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A Low-Cost Method for Phenotyping Wilting and Recovery of Wheat Leaves under Heat Stress Using Semi-Automated Image Analysis

机译:半自动图像分析的低成本热胁迫小麦叶片表型萎Wil和恢复方法

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摘要

Leaf wilting is the most common symptom of dehydration stress. Methods to analyze this phenomenon are particularly relevant to evaluate crop agronomic performance, to genetically dissect out the wilting process, and for functional analysis of genetically modified plants. In this study, a low-cost, semi-automated method to quantify leaf folding of wilting plants is described that can replace visual analysis. Standardized heat-stress conditions were applied with a thermostatic drier, on plantlets or excised leaves from three wheat genotypes (Trinakria, Cappelli, and a Water-mutant of Trinakria). The best time–temperature binomial to record both the leaf wilting and recovery phases was identified using a free time-lapse application, by a smartphone camera. The quantitative description of the wilting phenomenon was obtained through the Kinovea software, which automatically tracked the leaf angle changes over time, computed various kinematic data (angular velocity, centripetal acceleration, total degrees of displacement) and constructed the graphs. The possibility of applying standardized heat-stress conditions and quantitatively describe the leaf folding kinematics means that this instrumentation and its use represents a very low cost tool for objective phenotyping of the degree of the heat-stress tolerance of wheat and of morphologically similar species.
机译:枯萎是脱水胁迫最常见的症状。分析此现象的方法与评估农艺性能,从基因上分析萎process过程以及对转基因植物进行功能分析特别相关。在这项研究中,描述了一种低成本,半自动化的方法来量化枯萎植物的叶片折叠,该方法可以替代视觉分析。使用恒温干燥器对三种小麦基因型(特里纳克里亚,卡佩利和特里纳克里亚的水突变体)的小苗或切下的叶子施加标准化的热应激条件。使用免费的延时应用程序,通过智能手机摄像头,可以确定记录叶片枯萎和恢复阶段的最佳时间-温度二项式。通过Kinovea软件获得了关于萎phenomenon现象的定量描述,该软件可自动跟踪叶片随时间的角度变化,计算各种运动学数据(角速度,向心加速度,总位移度)并构建图表。应用标准化热应力条件并定量描述叶片折叠运动学的可能性意味着,该仪器及其使用代表了一种非常廉价的工具,用于客观鉴定小麦和形态相似物种的热应力耐受程度。

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