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首页> 外文期刊>Royal Society Open Science >A simple mathematical model of allometric exponential growth describes the early three-dimensional growth dynamics of secondary xylem in Arabidopsis roots
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A simple mathematical model of allometric exponential growth describes the early three-dimensional growth dynamics of secondary xylem in Arabidopsis roots

机译:一个简单的异速生长指数数学模型描述了拟南芥根中次生木质部的早期三维生长动力学。

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摘要

Unravelling the specific growth dynamics of key tissues and organs is fundamental to understand how multicellular organisms orchestrate their different growth programmes. In plants, the secondary growth (thickening) of stems and roots provides the mechanical support that plants need to achieve their developmental potential. We used conventional anatomical and microscopy techniques, image-processing software, and quantitative analysis to understand and mathematically describe the growth dynamics of the early developmental stages of secondary xylem (the main tissue developed during secondary growth). Results show that such early developmental stages are characterized by exponential expansion of secondary xylem in three dimensions in the form of an inverted cone, with a power law that describes the relationship between the area of the base and the longitudinal progression (height) of the growing secondary xylem cone over time with a scaling exponent of 2/5: the signature of allometric growth. Our work constitutes a starting point for future modelling of secondary xylem in particular and secondary growth in general.
机译:弄清关键组织和器官的特定生长动态,对于了解多细胞生物如何协调其不同的生长程序至关重要。在植物中,茎和根的二次生长(增稠)提供了植物实现其发展潜力所需的机械支持。我们使用常规的解剖和显微镜技术,图像处理软件以及定量分析来理解和数学描述次生木质部(次生生长期间发育的主要组织)早期发育阶段的生长动力学。结果表明,此类早期发育阶段的特征是次生木质部在三个维度上呈倒锥状的指数膨胀,其幂定律描述了基部面积与生长的纵向进展(高度)之间的关系。随时间变化的次生木质部锥体,缩放比例为2/5:异速生长的标志。我们的工作构成了对次生木质部尤其是次生生长进行未来建模的起点。

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