bioRxiv · 10.1101/2021.02.09.430450
A Unit Pipe Pneumatic model to simulate gas kinetics during measurements of embolism in excised angiosperm xylem
Abstract
O_LIThe Pneumatic method has been introduced to quantify embolism resistance in plant xylem of various organs. Despite striking similarity in vulnerability curves between the Pneumatic and hydraulic methods, a modeling approach is highly needed to demonstrate that xylem embolism resistance can be accurately quantified based on gas diffusion kinetics. C_LIO_LIA Unit Pipe Pneumatic (UPPn) model was developed to estimate gas diffusion from intact conduits, which were axially interconnected by interconduit pit membranes. The physical laws used included Ficks law for diffusion, Henrys law for gas concentration partitioning between liquid and gas phases at equilibrium, and the ideal gas law. C_LIO_LIThe UPPn model showed that 91% of the extracted gas came from the first two series of embolized, intact conduits, and only 9% from the aqueous phase after 15 s of simulation. Embolism resistance measured with a Pneumatic apparatus was systematically overestimated by 2 to 17%, corresponding to a typical measuring error of 0.11 MPa for P50 (the water potential equivalent to 50% of the maximum amount of gas extracted). C_LIO_LIBecause results from the UPPn model are supported by experimental evidence, there is a good theoretical and experimental basis for applying the pneumatic method to research on embolism resistance of angiosperms. C_LI
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Yang, D., Pereira, L., Peng, G., Ribeiro, R., Kaack, L., Jansen, S., Tyree, M. T.. 2021-02-10. A Unit Pipe Pneumatic model to simulate gas kinetics during measurements of embolism in excised angiosperm xylem. https://doi.org/10.1101/2021.02.09.430450
Cite the original work for its findings. Save a collection to share your selection of sources.