Scinovex
articleTop 1% cited

A method for measuring hydraulic conductivity and embolism in xylem

Plant Cell & Environment · 1988 · Vol. 11(1) · pp. 35–40
John S. SperryJ. R. DonnellyMelvin T. Tyree

Abstract

Abstract Hydraulic conductivity of the xylem is computed as the quotient of mass flow rate and pressure gradient. Measurements on excised plant stems can be difficult to interpret because of time‐dependent reductions in flow rate, and because of variable degrees of embolism. Using Acer saccharum Marsh. stems, we found that certain perfusing solutions including dilute fixatives (e.g. 0.05% formaldehyde) and acids with pH below 3 (e.g. 10 mol m −3 oxalic) prevent long‐term decline in conductivity. Xylem embolism can be quantified by expressing the initial conductivity as a percentage of the maximum obtained after flow‐impeding air emboli have been removed by repeated high‐pressure (175 kPa) flushes. Correlation between microbial contamination and declining conductivity suggests that long‐term (> 4h) declines are caused by microbial growth within the vessels. Unpredictable trends in short‐term (< 4h) measurements may be caused by movements of air emboli in vessels and/or participate matter.

Plant Water Relations and Carbon DynamicsPlant Pathogens and Fungal DiseasesWood Treatment and PropertiesXylemHydraulic conductivityConductivityChemistryBotanySoil scienceAnalytical Chemistry (journal)Environmental scienceBiologyEnvironmental chemistry
Citations
1,086
FWCI
13.09
field-weighted impact
References
21
Percentile
99%
vs. same field & year
Citations per year
Cited by
Related articles
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.