Xylem cavitation resistance can be estimated based on time-dependent rate of acoustic emissions.

Markus Nolf, Barbara Beikircher, Sabine Rosner, Anton Nolf, Stefan Mayr

Journal: The New phytologist 2016;208(2):625-32

PMID: 26010417

Abstract

Acoustic emission (AE) analysis allows nondestructive monitoring of embolism formation in plant xylem, but signal interpretation and agreement of acoustically measured hydraulic vulnerability with reference hydraulic techniques remain under debate. We compared the hydraulic vulnerability of 16 species and three crop tree cultivars using hydraulic flow measurements and acoustic emission monitoring, proposing the use of time-dependent AE rates as a novel parameter for AE analysis. There was a linear correlation between the water potential (Ψ) at 50% loss of hydraulic conductivity (P50 ) and the Ψ at maximum AE activity (Pmaxrate ), where species with lower P50 also had lower Pmaxrate (P < 0.001, R(2)  = 0.76). Using AE rates instead of cumulative counts for AE analysis allows more efficient estimation of P50 , while excluding problematic AE at late stages of dehydration.

© 2015 The Authors. New Phytologist © 2015 New Phytologist Trust.

Address: Institute of Botany, University of Innsbruck, Sternwartestr. 15, Innsbruck, 6020, Austria.; Hawkesbury Institute for the Environment, University of Western Sydney, Richmond, NSW, 2753, Australia.; Institute of Botany, BOKU Vienna, Gregor Mendel Str. 33, Vienna, 1180, Austria.; Institute for Experimental Physics, University of Innsbruck, Technikerstr. 25, Innsbruck, 6020, Austria.
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