Postma Johannes A, Kuppe Christian, Owen Markus R, Mellor Nathan, Griffiths Marcus, Bennett Malcolm J, Lynch Jonathan P, Watt Michelle
Plant Sciences, Institute of Bio and Geosciences 2, Forschungszentrum Jülich, Wilhelm-Johnen Straße, 52425, Jülich, Germany.
Centre for Mathematical Medicine and Biology, School of Mathematical Sciences, University of Nottingham, Nottingham, NG7 2RD, UK.
New Phytol. 2017 Aug;215(3):1274-1286. doi: 10.1111/nph.14641. Epub 2017 Jun 27.
OpenSimRoot is an open-source, functional-structural plant model and mathematical description of root growth and function. We describe OpenSimRoot and its functionality to broaden the benefits of root modeling to the plant science community. OpenSimRoot is an extended version of SimRoot, established to simulate root system architecture, nutrient acquisition and plant growth. OpenSimRoot has a plugin, modular infrastructure, coupling single plant and crop stands to soil nutrient and water transport models. It estimates the value of root traits for water and nutrient acquisition in environments and plant species. The flexible OpenSimRoot design allows upscaling from root anatomy to plant community to estimate the following: resource costs of developmental and anatomical traits; trait synergisms; and (interspecies) root competition. OpenSimRoot can model three-dimensional images from magnetic resonance imaging (MRI) and X-ray computed tomography (CT) of roots in soil. New modules include: soil water-dependent water uptake and xylem flow; tiller formation; evapotranspiration; simultaneous simulation of mobile solutes; mesh refinement; and root growth plasticity. OpenSimRoot integrates plant phenotypic data with environmental metadata to support experimental designs and to gain a mechanistic understanding at system scales.
OpenSimRoot是一个开源的功能-结构植物模型,是对根系生长和功能的数学描述。我们介绍OpenSimRoot及其功能,以扩大根系建模对植物科学界的益处。OpenSimRoot是SimRoot的扩展版本,用于模拟根系结构、养分获取和植物生长。OpenSimRoot具有插件式的模块化基础设施,将单株植物和作物群体与土壤养分和水分传输模型相耦合。它能估计在不同环境和植物物种中根系获取水分和养分的性状价值。灵活的OpenSimRoot设计允许从根解剖结构扩展到植物群落,以估计以下内容:发育和解剖性状的资源成本;性状协同作用;以及(种间)根系竞争。OpenSimRoot可以对土壤中根系的磁共振成像(MRI)和X射线计算机断层扫描(CT)的三维图像进行建模。新模块包括:依赖土壤水分的水分吸收和木质部流动;分蘖形成;蒸散;移动溶质的同步模拟;网格细化;以及根系生长可塑性。OpenSimRoot将植物表型数据与环境元数据相结合,以支持实验设计并在系统尺度上获得机理理解。