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The PIN auxin efflux facilitator network controls growth and patterning in Arabidopsis roots

机译:PIN生长素外排促进剂网络控制拟南芥根的生长和模式

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Local accumulation of the plant growth regulator auxin mediates pattern formation in Arabidopsis roots and influences outgrowth and development of lateral root- and shoot-derived primordia. However, it has remained unclear how auxin can simultaneously regulate patterning and organ outgrowth and how its distribution is stabilized in a primordium-specific manner. Here we show that five PIN genes collectively control auxin distribution to regulate cell division and cell expansion in the primary root. Furthermore, the joint action of these genes has an important role in pattern formation by focusing the auxin maximum and restricting the expression domain of PLETHORA (PLT) genes, major determinants for root stem cell specification. In turn, Pirgenes are required for PIN gene transcription to stabilize the auxin maximum at the distal root tip. Our data reveal an interaction network of auxin transport facilitators and root fate determinants that control patterning and growth of the root primordium.
机译:植物生长调节剂生长素的局部积累介导拟南芥根中的模式形成,并影响侧根和芽衍生的原基的生长和发育。然而,尚不清楚植物生长素如何能够同时调节模式和器官的生长以及如何以原基体特异性的方式稳定其分布。在这里,我们显示了五个PIN基因共同控制植物生长素的分布,以调节主根中的细胞分裂和细胞扩增。此外,这些基因的联合作用通过集中最大的生长素并限制PLETHORA(PLT)基因(根干细胞规格的主要决定因素)的表达域而在模式形成中起重要作用。反过来,PIN基因转录也需要Pirgenes来稳定远端根尖的最大生长素。我们的数据揭示了生长素运输促进剂和根系命运决定因素的相互作用网络,这些网络控制着根原基的模式和生长。

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