3D phytomer-based geometric modelling method for plants—the case of maize

Author:

Wen Weiliang12ORCID,Wang Yongjian2,Wu Sheng12,Liu Kai2,Gu Shenghao12,Guo Xinyu12ORCID

Affiliation:

1. Beijing Research Center for Information Technology in Agriculture, Shuguang Huayuan Middle Road, Haidian District, Beijing 100097, China

2. Beijing Key Lab of Digital Plant, National Engineering Research Center for Information Technology in Agriculture, Shuguang Huayuan Middle Road, Haidian District, Beijing 100097, China

Abstract

Abstract Geometric plant modelling is crucial in in silico plants. Existing geometric modelling methods have focused on the topological structure and basic organ profiles, simplifying the morphological features. However, the models cannot effectively differentiate cultivars, limiting FSPM application in crop breeding and management. This study proposes a 3D phytomer-based geometric modelling method with maize (Zea Mays) as the representative plant. Specifically, conversion methods between skeleton and mesh models of 3D phytomer are specified. This study describes the geometric modelling of maize shoots and populations by assembling 3D phytomers. Results show that the method can quickly and efficiently construct 3D models of maize plants and populations, with the ability to show morphological, structural and functional differences among four representative cultivars. The method takes into account both the geometric modelling efficiency and 3D detail features to achieve automatic operation of geometric modelling through the standardized description of 3D phytomers. Therefore, this study provides a theoretical and technical basis for the research and application of in silico plants.

Funder

National Natural Science Foundation of China

Science and Technology Innovation Special Construction Funded Program

Reform and Development Project

China Agriculture Research System

Publisher

Oxford University Press (OUP)

Subject

Plant Science

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