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Mobility of signaling molecules: the key to deciphering plant organogenesis

机译:信号分子的移动性:解密植物器官发生的关键

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摘要

Signaling molecules move between cells to form a characteristic distribution pattern within a developing organ; thereafter, they spatiotemporally regulate organ development. A key question in this process is how the signaling molecules robustly form the precise distribution on a tissue scale in a reproducible manner. Despite of an increasing number of quantitative studies regarding the mobility of signaling molecules, the detail mechanism of organogenesis via intercellular signaling is still unclear. We here review the potential advantages of plant development to address this question, focusing on the cytoplasmic continuity of plant cells through the plasmodesmata. The plant system would provide a unique opportunity to define the simple transportation mode of diffusion process, and, hence, the mechanism of organogenesis via intercellular signaling. Based on the advances in the understanding of intercellular signaling at the molecular level and in the quantitative imaging techniques, we discuss our current challenges in measuring the mobility of signaling molecules for deciphering plant organogenesis.
机译:信号分子在细胞之间移动,从而在发育器官中形成特征性分布模式。此后,它们时空调节器官的发育。该过程中的关键问题是信号分子如何以可重现的方式稳健地在组织尺度上形成精确的分布。尽管有关信号分子迁移性的定量研究越来越多,但通过细胞间信号传导进行器官发生的详细机制仍不清楚。我们在这里回顾植物发展来解决这个问题的潜在优势,重点是通过胞膜线虫的植物细胞的胞质连续性。植物系统将提供一个独特的机会来定义扩散过程的简单运输方式,从而定义通过细胞间信号传导的器官发生机制。基于在分子水平上对细胞间信号传导的理解和定量成像技术的进步,我们讨论了在测量信号分子迁移性以破译植物器官发生中所面临的挑战。

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