Engineering Sciences, Faculty of Engineering and Environment, University of Southampton, University Road, Southampton, SO17 1BJ, UK.
Crop Systems Engineering Group, Institute for Life Sciences, University of Southampton, Southampton, SO17 1BJ, UK.
New Phytol. 2013 Jun;198(4):1023-1029. doi: 10.1111/nph.12294. Epub 2013 Apr 22.
· Root hairs are known to be highly important for uptake of sparingly soluble nutrients, particularly in nutrient deficient soils. Development of increasingly sophisticated mathematical models has allowed uptake characteristics to be quantified. However, modelling has been constrained by a lack of methods for imaging live root hairs growing in real soils. · We developed a plant growth protocol and used Synchrotron Radiation X-ray Tomographic Microscopy (SRXTM) to uncover the three-dimensional (3D) interactions of root hairs in real soil. We developed a model of phosphate uptake by root hairs based directly on the geometry of hairs and associated soil pores as revealed by imaging. · Previous modelling studies found that root hairs dominate phosphate uptake. By contrast, our study suggests that hairs and roots contribute equally. We show that uptake by hairs is more localized than by roots and strongly dependent on root hair and aggregate orientation. · The ability to image hair-soil interactions enables a step change in modelling approaches, allowing a more realistic treatment of processes at the scale of individual root hairs in soil pores.
· 根毛对于吸收难溶性养分非常重要,特别是在养分缺乏的土壤中。日益复杂的数学模型的发展使得吸收特性能够被量化。然而,由于缺乏对在真实土壤中生长的活体根毛进行成像的方法,建模受到了限制。· 我们开发了一种植物生长方案,并使用同步辐射 X 射线断层扫描显微镜(SRXTM)来揭示真实土壤中根毛的三维(3D)相互作用。我们基于成像揭示的根毛和相关土壤孔隙的几何形状,直接建立了根毛吸收磷酸盐的模型。· 以前的建模研究发现,根毛主导了磷酸盐的吸收。相比之下,我们的研究表明,根毛和根的贡献是相等的。我们表明,根毛的吸收比根的吸收更具局部性,并且强烈依赖于根毛和团聚体的方向。· 能够对毛-土相互作用进行成像,使得建模方法发生了重大变化,能够更真实地处理土壤孔隙中单个根毛尺度上的过程。