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Conserved mechanism for perception of root-active CLE peptides

Hazak, O.; Carbonnel, S.; Falquet, L.

2022-01-23 plant biology
10.1101/2022.01.21.477294 bioRxiv
Show abstract

Precision in sensing the environmental cues and adjusting the growth and the physiology of the root system are necessary for plant robustness. Plants achieve their phenotypic plasticity by tightly controlling and buffering developmental decisions. In addition to the classical plant hormones that mediate plant development and stress responses, the CLE peptides constitute an additional crucial level of regulation. While the CLV3-CLV1 module appears to be highly conserved to control the proliferation of the shoot apical meristem stem cells, we do not yet fully understand the function of the additional CLE genes and whether they act in a similar way across the plant species, including tomato. Due to the small gene size and high sequence variability, it is extremely difficult to precisely annotate CLE genes in plant genomes. Here we present our analysis of the CLE family in tomato, based on a combination of iterative tBLASTn and Hidden-Markov-Model (HMM), which allowed us to identify thirty-seven new SlCLEs in addition to the fifteen reported previously. We could confirm the biological activities of selected SlCLEs in suppressing root meristematic cell divisions. We show that root response is mediated by SlCLAVATA2, indicating the conservation of CLE perception mechanism. One-sentence summaryUsing a combination of iterative tBLASTn and Hidden-Markov-Model approaches, we uncovered 37 new tomato CLE genes predominantly expressed in roots, and we showed a conserved effect on root meristem arrest, that was SlCLAVATA2-dependent. HighlightsO_LIWe applied a combined approach of iterative tBLASTn and Hidden-Markov-Model to identify fifty-two tomato SlCLE genes, including thirty-seven new genes C_LIO_LIAll identified genes encode for pre-propeptides with a single CLE-domain containing conserved residues similar to Arabidopsis C_LIO_LIAnalyzing the publicly available RNAseq datasets, we could confirm the expression of SlCLE genes that was often associated specifically with root or shoot, a certain developmental stage of the fruit, or with drought stress conditions C_LIO_LIRemarkably, the majority of SlCLE genes are predominantly expressed in the root tissues C_LIO_LIWe showed the conserved inhibitory effect on the root meristem and columella cells division for the selected SlCLE peptides that were SlCLAVATA2-dependent. C_LI

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