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September 26, 2025Plant Biotechnology Journal3 citationsOpen Access

ZmMYB127 Modulates Maize Kernel Texture and Size by Integrating the Synthesis of Starch, Zein Proteins and Auxin

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TLTiandan LongYWYayun WangZLZhou Liu

Key Points

  • ZmMYB127 positively influences kernel texture and size by regulating starch and zein protein synthesis.
  • The study found that ZmMYB127 interacts with key factors involved in regulating α-zein and starch synthesis.
  • Endosperm-specific expression of ZmMYB127 highlights its critical role during the kernel filling stage.
  • Findings provide insights for breeding improved maize varieties with better kernel traits.

Abstract

ABSTRACT Kernel texture is an important agronomic trait that determines the end‐uses of maize kernels and affects their integrity at harvest and susceptibility to pests and diseases. The ratio of the vitreous endosperm (RVE) is the key index for assessing kernel texture, and identifying key genes involved in its formation is crucial for maize breeding. Here, through genome‐wide association study (GWAS), haplotype analysis and transgenic kernels phenotyping, we characterised ZmMYB127, an endosperm‐specific R2R3‐MYB transcription factor, which positively regulates vitreous endosperm (VE) formation. ZmMYB127 is preferentially expressed in VE cells during the filling stage and antagonistically regulates zein protein and starch synthesis in the endosperm. Notably, ZmMYB127 interacts with OPAQUE2 (O2) to synchronously transactivate genes encoding α‐zein proteins and interacts with prolamin‐box binding factor 1 (PBF1) to additively suppress genes involved in starch synthesis, thereby governing kernel texture. Moreover, ZmMYB127 negatively regulates genes involved in indole‐3‐acetic acid (IAA) synthesis in the endosperm, affecting endosperm development and size, thereby linking the function of ZmMYB127 to kernel size. In conclusion, our study unravels the transcription factor ZmMYB127 that modulates kernel texture and size by integrating regulation of starch, zein and auxin synthesis pathways in maize endosperm. Additionally, our findings provide valuable genetic resources for breeding or engineering maize varieties with improved kernel texture and quality.

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Cite This Study

Long et al. (2025) studied this question.

synapsesocial.com/papers/68d6c687b1249cec298b2a37https://doi.org/10.1111/pbi.70384
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