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Activation of HLS1 by Mechanical Stress via Ethylene-Stabilized EIN3 Is Crucial for Seedling Soil Emergence

机译:机械应力通过乙烯稳定化的EIN3激活HLS1对幼苗土壤萌发至关重要

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摘要

The seeds of terrestrial flowering plants often start their life cycle in subterranean darkness. To protect the fragile apical meristematic tissues and cotyledons from mechanical injuries during soil penetration, dicotyledonous seedlings form an elegant apical hook at the top of the hypocotyl. The apical hook has been considered as an adaption structure to the subterranean environment. However, the role of the apical hook in seedling emergence and the molecular mechanism of apical hook formation under real-life conditions remain highly speculative. Here, we find that HOOKLESS 1 (HLS1), a critical gene in apical hook formation in Arabidopsis thaliana, is required for seedling emergence from the soil. When grown under soil, hls1 mutant exhibits severe emergence defects. By contrast, HLS1 overexpression in the hls1 background fully restores emergence defects and displays better emergence capacity than that of WT. Our results indicate that HLS1 transcription is stimulated in response to the mechanical stress of soil cover, which is dependent on the function of the transcription factors ETHYLENE INSENSITIVE 3 (EIN3) and EIN3-LIKE 1 (EIL1). Soil-conferred mechanical stress activates the ethylene signaling pathway to stabilize EIN3 by repressing the activity of the F-box proteins EBF1 and EBF2. These combined results reveal a signaling pathway in which plant seedlings transduce the mechanical pressure of soil cover to correctly modulate apical hook formation during soil emergence.
机译:陆地开花植物的种子通常在地下黑暗中开始其生命周期。为了保护脆弱的根尖分生组织和子叶在土壤渗透过程中免受机械伤害,双子叶植物幼苗在下胚轴顶部形成了一个优雅的根尖钩。顶钩被认为是对地下环境的适应结构。然而,在现实生活条件下,根尖钩在幼苗出苗中的作用以及根尖钩形成的分子机制仍是高度推测性的。在这里,我们发现HOOKLESS 1(HLS1)是拟南芥中根尖钩形成中的关键基因,对于从土壤中出苗是必需的。当在土壤中生长时,hls1突变体表现出严重的出芽缺陷。相比之下,hls1背景中的HLS1过表达完全恢复了出现缺陷,并且显示出比WT更好的出现能力。我们的结果表明,HLS1转录是响应土壤覆盖物的机械应力而被刺激的,这取决于转录因子ETHENSENE INSENSITIVE 3(EIN3)和EIN3-LIKE 1(EIL1)的功能。赋予土壤的机械应力通过抑制F-box蛋白EBF1和EBF2的活性来激活乙烯信号传导途径来稳定EIN3。这些综合结果揭示了一个信号传导途径,其中植物幼苗转化了土壤覆盖的机械压力,从而在土壤出土期间正确地调节了顶端钩的形成。

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