木质部
形成层
拟南芥
细胞生物学
次生细胞壁
生物
转录因子
髓
拟南芥
细胞壁
基因
植物
维管形成层
转录组
核糖核酸
基因表达调控
化学
细胞分化
基因表达
多年生植物
调节基因
次生生长
微阵列分析技术
WRKY蛋白质结构域
遗传学
非生物胁迫
调节顺序
细胞命运测定
转录调控
作者
Jinjing Pan,Yanhong Xu,Junchao Zhao,Fang Liu,Shaohua Wu,Xicheng Zhang,Chun‐Peng Song,Jinling Huang,Yongping Yang,Tian Weimin,Guiling Sun
摘要
Secondary xylem differentiation determines wood structure and function in perennial plants, yet its regulatory mechanisms remain poorly understood in Hevea brasiliensis. Here, we generated a single-nucleus RNA sequencing (snRNA-seq) atlas from the cambium to mature xylem region in stems, resolving transcriptionally distinct cell populations corresponding to cambium, xylem mother cells, and fibre-vessel cells. Pseudotime analysis reconstructed the developmental trajectories from cambium to late xylem cell states and revealed stage-specific activation of secondary cell wall (SCW) biosynthesis programmes. Gene regulatory network analysis identified HbWRKY12a as a fibre-vessel enriched transcription factor functioning as a key regulator in SCW formation. Molecular assays demonstrated that HbWRKY12a directly binds and activates HbMYB1R1c, which subsequently modulates lignin-associated SCW deposition. Heterologous overexpression of either HbWRKY12a or HbMYB1R1c in Arabidopsis resulted in significant reductions in stem diameter and plant height. Both overexpression lines exhibited markedly decreased SCW thickness in fibre, vessels, and pith cells. These findings reveal a WRKY-MYB cascade that mediates SCW formation in H. brasiliensis, extending the classical NAC-MYB regulatory framework and providing molecular targets for improving xylem properties and stress resilience in tropical perennial crops.
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