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April 4, 2026Plants0 citationsOpen Access

miRNA Profiling Reveals the Role of Gibberellin Signaling Pathway in Low-Nitrogen Stress Adaptation of Xinjiang Spring Wheat

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XGXin GaoCWChunsheng WangYSYumei Su

Key Points

  • The study aims to uncover molecular mechanisms of low-nitrogen tolerance in common wheat, focusing on miRNA regulation.
  • Identified 822 miRNAs in root and grain tissues of LN-tolerant and LN-sensitive wheat cultivars.
  • Compared miRNA expression levels under low-nitrogen stress.
  • Conducted KEGG analysis to find enrichment in signaling pathways.
  • Significant upregulation of tae-miR395a and tae-miR444a in LN-tolerant cultivar under stress.
  • Findings highlight co-targeting of DELLA genes by specific miRNAs related to gibberellin signaling.
  • Potential key miRNA-target modules identified for low-nitrogen adaptive responses.

Abstract

Understanding the molecular mechanisms of low-nitrogen (LN) tolerance in common wheat (Triticum aestivum L.) is crucial for developing cultivars with improved nitrogen-use efficiency (NUE). In this study, a LN-tolerant cultivar (‘Xin Chun 29’, XC29) and a LN-sensitive cultivar (‘Xin Chun 11’, XC11) were used to investigate miRNA-mediated post-transcriptional regulation under LN stress. A total of 822 miRNAs were identified across root and grain tissues, including 104 known miRNAs and several tissue-specific candidates. In roots, tae-miR395a and tae-miR444a were significantly upregulated in XC29 under LN stress, putatively targeting an F-box ubiquitin ligase gene and glutathione reductase gene, respectively. In grains, the tae-miR156/SBP module was upregulated in XC29, whereas tae-miR1118 and tae-miR9778 were downregulated in XC11, potentially suppressing a receptor kinase gene and calmodulin gene. KEGG analysis revealed that target genes of differentially expressed miRNAs were significantly enriched in plant hormone signal transduction, ubiquitin-mediated proteolysis, and nitrogen metabolism. Notably, within the hormone signaling category, the gibberellin (GA) branch was highlighted by the co-targeting of DELLA genes by tae-miR1130b-3p and tae-miR1120c-3p. To elucidate this regulatory hub, a putative miRNA-target network centered on DELLA proteins was constructed, further underscoring the centrality of gibberellin signaling in the LN adaptation process. These findings suggest potential key miRNA-target modules contributing to LN adaptive responses and may provide useful genetic resources for molecular design breeding of nitrogen-efficient wheat.

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Cite This Study

Gao et al. (2026) studied this question.

synapsesocial.com/papers/69d0af36659487ece0fa518chttps://doi.org/10.3390/plants15071095
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