The Thermodynamic Flow-Force Interpretation Of Root Nutrient Uptake Kinetics: A Powerful Formalism For Agronomic And Phytoplanktonic Models

FRONTIERS IN PHYSIOLOGY(2016)

引用 5|浏览1
暂无评分
摘要
The ion influx isotherms obtained by measuring unidirectional influx across root membranes with radioactive or stable tracers are mostly interpreted by enzyme-substrate-like modeling. However, recent analyses from ion transporter mutants clearly demonstrate the inadequacy of the conventional interpretation of ion isotherms. Many genetically distinct carriers are involved in the root catalytic function. Parameters Vmax and Km deduced from this interpretation cannot therefore be regarded as microscopic parameters of a single transporter, but are instead macroscopic parameters (V-m(app) and K-m(app), apparent maximum velocity and affinity constant) that depend on weighted activities of multiple transporters along the root. The flow -force interpretation based on the thermodynamic principle of irreversible processes is an alternative macroscopic modeling approach for ion influx isotherms in which macroscopic parameters L-j (overall conductance of the root system for the substrate j) and pi(j) (thermodynamic parameter when J(j) = 0) have a straightforward meaning with respect to the biological sample studied. They characterize the efficiency of the entire root catalytic structure without deducing molecular characteristics. Here we present the basic principles of this theory and how its use can be tested and improved by changing root pre- and post-wash procedures before influx measurements in order to come as close as possible to equilibrium conditions. In addition, the constant values of Vm and Km in the Michaelis-Menten (MM) formalism of enzyme-substrate interpretation do not reflect variations in response to temperature, nutrient status or nutrient regimes. The linear formalism of the flow -force approach, which integrates temperature effect on nutrient uptake, could usefully replace MM formalism in the 1-3-dimension models of plants and phytoplankton. This formalism offers a simplification of parametrization to help find more realistic analytical expressions and numerical solution for root nutrient uptake.
更多
查看译文
关键词
ion transport modeling,influx,efflux,enzyme-substrate modeling,flow-force modeling,nitrate,potassium,phytoplankton
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要