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Tree crown parameters assessment using 3D photo reconstruction as a tool for selection in olive breeding programs

机译:树冠参数使用3D照片重建评估作为橄榄育种计划中选择的工具

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摘要

In olive, both discontinuous canopy (open vase configuration) and continuous canopy (hedgerow) systems are used in commercial planting. Reliable and cost effective plant architecture characterization is necessary to test the suitability of cultivars to specific growing systems, particularly in olive breeding programs where a large number of genotypes must be evaluated. In this work, the performance of a method for the estimation of olive tree height and crow diameter based on low cost unmanned aerialvehicle (UAV) imagery was evaluated. Selections from breeding programs cultivated either on discontinuous or continuous canopy cropping systems were used for developing the models. Averaged data by genotypes showed significant linear fits between reference field measurements and remote sensing estimation of crown parameters with R2 values of 0.89 for height estimation in hedgerow plantations, 0.66 and 0.53 for crown diameter in discontinuous canopy and continuous hedgerows respectively, but only 0.14 between measured and estimated height in discontinuous canopy genotypes. These results indicate that low cost UAV imagery could be used for evaluating olive tree crown parameters (tree height and crown diameter) in olive breeding programs, providing accurate enough results for selection of genotypes.
机译:在橄榄中,在商业种植中使用了不连续的冠层(开放式花瓶配置)和连续冠层(HEDGEROW)系统。可靠和成本效益的工厂架构表征是测试品种对特定生长系统的适用性,特别是在必须评估大量基因型的橄榄育种程序中。在这项工作中,评估了基于低成本无人机(UAV)图像的橄榄树高度和乌鸦直径估计方法的性能。用于在不连续或连续冠层裁剪系统上培养的繁殖计划的选择用于开发模型。通过基因型的平均数据显示出在参考现场测量和官方参数的官方参数之间的遥感估计之间的显着线性拟合,R2值为0.89,用于分别在不连续的冠层和连续的树冠中的冠直径和连续的Hedgerows中的0.66和0.53,但在测量之间仅为0.14和不连续冠层基因型中的估计高度。这些结果表明,低成本的UAV图像可用于评估橄榄育种程序中的橄榄树冠参数(树高和冠直径),为选择基因型提供足够的结果。

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