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分层的全局和局部生长素信号协调……中的细胞相互交错

Hierarchical global and local auxin signals coordinate cellular interdigitation in .

作者信息

Pérez-Henríquez Patricio, Li Hongjiang, Zhou Xiang, Pan Xue, Lin Wenwei, Tang Wenxin, Nagawa Shingo, Lin Deshu, Xu Tongda, Michniewicz Marta, Prigge Michael J, Strader Lucia C, Estelle Mark, Hayashi Ken-Ichiro, Friml Jiří, Qi Linlin, Liu Zhongchi, Van Norman Jaimie, Yang Zhenbiao

机构信息

Institute of Integrated Genome Biology and Department of Botany and Plant Sciences, University of California, Riverside, CA 92521, USA.

Haixia Institute of Science and Technology, Fujian Agriculture and Forestry University, Fuzhou, Fujian, China.

出版信息

bioRxiv. 2024 Jun 19:2024.06.17.599171. doi: 10.1101/2024.06.17.599171.

Abstract

The development of multicellular tissues requires both local and global coordination of cell polarization, however, the mechanisms underlying their interplay are poorly understood. In Arabidopsis, leaf epidermal pavement cells (PC) develop a puzzle-piece shape locally coordinated through apoplastic auxin signaling. Here we show auxin also globally coordinates interdigitation by activating the TIR1/AFB-dependent nuclear signaling pathway. This pathway promotes a transient maximum of auxin at the cotyledon tip, which then moves across the leaf activating local PC polarization, as demonstrated by locally uncaged auxin globally rescuing defects in mutant but not in mutants. Our findings show that hierarchically integrated global and local auxin signaling systems, which respectively depend on TIR1/AFB-dependent gene transcription in the nucleus and TMK-mediated rapid activation of ROP GTPases at the cell surface, control PC interdigitation patterns in Arabidopsis cotyledons, revealing a mechanism for coordinating a local cellular process with the development of whole tissues.

摘要

多细胞组织的发育需要细胞极化的局部和全局协调,然而,它们相互作用的潜在机制仍知之甚少。在拟南芥中,叶片表皮铺板细胞(PC)通过质外体生长素信号传导形成局部协调的拼图形状。在这里,我们表明生长素还通过激活TIR1/AFB依赖性核信号通路来全局协调指状交叉。该通路促进子叶尖端生长素的瞬时最大值,然后生长素穿过叶片激活局部PC极化,如局部释放生长素在全局上拯救突变体而非突变体中的缺陷所证明的那样。我们的研究结果表明,分别依赖于细胞核中TIR1/AFB依赖性基因转录和细胞表面TMK介导的ROP GTPases快速激活的分层整合的全局和局部生长素信号系统,控制拟南芥子叶中的PC指状交叉模式,揭示了一种将局部细胞过程与整个组织发育相协调的机制。

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