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February 2, 2026The Plant Journal0 citations

Cytokinin‐regulated WUSCHEL promotes lateral bud and vascular cambium development in Pinus yunnanensis

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JXJunfei XuCZChiyu ZhouXSXin Su

Key Points

  • This research aims to understand the mechanisms regulating lateral bud outgrowth and vascular development in Pinus yunnanensis.
  • Analyzed phenotypic, physiological, and molecular characteristics of P. yunnanensis seedlings.
  • Studied the effects of cytokinin accumulation on WUSCHEL expression.
  • Conducted experiments on PyWUS overexpression in Arabidopsis.
  • Performed yeast two-hybrid assays to identify protein interactions.
  • Cytokinin accumulation induces WUSCHEL expression, which regulates cell cycle and proliferation.
  • PyWUS overexpression enhances vegetative growth and shoot branching in Arabidopsis.
  • PyWUS promotes cambial cell activity and xylem development in poplar.
  • Defoliation and decapitation lead to accelerated bud outgrowth.

Abstract

SUMMARY Lateral bud outgrowth and secondary vascular development are regulated by the division and differentiation of meristematic cells. However, the regulatory mechanisms underlying lateral bud outgrowth and meristem activity remain unclear in Pinus yunnanensis . Here, we investigated the processes of lateral bud outgrowth in P. yunnanensis seedlings by analyzing their phenotypic, physiological, and molecular characteristics. Our results provide evidence that lateral bud outgrowth depends on local cytokinin (CK) activity. CK accumulation induced the expression of WUSCHEL ( WUS ), thereby upregulating the expression of genes related to the cell cycle and proliferation. To further investigate the roles of WUS in this pathway, subsequent studies on PyWUS overexpressing in Arabidopsis significantly accelerated vegetative growth and enhanced shoot branching. In poplar, PyWUS increased the number of embryonic leaves within lateral buds, while defoliation and decapitation triggered earlier and faster bud outgrowth. Notably, PyWUS promoted cambial cells' activity and xylem development in poplar. In addition, PyWUS enhanced root elongation growth in both Arabidopsis and poplar. Yeast two‐hybrid assays revealed that PyWUS interacted with PyWOX13, PyWOXA, and ARABIDOPSIS HOMEOBOX8/15 (ATHB8/15), supporting the conserved regulatory network of WUS in meristem development. Our study elucidates the mechanisms underlying lateral bud development in Pinus species. Furthermore, this study demonstrates the conserved function of WUS in regulating lateral bud outgrowth and reveals its novel role in promoting secondary vascular development, providing new insights into its functions in conifers.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/6980fe7cc1c9540dea8108f3https://doi.org/10.1111/tpj.70711
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