Department of Plant and Soil Science, Fiber and Biopolymer Research Institute (FBRI), Texas Tech University, Lubbock, Texas, United States of America.
Department of Plant Science and Plant Pathology, Montana State University, Bozeman, Montana, United States of America.
PLoS One. 2024 Mar 21;19(3):e0300667. doi: 10.1371/journal.pone.0300667. eCollection 2024.
Canopeo app was developed as a simple, accurate, rapid, and free tool to analyze ground cover fraction (GCF) from red-green-blue (RGB) images and videos captured in the field. With increasing interest in tools for plant phenotyping in controlled environments, the usefulness of Canopeo to identify differences in growth among Arabidopsis thaliana mutants in a controlled environment were explored. A simple imaging system was used to compare Arabidopsis mutants based on the FLAVIN-BINDING, KELCH REPEAT, F-BOX-1 (FKF1) mutation, which has been identified with increased biomass accumulation. Two FKF1 lines such as null expression (fkf1-t) and overexpression (FKF1-OE) lines were used along with wild type (Col-0). Canopeo was used to phenotype plants, based on biomass estimations. Under long-day photoperiod, fkf1-t had increased cellulose biosynthesis, and therefore biomass. Resource partitioning favored seedling vigor and delayed onset of senescence. In contrast, FKF1-OE illustrated a determinative growth habit where plant resources are primarily allocated for seed production. This study demonstrates the use of Canopeo for model plants and highlights its potential for phenotyping broadleaved crops in controlled environments. The value of adapting Canopeo for lab use is those with limited experience and resources have access to phenotyping methodology that is simple, accessible, accurate, and cost-efficient in a controlled environment setting.
Canopeo 应用程序被开发为一种简单、准确、快速和免费的工具,用于分析现场拍摄的红-绿-蓝 (RGB) 图像和视频的地面覆盖分数 (GCF)。随着人们对控制环境中植物表型工具的兴趣日益增加,探索了 Canopeo 在控制环境中识别拟南芥突变体生长差异的有用性。使用简单的成像系统比较了拟南芥突变体,基于 FKF1 突变的类黄酮结合、凯氏重复、F-BOX-1 (FKF1) 突变,该突变已被确定与生物量积累增加有关。使用两个 FKF1 系,如无表达 (fkf1-t) 和过表达 (FKF1-OE) 系,以及野生型 (Col-0)。Canopeo 用于基于生物量估计的表型植物。在长日照光周期下,fkf1-t 增加了纤维素生物合成,从而增加了生物量。资源分配有利于幼苗活力和延缓衰老的发生。相比之下,FKF1-OE 表现出决定生长习性,植物资源主要分配用于种子生产。本研究展示了 Canopeo 在模式植物中的应用,并强调了它在控制环境中对阔叶作物表型的潜力。在实验室中使用 Canopeo 的价值在于,那些经验和资源有限的人可以使用简单、易于访问、准确且在控制环境设置中具有成本效益的表型方法。