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三江并流区水位波动带适生植物的根系抗拔阻力及表面微观结构特征

Root pull-out resistance and surface microstructural characteristics of adapted plants in the water-level fluctuation zone of the three parallel rivers area.

作者信息

Wang Zhong-Liang, Luo Peng-Biao, Yang Yuan-Jun, Duan Ji-Qi, Duan Qing-Song

机构信息

College of Resources and Environment, Yunnan Agricultural University, Kunming, Yunnan, China.

College of Water Resource, Yunnan Agricultural University, Kunming, Yunnan, China.

出版信息

PLoS One. 2025 Jun 2;20(6):e0321597. doi: 10.1371/journal.pone.0321597. eCollection 2025.

Abstract

Root pull-out resistance is an important index to measure the soil-fixing ability of roots. The study aims to investigate the root pull-out resistance and root surface microstructural characteristics of plants adapted to the Water-Level Fluctuation Zone (WLFZ) and provide a reference for the study of vegetation soil reinforcement capacity in the WLFZ of the Three Parallel Rivers area. The study subjects are the four-year-old Arundo donax 'Versicolor', Cyperus involucratus, and Acorus calamus. The study employs the single root pull-out resistance experiments to determine their resistance. Additionally, SEM and paraffin sectioning methods were utilized to measure the microstructure of the root surface and to explore the differences in microstructure and their impact on the friction between the root and soil. The findings revealed (1) The failure modes of the single root pull-out experiments included both pull-out and breakage, with 70.83%, 81.48%, and 57.69% of the roots being broken for A. donax 'Versicolor', C. involucratus, and A. calamus, respectively. (2)There were significant differences in the average maximum pull-out resistance and average frictional strength among the three plants (P < 0.05), with the average maximum pull-out resistance being A. donax 'Versicolor' (27.88 N) > C. involucratus (20.53 N) > A. calamus (13.75 N), and the average frictional strength was A. donax 'Versicolor' (43.48 Pa) > C. involucratus (31.77 Pa) > A. calamus (19.05 Pa). The root surface roughness also showed significant differences among the three plants (P < 0.05), with the surface roughness of A. donax 'Versicolor' (20.13%) > C. involucratus (16.12%) > A. calamus (9.23%). (3) The root system of A. donax 'Versicolor' was relatively rough, with dense depressions and protrusions. In contrast, the root system of A. calamus was relatively smooth with no significant depressions or protrusions, and C. involucratus was intermediate between the two. The results suggested that the maximum pull-out force of single roots for the three plants followed the order of A. donax 'Versicolor' > C. involucratus> A. calamus. Moreover, the microstructure of the root surface had a significant impact on the maximum pull-out force of the roots, The rougher the root surface. The greater the single root drawing force.

摘要

根系抗拔阻力是衡量根系固土能力的重要指标。本研究旨在探究适应水位涨落带(WLFZ)植物的根系抗拔阻力及根系表面微观结构特征,为三江并流区水位涨落带植被土壤加固能力研究提供参考。研究对象为四年生花叶芦竹、风车草和菖蒲。本研究采用单根抗拔阻力试验来测定它们的抗拔力。此外,利用扫描电子显微镜(SEM)和石蜡切片法测量根系表面微观结构,探究微观结构差异及其对根系与土壤间摩擦力的影响。研究结果表明:(1)单根抗拔试验的破坏模式包括拔出和断裂,其中花叶芦竹、风车草和菖蒲根系的断裂比例分别为70.83%、81.48%和57.69%。(2)三种植物的平均最大抗拔阻力和平均摩擦强度存在显著差异(P<0.05),平均最大抗拔阻力为花叶芦竹(27.88 N)>风车草(20.53 N)>菖蒲(13.75 N),平均摩擦强度为花叶芦竹(43.48 Pa)>风车草(31.77 Pa)>菖蒲(19.05 Pa)。三种植物根系表面粗糙度也存在显著差异(P<0.05),花叶芦竹(20.13%)>风车草(16.12%)>菖蒲(9.23%)。(3)花叶芦竹根系相对粗糙,有密集的凹陷和凸起。相比之下,菖蒲根系相对光滑,无明显凹陷或凸起,风车草介于两者之间。结果表明,三种植物单根的最大拔出力顺序为花叶芦竹>风车草>菖蒲。此外,根系表面微观结构对根系最大拔出力有显著影响,根系表面越粗糙,单根拉力越大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e440/12129189/b73d71c63c0e/pone.0321597.g001.jpg

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