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UAV‐based imaging platform for monitoring maize growth throughout development

Plant direct · 8 Jun 2020 · 10.1002/pld3.230

Abstract

Plant height (PH) data collected at high temporal resolutions can give insight into how genotype and environmental variation influence plant growth. However, in order to increase the temporal resolution of PH data collection, more robust, rapid, and low-cost methods are needed to evaluate field plots than those currently available. Due to their low cost and high functionality, unmanned aerial vehicles (UAVs) provide an efficient means for collecting height at various stages throughout development. We have developed a procedure for utilizing structure from motion algorithms to collect PH from RGB drone imagery and have used this platform to characterize a yield trial consisting of 24 maize hybrids planted in replicate under two dates and three planting densities. PH data was collected using both weekly UAV flights and manual measurements. The comparisons of UAV-based and manually acquired PH measurements revealed sources of error in measuring PH and were used to develop a robust pipeline for generating UAV-based PH estimates. This pipeline was utilized to document differences in the rate of growth between genotypes and planting dates. Our results also demonstrate that growth rates generated by PH measurements collected at multiple timepoints early in development can be useful in improving predictions of PH at the end of the season. This method provides a low cost, high throughput method for evaluating plant growth in response to environmental stimuli on a plot basis that can be implemented at the scale of a breeding program.

Plant phenotyping relevance

UAV画像とSfMによる圃場作物の草丈推定手法を開発し、手測定との比較で検証した研究であり、表現型取得パイプラインが中心です。

abstractWe have developed a procedure for utilizing structure from motion algorithms to collect PH from RGB drone imagery
abstractThe comparisons of UAV-based and manually acquired PH measurements revealed sources of error in measuring PH and were used to develop a robust pipeline for generating UAV-based PH estimates.
abstractThis method provides a low cost, high throughput method for evaluating plant growth in response to environmental stimuli on a plot basis

Code and data availability

The paper's data availability statement explicitly deposits the authors' image analysis and trait extraction scripts in a public GitHub repository, which directly implements the UAV plant-height phenotyping pipeline described in the paper. No phenotype dataset deposit is stated; supporting information files are not URL

Codepublic

The scripts and processes used to perform the image analyses and trait extraction are available at https://github.com/SBTirado/UAV_PH.git .

Open resource ↗SBTirado/UAV_PH · lines:182-204

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