Sidhu Jagdeep Singh, Ajmera Ishan, Arya Sankalp, Lynch Jonathan P
Department of Plant Science, The Pennsylvania State University, University Park, State College, Pennsylvania, USA.
Plant Cell Environ. 2023 May;46(5):1671-1690. doi: 10.1111/pce.14552. Epub 2023 Feb 9.
Root anatomy is an important determinant of root metabolic costs, soil exploration, and soil resource capture. Root anatomy varies substantially within and among plant species. RootSlice is a multicellular functional-structural model of root anatomy developed to facilitate the analysis and understanding of root anatomical phenotypes. RootSlice can capture phenotypically accurate root anatomy in three dimensions of different root classes and developmental zones, of both monocotyledonous and dicotyledonous species. Several case studies are presented illustrating the capabilities of the model. For maize nodal roots, the model illustrated the role of vacuole expansion in cell elongation; and confirmed the individual and synergistic role of increasing root cortical aerenchyma and reducing the number of cortical cell files in reducing root metabolic costs. Integration of RootSlice for different root zones as the temporal properties of the nodal roots in the whole-plant and soil model OpenSimRoot/maize enabled the multiscale evaluation of root anatomical phenotypes, highlighting the role of aerenchyma formation in enhancing the utility of cortical cell files for improving plant performance over varying soil nitrogen supply. Such integrative in silico approaches present avenues for exploring the fitness landscape of root anatomical phenotypes.
根系解剖结构是根系代谢成本、土壤探索和土壤资源获取的重要决定因素。植物物种内部和物种之间的根系解剖结构差异很大。RootSlice是一种根系解剖结构的多细胞功能-结构模型,旨在促进对根系解剖表型的分析和理解。RootSlice可以在单子叶和双子叶物种不同根系类型和发育区的三个维度上捕捉表型准确的根系解剖结构。本文展示了几个案例研究来说明该模型的能力。对于玉米节根,该模型阐明了液泡扩张在细胞伸长中的作用;并证实了增加根皮层通气组织和减少皮层细胞层数在降低根系代谢成本方面的个体作用和协同作用。将RootSlice整合到不同根区,作为全株和土壤模型OpenSimRoot/maize中节根的时间特性,能够对根系解剖表型进行多尺度评估,突出了通气组织形成在提高皮层细胞层效用方面的作用,从而在不同土壤氮供应条件下改善植物性能。这种整合的计算机模拟方法为探索根系解剖表型的适应度景观提供了途径。