A quadratic analytical solution of root pressure generation provides insights about bamboo and other species
Yang, D.; Wang, X.; Yin, M.; Zhang, Y.; Peng, G.; Tyree, M. T.
Show abstract
We derived a steady-state model of whole root pressure generation through the combined action of all parallel segments of fine roots. This may be the first complete analytical solution 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 ([Formula], osmol s-1), resulting in the osmolal concentration Cr (mol{middle dot}kg-1 of water) at a fixed osmotic volume. Solute loss occurs via two passive processes: radial diffusion of solute Km (Cr-Csoil), where Km is the diffusional constant and Csoil is the soil-solute concentration) from fine roots to soil and mass flow of solute and water into the whole plant from the end of the fine roots. The proposed model predicts the quadratic function of root pressure [Formula], where b and c are the functions of plant hydraulic resistance, soil water potential, solute flux, and gravitational potential. The present study investigates the theoretical dependencies of Pr on the factors detailed above and demonstrates the root pressure-mediated distribution of water through the hydraulic architecture of a 6.8-m-tall bamboo shoot. One sentence SummaryAn analytical solution for root pressure is derived and illustrated by applying it to the measured hydraulic architecture of a 7-meter bamboo shoot.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Modelling the spatial crosstalk between two biochemical signals explains wood formation dynamics and tree-ring structure 94%
- Turgor pressure affects transverse stiffness and resonant frequencies of buzz-pollinated poricidal anther 93%
- Dissecting the Metabolic Reprogramming of Maize Root under Nitrogen Limiting Stress Condition 93%
Similar papers in this journal
- Simulating rhizodeposition patterns around growing and exuding root systems 95%
- Development and calibration of the FSPM CPlantBox to represent the interactions between water and carbon fluxes in the soil-plant-atmosphere continuum 95%
- Identifying and quantifying the contribution of maize plant traits to nitrogen uptake and use through plant modelling 95%
Similar papers in this journal
Similar papers in this journal
- Development of a model estimating root length density from root impacts on a soil profile in pearl millet (Pennisetum glaucum (L.) R. Br). Application to measure root system response to water stress in field conditions 93%
- Verification of our empirical understanding of the physiology and ecology of two contrasting plantation species using a trait database 93%
- Stem girth changes in response to soil water potential in lowland dipterocarp forest in Borneo: a phenomenological and individualistic time-series analysis 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.