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首页> 外文期刊>Journal of Experimental Botany >The Arabidopsis NRT1.1 transceptor coordinately controls auxin biosynthesis and transport to regulate root branching in response to nitrate
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The Arabidopsis NRT1.1 transceptor coordinately controls auxin biosynthesis and transport to regulate root branching in response to nitrate

机译:Arabidopsis NRT1.1血频谱系协调控制生长素生物合成和运输以调节根部支化响应硝酸盐

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摘要

In agricultural systems, nitrate is the main source of nitrogen available for plants. Besides its role as a nutrient, nitrate has been shown to act as a signal molecule in plant growth, development, and stress responses. In Arabidopsis, the NRT1.1 nitrate transceptor represses lateral root (LR) development at low nitrate availability by promoting auxin basipetal transport out of the LR primordia (LRPs). Here we show that NRT1.1 acts as a negative regulator of the TAR2 auxin biosynthetic gene in the root stele. This is expected to repress local auxin biosynthesis and thus to reduce acropetal auxin supply to the LRPs. Moreover, NRT1.1 also negatively affects expression of the LAX3 auxin influx carrier, thus preventing the cell wall remodeling required for overlying tissue separation during LRP emergence. NRT1.1-mediated repression of both TAR2 and LAX3 is suppressed at high nitrate availability, resulting in nitrate induction of the TAR2 and LAX3 expression that is required for optimal stimulation of LR development by nitrate. Altogether, our results indicate that the NRT1.1 transceptor coordinately controls several crucial auxin-associated processes required for LRP development, and as a consequence that NRT1.1 plays a much more integrated role than previously expected in regulating the nitrate response of root system architecture.
机译:在农业系统中,硝酸盐是植物可用的主要来源。除了作为营养素的作用,已被证明硝酸盐作为植物生长,发育和应激反应中的信号分子。在拟南芥中,NRT1.1硝酸盐血感染症通过促进LR Primordia(LRPS)的养蛋白胸腺量输送来抑制低硝酸盐的可用性。在这里,我们表明NRT1.1作为根系中Tar2毒素生物合成基因的负调节剂。这预计将抑制局部生长素生物合成,从而减少对LRP的血管毒素供应。此外,NRT1.1也负面影响LAX3蟾蜍素流入载体的表达,从而防止在LRP出现期间覆盖组织分离所需的细胞壁重塑。 NRT1.1介导的Tar2和LAX3的抑制在高硝酸盐可用性下抑制,导致硝酸硝酸盐和LAX3表达所需的硝酸盐诱导,这是通过硝酸盐的最佳刺激。完全,我们的结果表明,NRT1.1 Transpeptor协调了LRP开发所需的几个至关重要的无关型相关过程,因此NRT1.1比以前在调节根系统架构的硝酸盐响应方面发挥更大的综合作用。

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