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March 29, 2026Nature Communications4 citationsOpen Access

TaCNGC-2A suppresses seed dormancy and activates pre-harvest sprouting through modulating calcium and hormonal signaling pathways

BTBingbing TianYFYuhui FangYZYong Zhang

Key Points

  • The aim is to understand how TaCNGC-2A regulates seed dormancy and pre-harvest sprouting in wheat.
  • Map-based analysis was used to identify the TaCNGC-2A gene.
  • Gene knockout experiments were conducted to observe effects on seed dormancy and pre-harvest sprouting.
  • Interactions of TaCNGC-2A with transcription factors and calmodulin were analyzed.
  • Knocking out TaCNGC-2A enhances seed dormancy and pre-harvest sprouting resistance without yield penalty.
  • TaMYB-5B and TaMYB-5D directly bind to TaCNGC-2A's promoter to repress its expression.
  • TaCaM-3A interacts with TaCNGC-2A influencing calcium and hormonal signaling pathways.

Abstract

Weak seed dormancy (SD) is prone to pre-harvest sprouting (PHS), which reduces cereal yield and quality. Here, through map-based analysis, we identify TaCNGC-2A, encoding a cyclic nucleotide-gated channel protein, as a negative regulator of wheat SD. Knocking out of TaCNGC-2A enhances SD and PHS resistance, with no yield penalty. Two transcription factors, TaMYB-5B and TaMYB-5D, directly bind to the T/A mutation site of TaCNGC-2A promoter to synergistically repress its expression. The calmodulin TaCaM-3A interacts with TaCNGC-2A to jointly modulate SD and PHS resistance through influencing calcium and multiple hormonal signaling pathways. Knocking out of TaCaM-3A not only enhances SD and PHS resistance, but also increases grain weight and per-plant yield. Finally, we identify allele combinations of TaCNGC-2A and other known dormancy genes associated with strong SD. This study uncovers a regulatory mechanism underlying SD and PHS resistance and provides gene targets for breeding wheat varieties with PHS resistance. Pre-harvest sprouting (PHS) causes severe yield and quality loss in cereal crops worldwide. Here, the authors report a cyclic nucleotide-gated channel/Ca2 + -permeable channel encoding protein negatively regulate PHS and its involvement in modulating of calcium and hormonal signaling pathways in wheat.

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Cite This Study

Tian et al. (2026) studied this question.

synapsesocial.com/papers/69c8c35cde0f0f753b39e0f9https://doi.org/10.1038/s41467-026-70894-2
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