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September 10, 2025Biomolecules21 citationsOpen Access

Adventitious Root Formation in Cuttings: Insights from Arabidopsis and Prospects for Woody Plants

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PLPeipei LiuSZShi‐Li ZhangXWXinying Wang

Key Points

  • Adventitious root formation is crucial for successful cutting propagation in various plant species.
  • Key regulators like jasmonic acid and auxin play pivotal roles in adventitious root formation.
  • Plant age significantly influences the regenerative capacity of cuttings, affecting AR formation.
  • Understanding the molecular mechanisms of AR formation can enhance the efficiency of cutting propagation.

Abstract

Cutting propagation is a commonly employed technology for vegetative reproduction in agricultural, forestry, and horticultural practice. The success of cutting propagation depends on adventitious root (AR) formation—a process whereby roots regenerate from stem cuttings or leaf cuttings. In this review, we summarize the distinct stages of cutting-induced AR formation and highlight the pivotal roles of plant hormones and age in this process. Jasmonic acid (JA) acts as a master trigger for promoting AR formation, while auxin serves as the core regulator, driving AR formation. Furthermore, plant age is a crucial factor determining the regenerative competence of cuttings. Notably, age and JA collaboratively modulate auxin synthesis in cutting-induced AR formation. Overall, this review not only elucidates the molecular mechanisms underlying AR formation but also provides valuable insights for improving efficiency of cutting propagation in various plant species.

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Cite This Study

Liu et al. (2025) studied this question.

synapsesocial.com/papers/68c1ae7754b1d3bfb60e6790https://doi.org/10.3390/biom15081089
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