An analytical complete model of root pressure generation: Theoretical bases for studying hydraulics of bamboo

水力学 竹子 机械 工程类 材料科学 环境科学 物理 航空航天工程 复合材料
作者
Dongmei Yang,Wei Zhou,Xiaolin Wang,Zhao Mei,Yong‐Jiang Zhang,Melvin T. Tyree,Guoquan Peng
出处
期刊:Plant Cell and Environment [Wiley]
卷期号:47 (1): 59-71 被引量:4
标识
DOI:10.1111/pce.14730
摘要

To better understand the dynamics and functional roles of root pressure, we represent a novel and the first complete analytical model for root pressure, which can be applied to complex roots/shoots. The osmotic volume of a single root is equal to that of the vessel lumen in fine roots and adjacent apoplastic spaces. Water uptake occurs via passive osmosis and active solute uptake ( Js* , osmol s-1 ), resulting in the osmolyte concentration Cr (mol·kg-1 of water) at a fixed osmotic volume. Solute loss occurs via two passive processes: radial diffusion of solute Km (Cr - Csoil ) from fine roots to soil, where Km is the diffusional constant and Csoil is the soil-solute concentration, and the mass flow of solute and water into the plant from the fine roots. The proposed model predicts the quadratic function of root pressure (Pr ), Pr2+bPr+c=0 , where b and c are the functions of plant hydraulic resistance, soil water potential, solute flux and gravitational potential. The model demonstrates the root pressure-mediated distribution of water through the hydraulic architecture of a 6.8-m-tall bamboo shoot. This model provides a theoretical basis to test the functional roles of root pressure in shaping the hydraulic architecture and refilling potential xylem embolisms.
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