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October 19, 2025Journal of Experimental Botany3 citations

The Multidimensional Regulatory Network of Trichome Development: From Transcription Factors to Hormone Signaling Integration

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YSYihua ShenJFJincun FuZDZong Dongyue

Key Points

  • Trichomes are crucial for plant adaptation and exist in diverse forms across plant species, impacting morphogenesis and environmental resilience.
  • The review highlights gene regulatory mechanisms in Arabidopsis thaliana, showing how trichome development is influenced by various hormonal signals.
  • The findings establish connections between trichome characteristics and broader plant developmental biology, emphasizing their role in genetic and environmental adaptability.
  • Understanding these mechanisms could enhance techniques in molecular breeding, utilizing trichome traits for improved plant performance.

Abstract

Abstract Trichomes are specialized structures derived from epidermal cells differentiation, which are widely distributed in angiosperms, gymnosperms and bryophytes, and exhibit remarkable morphological diversity. Based on structural characteristics, trichomes are classified into secretory (glandular trichomes) and non-secretory (non-glandular trichomes) types, both of which play pivotal roles in the adaptation to the environment. The model plant Arabidopsis thaliana, with its unicellular non-glandular trichomes, has become a classic system for studying plant cell differentiation and morphogenesis. This review systematically synthesizes advances in Arabidopsis trichome research, delineates conserved and species-specific regulatory mechanisms of trichome development across diverse taxa, and dissects the genetic regulatory networks governing trichome initiation, endoreduplication (nuclear DNA replication), cell division, and branching morphogenesis. These networks precisely coordinate plant morphogenesis, stress resilience, metabolic regulation, and environmental adaptability through hormonal signaling and epigenetic modifications, thereby establishing a theoretical framework for plant developmental biology and molecular breeding.

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Cite This Study

Shen et al. (2025) studied this question.

synapsesocial.com/papers/68f43f03854d1061a58ac634https://doi.org/10.1093/jxb/eraf457
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