. Apr2024, Vol. 341, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Initiation of plant vascular tissue is regulated by transcriptional networks during development and in response to environmental stimuli. The WALL-ASSOCIATED KINASES (WAKs) and WAK-likes (WAKLs) are cell surface receptors involved in cell expansion and defence in cells with primary walls, yet their roles in regulation of vascular tissue development that contain secondary walls remains unclear. In this study, we showed tomato (Solanum lycopersicum) SlWAKL2 and the orthologous gene in Arabidopsis thaliana , AtWAKL14 , were specifically expressed in vascular tissues. SlWAKL2 -RNAi tomato plants displayed smaller fruit size with fewer seeds and vascular bundles compared to wild-type (WT) and over-expression (OE) lines. RNA-seq data showed that SlWAKL2 -RNAi fruits down-regulated transcript levels of genes related to vascular tissue development compared to WT. Histological analysis showed T-DNA insertion mutant wakl14–1 had reduced plant stem length with fewer number of xylem vessels and interfascicular fibres compared to WT, with no significant differences in cellulose and lignin content. Mutant wakl14–1 also showed reduced number of vascular bundles in fruit. A proWAKL14 ::mCherry-WAKL14 fusion protein was able to complement wakl14–1 phenotypes and showed mCherry-WAKL14 associated with the plasma membrane. In vitro binding assays showed both SlWAKL2 and AtWAKL14 can interact with pectin and oligogalacturonides. Our results reveal novel roles of WAKLs in regulating vascular tissue development. • SlWAKL2 and orthologous gene AtWAKL14 specifically expressed in vascular tissues. • SlWAKL2 -RNAi tomato plants displayed defects in vascular bundle development. • wakl14-1 also showed defects in vascular bundle development. • AtWAKL14 and SlWAKL2 can interact with pectin and oligogalacturonides. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01689452
Volume :
341
Database :
Academic Search Index
Journal :
Plant Science
Publication Type :
Academic Journal
Accession number :
175603112
Full Text :
https://doi.org/10.1016/j.plantsci.2024.112013