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Symplastic communication spatially directs local auxin biosynthesis to maintain root stem cell niche in Arabidopsis

机译:共生交流在空间上指导局部生长素的生物合成以维持拟南芥中的根干细胞生态位

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摘要

Stem cells serve as the source of new cells for plant development. A group of stem cells form a stem cell niche (SCN) at the root tip and in the center of the SCN are slowly dividing cells called the quiescent center (QC). QC is thought to function as a signaling hub that inhibits differentiation of surrounding stem cells. Although it has been generally assumed that cell-to-cell communication provides positional information for QC and SCN maintenance, the tools for testing this hypothesis have long been lacking. Here we exploit a system that effectively blocks plasmodesmata (PD)-mediated signaling to explore how cell-to-cell communication functions in the SCN. We showed that the symplastic signaling between the QC and adjacent cells directs the formation of local auxin maxima and establishment of AP2-domain transcription factors, PLETHORA gradients. Interestingly we found symplastic signaling is essential for local auxin biosynthesis, which acts together with auxin polar transport to provide the guidance for local auxin enrichment. Therefore, we demonstrate the crucial role of cell-to-cell communication in the SCN maintenance and further uncover a mechanism by which symplastic signaling initiates and reinforces the positional information during stem cell maintenance via auxin regulation.
机译:干细胞是植物发育新细胞的来源。一组干细胞在根尖处形成干细胞小生境(SCN),在SCN的中心是缓慢分裂的细胞,称为静止中心(QC)。 QC被认为是抑制周围干细胞分化的信号枢纽。尽管通常认为单元间通信可为QC和SCN维护提供位置信息,但长期缺乏用于检验此假设的工具。在这里,我们开发了一种系统,该系统有效地阻止了胞浆(PD)介导的信号传导,以探索SCN中的细胞间通信功能。我们表明,QC与相邻细胞之间的共生信号传导指导局部生长素最大值的形成和AP2域转录因子PLETHORA梯度的建立。有趣的是,我们发现共生信号对于局部植物生长素的生物合成至关重要,它与植物生长素的极性转运一起为局部植物生长素的富集提供指导。因此,我们证明了细胞间通信在SCN维护中的关键作用,并进一步揭示了通过增生素调节在干细胞维护过程中增生信号启动并增强位置信息的机制。

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