• Phone FeatureAndroid Client
  • Phone FeatureiOS Client
  • Phone FeatureWeChat Mini Program
  • Phone FeatureH5 Page
  • 1
    Return

    A missense mutation in TaBGLU1-5D confers early heading in wheat

    10.1016/j.cj.2026.02.004
    2026-02-28
    0
    OA
    PDF
    AI
    Save
    Share
    Original
    View PDF
    Abstract

    Abstract

    En 中文
    Heading date (HD) in wheat determines geographic adaptation, seasonal performance, and ultimately affects yield and quality. However, the genetic regulation of HD remains unclear. Here, we identified an Ethyl Methane Sulfonate (EMS)-induced wheat mutant, je0072, which headed two days earlier than the wild-type (WT) cultivar Jing411 without significant changes in yield components. Bulked segregant analysis (BSA) using an F2 population of 618 individuals identified the early-heading locus to the long arm of chromosome 5D. Genetic fine mapping further narrowed the locus to a 460-kb interval containing 10 high-confidence genes based on the Chinese Spring v2.1 reference genome. Sequence variation analysis identified a candidate gene, TaBGLU1-5D, encoding β-glycosyl hydrolase 1, which harbored a T-to-C substitution at position 31. Functional validation using independent mutants confirmed the role of TaBGLU1-5D in regulating HD. Transcriptome sequencing revealed that differentially expressed genes (DEGs) between WT and je0072 spikes at the heading stage were significantly enriched in starch and sucrose metabolism pathways. Weighted Gene Co-expression Network Analysis (WGCNA) further identified MADS-box transcription factor TaMADS26 as a regulatory hub associated with TaBGLU1-5D. We also found that TaBGLU1-5D modulates expression of key heading date-related genes, including VRN1, VRN3, and VRT2, thereby influencing HD. These results provide new insights into the genetic control of HD in wheat, and offer valuable resources for HD optimization in breeding programs.
    Keywords:
    Heading date
    Genetic mapping
    β-glycosyl hydrolase 1
    Differentially expressed genes
    MADS-box transcription factor
    AI Summary

    AI Summary

    Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

    Journal

    Journal

    T
    IF:
    0
    Papers: 174
    Citations: 0
    Researchers

    Researchers

    T
    Ting Li
    H-index:
    0
    Papers: 1
    Citations: 0
    H
    Huijun Guo
    H-index:
    0
    Papers: 1
    Citations: 0
    Y
    Yongdun Xie
    H-index:
    0
    Papers: 2
    Citations: 0
    L
    Linshu Zhao
    H-index:
    0
    Papers: 1
    Citations: 0
    J
    Jiayu Gu
    H-index:
    0
    Papers: 1
    Citations: 0
    Researchers View more
    Organization

    Organization

    Y
    Yangtze University
    Scholars:
    8.8K
    Papers: 5.2K
    Citations: 6.5K
    C
    Chinese Academy of Agricultural Sciences
    Scholars:
    4.0K
    Papers: 1.1K
    Citations: 5.0W
    Cited Papers

    Cited Papers

    Citing Papers

    Citing Papers