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根土摩擦力:定量分析为根端特性操控可产生显著效益提供了证据。

Root-soil friction: quantification provides evidence for measurable benefits for manipulation of root-tip traits.

机构信息

The James Hutton Institute, Invergowrie, Dundee, DD2 5DA, UK.

出版信息

Plant Cell Environ. 2013 Jun;36(6):1085-92. doi: 10.1111/pce.12037. Epub 2012 Dec 10.

Abstract

To penetrate soil, a root requires pressure both to expand the cavity it is to occupy, σn , and to overcome root-soil friction, σf . Difficulties in estimating these two pressures independently have limited our ability to estimate the coefficient of soil-root friction, μsr . We used a rotated penetrometer probe, of similar dimensions to a root, and for the first time entering the soil at a similar rate to a root tip, to estimate σn . Separately we measured root penetration resistance (PR) Qr . Root PR was between two to four times σn . We estimated that the coefficient of root-soil friction (μsr ) was 0.21-0.26, based on the geometry of the root tip. This is slightly larger than the 0.05-0.15 characteristic of boundary lubricants. Scanning electron microscopy showed that turgid border cells lined the root channel, supporting our hypothesis that the lubricant consisted of mucilage sandwiched between border cells and the surface of the root cap and epidermis. This cell-cell lubrication greatly decreased the friction that would otherwise be experienced had the surface of the root proper slid directly past unlubricated soil particles. Because root-soil friction can be a substantial component of root PR, successful manipulation of friction represents a promising opportunity for improving plant performance.

摘要

为了穿透土壤,根需要压力来扩张它要占据的腔,σn,并且克服根土摩擦力,σf。独立估计这两个压力的困难限制了我们估计土壤-根摩擦系数,μsr 的能力。我们使用类似于根的旋转贯入仪探头,以类似于根尖的速度首次进入土壤,以估计σn。我们分别测量了根穿透阻力(PR)Qr。根 PR 是σn 的两到四倍。根据根尖的几何形状,我们估计根土摩擦系数(μsr)为 0.21-0.26,略大于边界润滑剂的 0.05-0.15 特征。扫描电子显微镜显示,膨胀的边缘细胞排列在根通道中,支持我们的假设,即润滑剂由夹在边缘细胞和根帽和表皮表面之间的粘液组成。这种细胞-细胞润滑大大减少了如果没有适当的根表面直接滑过未润滑的土壤颗粒,否则会经历的摩擦。因为根土摩擦力可以是根 PR 的一个重要组成部分,成功地控制摩擦力为改善植物性能提供了一个有前途的机会。

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