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首页> 外文期刊>The Plant Cell >Systems analysis of auxin transport in the Arabidopsis root apex.
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Systems analysis of auxin transport in the Arabidopsis root apex.

机译:拟南芥根顶尖中的植物素输送系统分析。

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Auxin is a key regulator of plant growth and development. Within the root tip, auxin distribution plays a crucial role specifying developmental zones and coordinating tropic responses. Determining how the organ-scale auxin pattern is regulated at the cellular scale is essential to understanding how these processes are controlled. In this study, we developed an auxin transport model based on actual root cell geometries and carrier subcellular localizations. We tested model predictions using the DII-VENUS auxin sensor in conjunction with state-of-the-art segmentation tools. Our study revealed that auxin efflux carriers alone cannot create the pattern of auxin distribution at the root tip and that AUX1/LAX influx carriers are also required. We observed that AUX1 in lateral root cap (LRC) and elongating epidermal cells greatly enhance auxin's shootward flux, with this flux being predominantly through the LRC, entering the epidermal cells only as they enter the elongation zone. We conclude that the nonpolar AUX1/LAX influx carriers control which tissues have high auxin levels, whereas the polar PIN carriers control the direction of auxin transport within these tissues.
机译:植物连体是植物生长发育的关键调节因素。在根尖内,助线分布在指定发育区和协调热带反应的重要作用。确定如何在蜂窝规模处调节器官尺度的植物素图案是必不可了解这些过程如何控制这些过程。在这项研究中,我们开发了一种基于实际根细胞几何形状和载波亚细胞本地化的助长传输模型。我们使用DII-Venus Auxin传感器与最先进的分割工具测试模型预测。我们的研究表明,单独的养羊石流出载体不能在根尖处创造植物素分布的图案,并且还需要辅助1 / LAX流入载体。我们观察到侧向根帽(LRC)和伸长表皮细胞的AUX1大大增强了疾病的击败通量,这种通量主要通过LRC,仅在进入伸长区时进入表皮细胞。我们得出结论,非极性AUX1 / LAX流入载体控制哪种组织具有高疾病水平,而极性销载体控制这些组织内的植物素转运方向。

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