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April 19, 2026Horticulture Research0 citationsOpen Access

A versatile chemical toolbox drives plant regeneration

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YSYin SongLZLangrang ZhangZHZiyao Hu

Key Points

  • The aim is to explore new strategies to improve plant regeneration efficiency and address genotype recalcitrance.
  • Review of advances in small molecules affecting plant regeneration
  • Characterization of molecular mechanisms behind small molecules
  • Discussion on practical applications in crop improvement
  • Highlighted small molecules that enhance regeneration efficiency
  • Demonstrated controllable strategies for applying small molecules
  • Identified advantages of using small molecules for both fundamental studies and practical applications

Abstract

Abstract Plant regeneration is widely exploited in genetic transformation, genome editing, tissue culture, cuttage, and grafting which are crucial means to improve crop productivity and resilience. However, plant regeneration is heavily restricted by their low regeneration efficiency and genotype recalcitrance, especially in many economically important plant species. To address these challenges, new approaches have been developed to greatly improve regeneration efficiency and genotype plasticity. Among them, small molecules represent attractive options that offer an effective, inexpensive, and convenient strategy to enhance regeneration efficiency in a stepwise and controllable manner. Here, we summarize current advances in the characterization of small molecules with superior efficacy and their molecular mechanisms in plant regeneration, highlighting their advantages for fundamental studies and practical applications. Finally, we conclude with a critical discussion on the remaining questions and future challenges in pinpointing small molecules with regeneration-enhancing potential.

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Cite This Study

Song et al. (2026) studied this question.

synapsesocial.com/papers/69e472a8010ef96374d8eb14https://doi.org/10.1093/hr/uhag155
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