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April 13, 2026The Crop Journal0 citationsOpen Access

One-step strategy for developing wheat haploid inducer lines with efficient markers for haploid identification

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SGShuwei GuoZJZhi-Gang JiangNZNa Zhang

Key Points

  • The study aims to develop efficient haploid inducer lines in wheat using reliable phenotypic markers for haploid identification.
  • Generated two wheat haploid inducers with different marker systems
  • Utilized a dual fluorescent marker system consisting of eGFP and TagRFP
  • Employed a RUBY reporter in the second inducer
  • Tested haploid identification across three developmental stages: immature embryo, mature embryo, and germinating seedling
  • Achieved near 100% accuracy in haploid identification
  • Maintained a high and stable haploid induction rate of approximately 20%
  • Provided a streamlined pipeline for haploid induction development in other crops

Abstract

Wheat ( Triticum aestivum L.) is one of the most important staple crops globally. Doubled haploid technology enables rapid development of pure lines and has been extended from maize to several other crop species. A key step in DH breeding is the identification of haploids from diploids, which requires accurate and convenient phenotypic markers. In this study, we generated two wheat haploid inducers carrying different markers by a one-step strategy. One harbored a dual fluorescent marker system consisting of eGFP and TagRFP, the other carried a RUBY reporter. Both markers enabled near 100% accuracy of haploid identification at the immature embryo, mature embryo, and germinating seedling stages. Moreover, both lines consistently exhibited a high and stable haploid induction rate (∼20%). This study not only provides efficient wheat haploid inducers but also establishes a convenient pipeline for developing haploid induction systems in other crop species.

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Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/69dc892e3afacbeac03eaefdhttps://doi.org/10.1016/j.cj.2026.03.010
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