Unverified paper record
Double-fluorescent proteins enable robust maternal haploid identification in wheat.
aBIOTECH · 11 Dec 2025 · 10.1016/j.abiote.2025.100016
Abstract
Doubled haploid (DH) technology is crucial for accelerating crop breeding. While the functional conservation of MATRILINEAL ( MTL ) in cereals enables haploid induction (HI) in wheat ( Triticum aestivum ), distinguishing haploid from diploid seeds remains a major bottleneck. Here, we developed an efficient haploid identification (HID) system for wheat by seamlessly integrating a two-fluorescent protein-based HID toolbox with an MTL mutant HI wheat line. This system enables efficient HI and utilizes dual-fluorescence screening, offering high accuracy while being independent of the genetic background of the recipient material. Our work demonstrates that engineered intraspecific HI is achievable in self-pollinating crops such as wheat, paving the way for applications that shorten the breeding cycle, facilitate quantitative genetic studies, and accelerate the fixation of desirable alleles. With further optimization and development, this system holds promise as a commercially viable pipeline for haploid production to facilitate wheat breeding.
Plant phenotyping relevance
小麦種子の倍数性(半数体・二倍体)を蛍光により識別するHIDシステムの開発が研究の中心であり、植物の状態を測定・抽出する方法に該当する。
abstractHere, we developed an efficient haploid identification (HID) system for wheat by seamlessly integrating a two-fluorescent protein-based HID toolbox with an MTL mutant HI wheat line.
abstractThis system enables efficient HI and utilizes dual-fluorescence screening, offering high accuracy while being independent of the genetic background of the recipient material.
Code and data availability
The paper reports wheat haploid identification via double-fluorescent proteins, but provides no public phenotype/trait dataset, image collection, analysis code, or trained model. The only supplementary material (Multimedia component 1) is a docx hosted behind the publisher DOI, and the data availability statement says
No evidence-backed public reproduction asset is currently recorded.
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