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Quantitative analysis of 3-dimensional root architecture based on image reconstruction and its application to research on phosphorus uptake in soybean

机译:基于图像重建的三维根构架定量分析及其在大豆磷吸收研究中的应用

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Quantification of 3-dimensional (3-D) plant root architecture is one of the most important approaches to investigating plant root growth and its function in nutrient acquisition and utilization. However, no effective methods have been reported hitherto to quantify 3-D root architecture parameters, making it difficult to further study the 3-D characteristics of the root system and its function. In the present study, we created a rapid algorithm to reconstruct 3-D root system images based on the basic structural features of such linear objects as roots, using 2-D root images taken by digital CCD cameras at multi-viewing angles. This method is very effective in the reconstruction of plant root system images, thus enabling us to obtain the digital model of 3-D root architecture and its 3-D skeleton, based on which some major root architecture parameters can be calculated. Using this method, we were able to acquire 3-D parameters of soybean root architecture whose root diameter was more than 0.3 mm, including tap root length, total root length, average basal root angle, ratio of root width to root depth, percentage distribution of root length in different layers and root distribution in different 3-D regions of the growth medium. We also quantitatively analyzed the relationship between different root architecture parameters and such plant nutrition parameters as soybean biomass and phosphorus (P) uptake. Our study may provide a new tool in studying the growth and nutritional functions of plant root systems.
机译:三维(3-D)植物根系结构的量化是研究植物根系生长及其在养分获取和利用中的功能的最重要方法之一。然而,迄今为止,尚未报道有效的方法来量化3-D根结构参数,这使得难以进一步研究根系统的3-D特性及其功能。在本研究中,我们使用数字CCD相机在多视角拍摄的2-D根图像,创建了一种基于线性对象(例如根)的基本结构特征的3-D根系统图像的快速算法。该方法在植物根系图像的重建中非常有效,因此使我们能够获得3-D根构架及其3-D骨架的数字模型,并以此为基础计算一些主要的根构架参数。使用此方法,我们可以获得根直径大于0.3 mm的大豆根结构的3-D参数,包括抽穗根长度,总根长度,平均基根角,根宽与根深的比率,百分比分布生长层中不同层的根长和不同3-D区域中根的分布我们还定量分析了不同根系结构参数与植物营养参数(如大豆生物量和磷(P)吸收)之间的关系。我们的研究可能为研究植物根系的生长和营养功能提供新的工具。

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