Genome-Wide Identification and Expression Analysis of the WSD Gene Family in Wheat
Chang Liu, Zelin Niu, Huaihai Yu, Bingyan Gu, Yifei Jia, Denglei Xie, Rongna Wang

TL;DR
This study identifies and analyzes the WSD gene family in wheat, revealing their structural features and expression patterns, which could help understand how wheat regulates its plant structure.
Contribution
The first genome-wide characterization of the WSD gene family in wheat, including their phylogeny, structure, and expression patterns.
Findings
A total of 43 TaWSD genes were identified in wheat with conserved structural features and the HHXXXDG catalytic motif.
TaWSD genes are organized into four distinct clades, with sequence divergence mainly in the N-terminal region.
Twelve TaWSD genes show high expression in the leaf lamina joint, suggesting a role in leaf angle regulation.
Abstract
Background: Wax synthase/diacylglycerol acyltransferases (WS/DGATs), often referred to as WSD proteins, represent a class of key enzymes that catalyze the biosynthesis of wax esters in plants and other organisms. However, the WSD gene family in wheat (Triticum aestivum) has not been systematically characterized. Methods: A comprehensive genome-wide identification and bioinformatic characterization of the WSD gene family were conducted in wheat, followed by an analysis of chromosomal locations, gene structures, conserved motifs, phylogenetic relationships, expression profiles, and cis-element predictions. Results: In this study, a total of 43 TaWSDs were identified through genome-wide analysis in wheat. All identified TaWSD members exhibit highly conserved structural features and contain the core catalytic motif HHXXXDG. Phylogenetic analysis of WSD proteins from 63 species revealed that…
Genes, proteins, chemicals, diseases, species, mutations and cell lines named across the full text — each resolved to its canonical identifier and authoritative record.
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Taxonomy
TopicsPlant Surface Properties and Treatments · Lipid metabolism and biosynthesis · Plant Gene Expression Analysis
