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The Asymmetric Expression of SAUR Genes Mediated by ARF7/19 Promotes the Gravitropism and Phototropism of Plant Hypocotyls

机译:ARF7 / 19介导的SAUR基因的不对称表达促进了植物缺杆植物的祖国祖先和光学性

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The asymmetric distribution of auxin leads to the bending growth of hypocotyls during gravitropic and phototropic responses, but the signaling events downstream of auxin remain unclear. Here, we identify many SAUR genes showing asymmetric expression in soybean hypocotyls during gravistimulation and then study their homologs in Arabidopsis . SAUR19 subfamily genes have asymmetric expression in Arabidopsis hypocotyls during gravitropic and phototropic responses, induced by the lateral redistribution of auxin. Both the mutation of SAUR19 subfamily genes and the ectopic expression of SAUR19 weaken these tropic responses, indicating the critical role of their asymmetric expression. The auxin-responsive transcription factor ARF7 may directly bind the SAUR19 promoter and activate SAUR19 expression asymmetrically in tropic responses. Taken together, our results reveal that a gravity- or light-triggered asymmetric auxin distribution induces the asymmetric expression of SAUR19 subfamily genes by ARF7 and ARF19 in the hypocotyls, which leads to bending growth during gravitropic and phototropic responses.
机译:蟾蜍素的不对称分布导致重力和光学响应期间胚轴的弯曲生长,但助长素下游的信号传导事件仍不清楚。在这里,我们识别许多Saur基因,在毛动致病过程中显示出大豆胚源中的不对称表达,然后在拟南芥中研究其同源物。 Saur19亚家族基因在拟南芥中存在的拟拟人的重力和光学响应期间具有不对称的表达,通过养肝的侧向再分布来诱导。 Saur19亚家族基因的突变和Saur19的异位表达削弱了这些热带反应,表明其不对称表达的关键作用。营养浓度响应转录因子ARF7可以直接染色Saur19启动子并在热带反应中不对称地激活Saur19表达。我们的结果揭示了重力或光触发的不对称植物素分布诱导arf7和arf19在下胚轴中的Saur19亚家族基因的不对称表达,这导致重力和光学反应期间弯曲生长。

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