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A comparative analysis of gaseous phase hydration properties of two lichenized fungi: Niebla tigrina (Follman) Rundel & Bowler from Atacama Desert and Umbilicaria antarctica Frey & I. M. Lamb from Robert Island, Southern Shetlands Archipelago, maritime Antarctica

Hubert Harańczyk; K. Strzałka; K. Kubat; A. Andrzejowska; M. Olech; D. Jakubiec; P. Kijak; G. Palfner; Angélica Casanova-Katny
Extremophiles · Vol. 25, Issue 3 · pp. 267-283 · 2021

Abstract

Gaseous phase hydration properties for thalli of Niebla tigrina from Atacama Desert, and for Umbilicaria antarctica from Isla Robert, maritime Antarctica, were analyzed using 1 H-NMR relaxometry, spectroscopy, and sorption isotherm analysis. The molecular dynamics of residual water was monitored to distinguish the sequential binding very tightly, tightly, and loosely bound water fractions. These two species differ in hydration kinetics faster for Desert N. tigrina [ A 1 = 0.51(4); t 1 = 0.51(5) h, t 2 = 15.0(1.9) h; total 0.7 for p / p 0 = 100%], compared to Antarctic U. antarctica [ A 1 = 0.082(6), t 1 = 2.4(2) h, t 2 = [26.9(2.7)] h, total 0.6 for p / p 0 = 100%] from humid polar area. The 1 H-NMR measurements distinguish signal from tightly bound water, and two signals from loosely bound water, with different chemical shifts higher for U. antarctica than for N. tigrina . Both lichen species contain different amounts of water-soluble solid fraction. For U. antarctica, the saturation concentration of water soluble solid fraction, c s = 0.55(9), and the dissolution effect is detected at least up to Δ m / m 0 = 0.7, whereas for N. tigrina with the similar saturation concentration, c s = 053(4), this fraction is detected up to the threshold hydration level equal to Δ M/m 0 = 0.3 only.

Bibliographic Information

JournalExtremophiles
PublisherSpringer
Publication Date2021-05-01
Publication Year2021
Volume25
Issue3
Pages267-283
Document TypeJournal Article
Print ISSN1431-0651
eISSN1433-4909
DOI10.1007/s00792-021-01227-y

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://www.springer.com/journal/792
Publisher PageOpen Publisher Page
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