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首页> 外文期刊>BMC Plant Biology >RSAtrace3D: robust vectorization software for measuring monocot root system architecture
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RSAtrace3D: robust vectorization software for measuring monocot root system architecture

机译:RSATRACE3D:鲁棒矢量化软件用于测量单极管根系架构

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The root distribution in the soil is one of the elements that comprise the root system architecture (RSA). In monocots, RSA comprises radicle and crown roots, each of which can be basically represented by a single curve with lateral root branches or approximated using a polyline. Moreover, RSA vectorization (polyline conversion) is useful for RSA phenotyping. However, a robust software that can enable RSA vectorization while using noisy three-dimensional (3D) volumes is unavailable. We developed RSAtrace3D, which is a robust 3D RSA vectorization software for monocot RSA phenotyping. It manages the single root (radicle or crown root) as a polyline (a vector), and the set of the polylines represents the entire RSA. RSAtrace3D vectorizes root segments between the two ends of a single root. By utilizing several base points on the root, RSAtrace3D suits noisy images if it is difficult to vectorize it using only two end nodes of the root. Additionally, by employing a simple tracking algorithm that uses the center of gravity (COG) of the root voxels to determine the tracking direction, RSAtrace3D efficiently vectorizes the roots. Thus, RSAtrace3D represents the single root shape more precisely than straight lines or spline curves. As a case study, rice (Oryza sativa) RSA was vectorized from X-ray computed tomography (CT) images, and RSA traits were calculated. In addition, varietal differences in RSA traits were observed. The vector data were 32,000 times more compact than raw X-ray CT images. Therefore, this makes it easier to share data and perform re-analyses. For example, using data from previously conducted studies. For monocot plants, the vectorization and phenotyping algorithm are extendable and suitable for numerous applications. RSAtrace3D is an RSA vectorization software for 3D RSA phenotyping for monocots. Owing to the high expandability of the RSA vectorization and phenotyping algorithm, RSAtrace3D can be applied not only to rice in X-ray CT images but also to other monocots in various 3D images. Since this software is written in Python language, it can be easily modified and will be extensively applied by researchers in this field.
机译:土壤中的根部分布是包括根系结构(RSA)的元素之一。在单焦点中,RSA包括胚胎和冠状根,每个胚胎和冠状根部可以基本上由单个曲线与横向根部分支的曲线表示或使用折线近似。此外,RSA矢量化(折线转化)可用于RSA表型。但是,可以在使用噪声三维(3D)卷的同时启用RSA向量化的强大软件不可用。我们开发了RSATRACE3D,这是一个强大的3D RSA矢量化软件,用于单码RSA表型。它管理单根(胚根或冠根)作为折线(载体),并且该组折线表示整个RSA。 RSATRACE3D将单根两端之间的根段加为。通过利用根目录上的几个基点,RSATRACE3D如果难以使用根目录的两个终端节点难以向其维护噪声图像。另外,通过采用使用根体素的重心(COG)的简单跟踪算法来确定跟踪方向,RSATRACE3D有效地将根系变化。因此,RSATRACE3D比直线或样条曲线更精确地表示单根形状。作为一个案例研究,稻米(Oryza Sativa)RSA从X射线计算机断层扫描(CT)图像中的矢量化,计算了RSA特征。此外,观察到RSA特征的变异差异。矢量数据比原始X射线CT图像更紧凑32,000倍。因此,这使得更容易共享数据并执行重新分析。例如,使用先前进行的研究的数据。对于单码植物,矢量化和表型算法可扩展,适用于许多应用。 RSATRACE3D是一个RSA矢量化软件,用于3D RSA表型为单像。由于RSA矢量化和表型算法的高扩张性,RSATRACE3D不仅可以应用于X射线CT图像中的米饭,而且可以应用于各种3D图像中的其他单像。由于该软件以Python语言编写,因此可以轻松修改,并且将通过该字段中的研究人员进行广泛应用。

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