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NPY Genes Play an Essential Role in Root Gravitropic Responses in Arabidopsis

机译:NPY基因在拟南芥根重力反应中起重要作用。

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摘要

Plants can sense the direction of gravity and orient their growth to ensure that roots are anchored in soil and that shoots grow upward. Gravitropism has been studied extensively using Arabidopsis genetics, but the exact mechanisms for gravitropism are not fully understood. Here, we demonstrate that five NPY genes play a key role in Arabidopsis root gravitropism. NPY genes were previously identified as regulators of auxin-mediated organogenesis in a genetic pathway with the AGC kinases PID, PID2, WAG1, and WAG2. We show that all five NPY genes are highly expressed in primary root tips. The single npy mutants do not display obvious gravitropism defects, but the npy1 npy2 npy3 npy4 npy5 quintuple mutants show dramatic gravitropic phenotypes. Systematic analysis of all the npy double, triple, and quadruple combinations demonstrates that the five NPY genes all contribute to gravitropism. Our work indicates that gravitropism, phototropism, and organogenesis use analogous mechanisms in which at least one AGC kinase, one NPH3/NPY gene, and one ARF are required.
机译:植物可以感知重力的方向并确定其生长方向,以确保根部锚固在土壤中并且新芽向上生长。引力已使用拟南芥遗传学进行了广泛的研究,但引力作用的确切机制尚未完全了解。在这里,我们证明了五个NPY基因在拟南芥根向重力中起关键作用。 NPY基因以前被鉴定为具有AGC激酶PID,PID2,WAG1和WAG2的遗传途径中生长素介导的器官发生的调节剂。我们显示,所有五个NPY基因在原根尖均高度表达。单个npy突变体没有显示出明显的重力缺陷,但是npy1 npy2 npy3 npy4 npy5五元组突变体表现出显着的重力表型。对所有npy双,三和四联组合的系统分析表明,这五个NPY基因都对重力产生了影响。我们的工作表明,重力,向光性和器官发生使用类似的机制,其中至少需要一种AGC激酶,一种NPH3 / NPY基因和一种ARF。

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