首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Arabidopsis JACKDAW and MAGPIE zinc finger proteins delimit asymmetric cell division and stabilize tissue boundaries by restricting SHORT-ROOT action.
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Arabidopsis JACKDAW and MAGPIE zinc finger proteins delimit asymmetric cell division and stabilize tissue boundaries by restricting SHORT-ROOT action.

机译:拟南芥JACKDAW和MAGPIE锌指蛋白通过限制SHORT-ROOT作用来限制不对称细胞分裂并稳定组织边界。

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摘要

In the Arabidopsis root, the SHORT-ROOT transcription factor moves outward to the ground tissue from its site of transcription in the stele and is required for the specification of the endodermis and the stem cell organizing quiescent center cells. In addition, SHORT-ROOT and the downstream transcription factor SCARECROW control an oriented cell division in ground tissue stem cell daughters. Here, we show that the JACKDAW and MAGPIE genes, which encode members of a plant-specific family of zinc finger proteins, act in a SHR-dependent feed-forward loop to regulate the range of action of SHORT-ROOT and SCARECROW. JACKDAW expression is initiated independent of SHORT-ROOT and regulates the SCARECROW expression domain outside the stele, while MAGPIE expression depends on SHORT-ROOT and SCARECROW. We provide evidence that JACKDAW and MAGPIE regulate tissue boundaries and asymmetric cell division and can control SHORT-ROOT and SCARECROW activity in a transcriptional and protein interaction network.
机译:在拟南芥的根中,SHORT-ROOT转录因子从其在碑石上的转录位点向外移动到地面组织,这对于指定内胚层和组织静止中心细胞的干细胞是必需的。此外,SHORT-ROOT和下游转录因子SCARECROW控制着地面组织干细胞子代的定向细胞分裂。在这里,我们显示了JACKDAW和MAGPIE基因,它们编码植物特异性锌指蛋白家族的成员,在SHR依赖性前馈环中起作用,以调节SHORT-ROOT和SCARECROW的作用范围。 JACKDAW表达的启动独立于SHORT-ROOT,并在碑石外部调节SCARECROW表达域,而MAGPIE表达则取决于SHORT-ROOT和SCARECROW。我们提供的证据表明,JACKDAW和MAGPIE可以调节组织边界和不对称细胞分裂,并可以控制转录和蛋白质相互作用网络中的SHORT-ROOT和SCARECROW活性。

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