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Auxin-Independent NAC Pathway Acts in Response to Explant-Specific Wounding and Promotes Root Tip Emergence during de Novo Root Organogenesis in Arabidopsis

机译:生长素独立的NAC途径响应外植体特定的创伤并在拟南芥的从新根器官发生过程中促进根尖的出现。

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摘要

Plants have powerful regenerative abilities that allow them to recover from damage and survive in nature. De novo organogenesis is one type of plant regeneration in which adventitious roots and shoots are produced from wounded and detached organs. By studying de novo root organogenesis using leaf explants of Arabidopsis (Arabidopsis thaliana), we previously suggested that wounding is the first event that provides signals to trigger the whole regenerative process. However, our knowledge of the role of wounding in regeneration remains limited. In this study, we show that wounding not only triggers the auxin-mediated fate transition of regeneration-competent cells, but also induces the NAC pathway for root tip emergence. The NAC1 transcription factor gene was specifically expressed in response to wounding in the leaf explant, but not in the wounded leaf residue of the source plant. Inhibition of the NAC1 pathway severely affected the emergence of adventitious root tips. However, the NAC1 pathway functioned independently of auxin-mediated cell fate transition and regulates expression of CEP genes, which encode proteins that might have a role in degradation of extensin proteins in the cell wall. Overall, our results suggest that wounding has multiple roles in de novo root organogenesis and that NAC1 acts as one downstream branch in regulating the cellular environment for organ emergence.
机译:植物具有强大的再生能力,可以使植物从伤害中恢复过来并在自然中生存。从头器官发生是植物再生的一种类型,其中从受伤和分离的器官中产生不定根和芽。通过使用拟南芥(Arabidopsis thaliana)的叶外植体研究从头开始的根器官发生,我们先前曾建议受伤是提供触发整个再生过程信号的第一个事件。但是,我们对伤口在再生中的作用的了解仍然有限。在这项研究中,我们表明伤口不仅触发了生长素介导的再生能力细胞的命运转变,而且还诱导了根尖出现的NAC途径。 NAC1转录因子基因是在叶片外植体中响应受伤而特异性表达的,而不是在源植物的受伤叶残留物中表达。 NAC1途径的抑制严重影响了不定根尖的出现。但是,NAC1通路的功能独立于生长素介导的细胞命运转变,并调节CEP基因的表达,而CEP基因编码的蛋白可能在细胞壁中延伸蛋白的降解中起作用。总体而言,我们的结果表明,创伤在从头根源器官发生中具有多种作用,并且NAC1在调节器官出现的细胞环境中起着一个下游分支的作用。

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