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A QTL Study for Regions Contributing to Arabidopsis thaliana Root Skewing on Tilted Surfaces

机译:倾斜表面上拟南芥根偏向区域的QTL研究

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摘要

Plant root systems must grow in a manner that is dictated by endogenous genetic pathways, yet sensitive to environmental input. This allows them to provide the plant with water and nutrients while navigating a heterogeneous soil environment filled with obstacles, toxins, and pests. Gravity and touch, which constitute important cues for roots growing in soil, have been shown to modulate root architecture by altering growth patterns. This is illustrated by Arabidopsis thaliana roots growing on tilted hard agar surfaces. Under these conditions, the roots are exposed to both gravity and touch stimulation. Consequently, they tend to skew their growth away from the vertical and wave along the surface. This complex growth behavior is believed to help roots avoid obstacles in nature. Interestingly, A. thaliana accessions display distinct growth patterns under these conditions, suggesting the possibility of using this variation as a tool to identify the molecular mechanisms that modulate root behavior in response to their mechanical environment. We have used the Cvi/Ler recombinant inbred line population to identify quantitative trait loci that contribute to root skewing on tilted hard agar surfaces. A combination of fine mapping for one of these QTL and microarray analysis of expression differences between Cvi and Ler root tips identifies a region on chromosome 2 as contributing to root skewing on tilted surfaces, potentially by modulating cell wall composition.
机译:植物根系必须以内源遗传途径决定的方式生长,但对环境输入敏感。这使他们能够为植物提供水和养分,同时在充满障碍,毒素和害虫的异质土壤环境中航行。重力和触感是土壤中根系生长的重要线索,已经显示出它们可以通过改变生长方式来调节根系结构。拟南芥在倾斜的坚硬琼脂表面上生长的根说明了这一点。在这些条件下,根部受到重力和触摸刺激。因此,它们倾向于使生长偏离垂直方向并沿表面波动。人们认为这种复杂的生长行为有助于根系避免自然界的障碍。有趣的是,拟南芥的种质在这些条件下表现出不同的生长方式,这表明有可能使用这种变异作为一种工具来识别响应根系机械环境而调节根系行为的分子机制。我们已使用Cvi / Ler重组自交系种群来鉴定有助于倾斜的硬琼脂表面上的根偏斜的定量性状基因座。这些QTL之一的精细定位与Cvi和Ler根尖之间表达差异的微阵列分析相结合,确定了2号染色体上的一个区域可能是通过调节细胞壁组成而导致了倾斜表面上的根偏斜。

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