The hydraulic properties of soil at root-soil interface

被引:33
|
作者
Whalley, WR
Leeds-Harrison, PB
Leech, PK
Riseley, B
Bird, NRA
机构
[1] Silsoe Res Inst, Silsoe MK45 4HS, Beds, England
[2] Cranfield Univ, Natl Soil Resources Inst, Silsoe MK45 4HS, Beds, England
关键词
mini-infiltrometer; hydraulic conductivity; root growth; root mucilage;
D O I
10.1097/01.ss.0000117790.98510.e6
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Root penetration modifies the soil in the rhizosphere, which affects the transport of water. To study this phenomenon, we developed a soil microcosm for growing roots that allowed our infiltration measurements easy access to the soil. The infiltration of water through small circular areas into the rhizosphere, where roots, had penetrated, and into bulk soil, was measured at negative pressures of -1, -2, and -3 hPa. The infiltration data were used to obtain sorptivity values and an estimate of the hydraulic conductivity of saturated soil. At a given negative pressure, the infiltration of water was less through soil that had been deformed by root growth than through bulk soil. To explain these differences we considered how changes in soil density and the effect of root mucilage might influence infiltration into the soil. Our data suggested that it is the increase in density of the rhizosphere soil that is responsible for the change in its hydraulic properties. In other works, root mucilage has been shown to make the soil water-repellent, but we were unable to confirm that finding in this work. The effect of mucilage on soil may depend on the organic matter content of the soil. Further research in this area is needed.
引用
收藏
页码:90 / 99
页数:10
相关论文
共 50 条
  • [41] On quantifying hydraulic conductance at the soil-root interface
    Li, Yan
    Pan, Li-Ping
    Xu, Gui-Qing
    [J]. HYDROLOGICAL PROCESSES, 2013, 27 (14) : 2098 - 2102
  • [42] Root size effects on transverse root-soil interactions
    Zhang, X.
    Knappett, J. A.
    Ciantia, M. O.
    Leung, A. K.
    Wang, H.
    Liang, T.
    [J]. COMPUTERS AND GEOTECHNICS, 2024, 165
  • [43] STATUS OF PHOSPHATASES IN ROOT-SOIL INTERFACE OF LEGUMINOUS AND NON-LEGUMINOUS CROPS
    TARAFDAR, JC
    CHHONKAR, PK
    [J]. ZEITSCHRIFT FUR PFLANZENERNAHRUNG UND BODENKUNDE, 1978, 141 (03): : 347 - 351
  • [44] ULTRASTRUCTURE OF THE ROOT-SOIL INTERFACE - FOSTER,RC, ROVIRA,AD, COCK,TW
    BERRY, AM
    [J]. QUARTERLY REVIEW OF BIOLOGY, 1984, 59 (03): : 330 - 331
  • [45] Anchorage and stability of tree root-soil plates
    Tsen-Tieng, Daryl Lee
    Rahardjo, Harianto
    Choon, Leong Eng
    King, Fong Yok
    [J]. ENVIRONMENTAL GEOTECHNICS, 2020, 7 (05) : 330 - 337
  • [46] Laboratory assessment of tensile properties of root-soil composite of Amorpha fruticose
    Gaoliang Tao
    Chuanhui Yang
    Qingsheng Chen
    Sanjay Nimbalkar
    Henglin Xiao
    Qing Wang
    [J]. Journal of Mountain Science, 2025, 22 (3) : 1062 - 1074
  • [47] Root effects on soil water and hydraulic properties
    Gerke, Horst H.
    Kuchenbuch, Rolf O.
    [J]. BIOLOGIA, 2007, 62 (05) : 557 - 561
  • [48] Root effects on soil water and hydraulic properties
    Horst H. Gerke
    Rolf O. Kuchenbuch
    [J]. Biologia, 2007, 62 : 557 - 561
  • [49] Experimental Study on Mechanical Properties of Root-Soil Composite Reinforced by MICP
    Zheng, Xuegui
    Lu, Xinyu
    Zhou, Min
    Huang, Wei
    Zhong, Zhitao
    Wu, Xuheng
    Zhao, Baoyun
    [J]. MATERIALS, 2022, 15 (10)
  • [50] Scaling of Physical Constraints at the Root-Soil Interface to Macroscopic Patterns of Nutrient Retention in Ecosystems
    Gerber, Stefan
    Brookshire, E. N. Jack
    [J]. AMERICAN NATURALIST, 2014, 183 (03): : 418 - 430