Author:
Sunvittayakul Pongsakorn,Kittipadakul Piya,Wonnapinij Passorn,Chanchay Pornchanan,Wannitikul Pitchaporn,Sathitnaitham Sukhita,Phanthanong Phongnapha,Changwitchukarn Kanokphu,Suttangkakul Anongpat,Ceballos Hernan,Vuttipongchaikij Supachai
Abstract
AbstractPhenotypic analysis of cassava root crowns (CRCs) so far has been limited to visual inspection and very few measurements due to its laborious process in the field. Here, we developed a platform for acquiring 3D CRC models using close-range photogrammetry for phenotypic analysis. The state of the art is a low cost and easy to set up 3D acquisition requiring only a background sheet, a reference object and a camera, compatible with field experiments in remote areas. We tested different software with CRC samples, and Agisoft and Blender were the most suitable software for generating high-quality 3D models and data analysis, respectively. We optimized the workflow by testing different numbers of images for 3D reconstruction and found that a minimum of 25 images per CRC can provide high quality 3D models. Up to ten traits, including 3D crown volumes, 3D crown surface, root density, surface-to-volume ratio, root numbers, root angle, crown diameter, cylinder soil volume, CRC compactness and root length can be extracted providing novel parameters for studying cassava storage roots. We applied this platform to partial-inbred cassava populations and demonstrated that our platform provides reliable 3D CRC modelling for phenotypic analysis, analysis of genetic variances and supporting breeding selection.
Funder
National Science and Technology Development Agency
National Research Council of Thailand
Kasetsart University Research and Development Institute
The Office of the Ministry of Higher Education, Science, Research and Innovation and the Thailand Science Research and Innovation through the Kasetsart University Reinventing University Program 2021
The Royal Golden Jubilee (RGJ) Ph.D. Programme (Thailand), the Thailand Research Fund (TRF) and Department of Agriculture, Ministry of Agriculture and Cooperative
Publisher
Springer Science and Business Media LLC
Cited by
11 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献