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An Automated Method for High-Throughput Screening of Arabidopsis Rosette Growth in Multi-Well Plates and Its Validation in Stress Conditions

机译:多孔板中拟南芥莲座丛生长高通量筛选的自动化方法及其在胁迫条件下的验证

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摘要

High-throughput plant phenotyping platforms provide new possibilities for automated, fast scoring of several plant growth and development traits, followed over time using non-invasive sensors. Using Arabidopsis as a model offers important advantages for high-throughput screening with the opportunity to extrapolate the results obtained to other crops of commercial interest. In this study we describe the development of a highly reproducible high-throughput Arabidopsis in vitro bioassay established using our OloPhen platform, suitable for analysis of rosette growth in multi-well plates. This method was successfully validated on example of multivariate analysis of Arabidopsis rosette growth in different salt concentrations and the interaction with varying nutritional composition of the growth medium. Several traits such as changes in the rosette area, relative growth rate, survival rate and homogeneity of the population are scored using fully automated RGB imaging and subsequent image analysis. The assay can be used for fast screening of the biological activity of chemical libraries, phenotypes of transgenic or recombinant inbred lines, or to search for potential quantitative trait loci. It is especially valuable for selecting genotypes or growth conditions that improve plant stress tolerance.
机译:高通量植物表型平台为自动,快速地对几种植物生长和发育性状进行评分提供了新的可能性,随后随着时间的推移,使用无创传感器。使用拟南芥作为模型,为高通量筛选提供了重要的优势,并有机会将获得的结果外推到其他具有商业意义的农作物。在这项研究中,我们描述了使用我们的OloPhen平台建立的高度可重复的高通量拟南芥体外生物测定法的发展,该平台适用于分析多孔板中的玫瑰花结。该方法已在不同盐浓度下拟南芥莲座丛生长的多变量分析以及与生长培养基营养成分的相互作用的多变量分析实例中得到了成功验证。使用全自动RGB成像和随后的图像分析对玫瑰花环面积变化,相对生长速率,存活率和种群同质性等几个特征进行评分。该测定可用于快速筛选化学文库的生物学活性,转基因或重组近交系的表型,或用于搜索潜在的定量性状基因座。这对于选择能提高植物抗逆性的基因型或生长条件特别有价值。

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