胞间连丝
油菜素甾醇
细胞生物学
细胞内
生长素
激素
拟南芥
平衡
植物激素
生物
化学
细胞通透性
内生
生物化学
突变体
细胞质
基因
作者
Yaowei Wang,Jessica Pérez‐Sancho,Matthieu Pierre Platre,Brenda Callebaut,Marija Smokvarska,Karoll Ferrer,Yongming Luo,Trevor M. Nolan,Takeo Sato,Wolfgang Busch,Philip N. Benfey,Miroslav Kvasnica,Johan M. Winne,Emmanuelle Bayer,Nemanja Vukašinović,Eugenia Russinova
标识
DOI:10.1038/s41589-023-01346-x
摘要
Brassinosteroids (BRs) are steroidal phytohormones that are essential for plant growth, development and adaptation to environmental stresses. BRs act in a dose-dependent manner and do not travel over long distances; hence, BR homeostasis maintenance is critical for their function. Biosynthesis of bioactive BRs relies on the cell-to-cell movement of hormone precursors. However, the mechanism of the short-distance BR transport is unknown, and its contribution to the control of endogenous BR levels remains unexplored. Here we demonstrate that plasmodesmata (PD) mediate the passage of BRs between neighboring cells. Intracellular BR content, in turn, is capable of modulating PD permeability to optimize its own mobility, thereby manipulating BR biosynthesis and signaling. Our work uncovers a thus far unknown mode of steroid transport in eukaryotes and exposes an additional layer of BR homeostasis regulation in plants. Genetic and bioorthogonal chemistry approaches reveal cell-to-cell movement of brassinosteroid (BR) hormones via plasmodesmata in plants. In turn, BRs positively regulate callose deposition at plasmodesmata to balance its own biosynthesis.
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