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An Automated Image Analysis Pipeline Enables Genetic Studies of Shoot and Root Morphology in Carrot (Daucus carota L.)

机译:自动化的图像分析管道可以对胡萝卜(Daucus carota L.)的芽和根形态进行遗传研究

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摘要

Carrot is a globally important crop, yet efficient and accurate methods for quantifying its most important agronomic traits are lacking. To address this problem, we developed an automated image analysis platform that extracts components of size and shape for carrot shoots and roots, which are necessary to advance carrot breeding and genetics. This method reliably measured variation in shoot size and shape, petiole number, petiole length, and petiole width as evidenced by high correlations with hundreds of manual measurements. Similarly, root length and biomass were accurately measured from the images. This platform also quantified shoot and root shapes in terms of principal components, which do not have traditional, manually measurable equivalents. We applied the pipeline in a study of a six-parent diallel population and an F2 mapping population consisting of 316 individuals. We found high levels of repeatability within a growing environment, with low to moderate repeatability across environments. We also observed co-localization of quantitative trait loci for shoot and root characteristics on chromosomes 1, 2, and 7, suggesting these traits are controlled by genetic linkage and/or pleiotropy. By increasing the number of individuals and phenotypes that can be reliably quantified, the development of a rapid, automated image analysis pipeline to measure carrot shoot and root morphology will expand the scope and scale of breeding and genetic studies.
机译:胡萝卜是全球重要的农作物,但仍缺乏有效,准确的方法来量化其最重要的农艺性状。为了解决这个问题,我们开发了一个自动图像分析平台,该平台可以提取胡萝卜芽和根的大小和形状的成分,这对于促进胡萝卜育种和遗传学是必不可少的。这种方法可以可靠地测量枝条大小和形状,叶柄数,叶柄长度和叶柄宽度的变化,这与数百次手动测量的高度相关性证明了这一点。同样,从图像中准确测量了根长和生物量。该平台还根据主要成分对芽和根的形状进行了定量,而主要成分没有传统的,可手动测量的等效形式。我们在研究六亲二代人口和由316个个体组成的F2作图人口的研究中应用了管道。我们发现在不断增长的环境中可重复性高,而在整个环境中可重复性低至中等。我们还观察到了染色体1、2和7上芽和根特征的数量性状基因座的共定位,表明这些性状受遗传连锁和/或多效性控制。通过增加可以可靠地量化的个体和表型的数量,快速,自动化的图像分析管道来测量胡萝卜芽和根系形态的发展将扩大育种和遗传研究的范围和规模。

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