Montagnoli Antonio, Terzaghi Mattia, Fulgaro Nicoletta, Stoew Borys, Wipenmyr Jan, Ilver Dag, Rusu Cristina, Scippa Gabriella S, Chiatante Donato
Laboratory of Environmental and Applied Botany, Department of Biotechnology and Life Science, University of Insubria Varese, Italy.
Sensor Systems Department, Acreo Swedish ICT Gothenburg, Sweden.
Front Plant Sci. 2016 Oct 28;7:1644. doi: 10.3389/fpls.2016.01644. eCollection 2016.
A plant phenotyping approach was applied to evaluate growth rate of containerized tree seedlings during the precultivation phase following seed germination. A simple and affordable stereo optical system was used to collect stereoscopic red-green-blue (RGB) images of seedlings at regular intervals of time. Comparative analysis of these images by means of a newly developed software enabled us to calculate (a) the increments of seedlings height and (b) the percentage greenness of seedling leaves. Comparison of these parameters with destructive biomass measurements showed that the height traits can be used to estimate seedling growth for needle-leaved plant species whereas the greenness trait can be used for broad-leaved plant species. Despite the need to adjust for plant type, growth stage and light conditions this new, cheap, rapid, and sustainable phenotyping approach can be used to study large-scale phenome variations due to genome variability and interaction with environmental factors.
采用一种植物表型分析方法来评估种子萌发后预培养阶段容器化苗木的生长速率。使用一个简单且经济实惠的立体光学系统,定期采集苗木的立体红-绿-蓝(RGB)图像。通过新开发的软件对这些图像进行对比分析,使我们能够计算:(a)苗木高度的增量;(b)苗木叶片的绿色度百分比。将这些参数与破坏性生物量测量结果进行比较表明,高度性状可用于针叶植物物种的苗木生长估算,而绿色度性状可用于阔叶植物物种。尽管需要针对植物类型、生长阶段和光照条件进行调整,但这种新型、廉价、快速且可持续的表型分析方法可用于研究由于基因组变异性以及与环境因素相互作用而导致的大规模表型组变异。