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Published on: July 23, 2014
The cotton 1R-MYB transcription factor GhMYS1 promotes fiber cell elongation by inhibiting secondary cell wall
Xuyuan Yang1, Jichun Xia1, Taorui Zhang1
1Engineering Research Center of South Upland Agriculture, Ministry of Education, Southwest University, Chongqing China.
Abstract:
Enhancing cotton fiber quality is essential for improving textile production. The transition from fiber elongation to secondary cell wall (SCW) synthesis is a critical developmental phase that determines both fiber length and strength. Although MYB transcription factors regulate the process, their precise functions remain incompletely characterized. In this study, we employed genome-wide identification and expression screening, together with candidate gene association analysis, to identify GhMYS1. This gene, selected from 186 cotton 1R-MYB transcription factors, is specifically expressed during the fiber elongation stage (5 to 15 d postanthesis). CRISPR/Cas9-mediated knockout of GhMYS1 significantly reduced fiber length, increased cell wall thickness, and raised the micronaire value compared to the control. Concurrently, expression of SCW synthesis-related genes GhCESA4, GhCESA8, and GhCOBRA4D was markedly upregulated, accompanied by a pronounced increase in cellulose content. Yeast 1-hybrid, electrophoretic mobility shift, and luciferase assays demonstrated that GhHOX3 binds to the L1-box motif in the GhMYS1 promoter and activates its transcription in fibers and trichomes. The nuclear-localized GhMYS1 protein contains a C-terminal EAR motif with transcriptional repression activity. Through its N-terminal MYB domain, GhMYS1 binds directly to the promoters of GhCESA4 and GhCESA8, repressing their transcription and thereby delaying the onset of SCW deposition to facilitate fiber elongation. We propose a GhHOX3-GhMYS1-GhCESA4/8 regulatory module that governs the transition from fiber elongation to SCW synthesis. This study provides valuable genetic resources for molecular design breeding of cotton fiber quality and offers insights into the function of 1R-MYB transcription factors in fiber development.
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