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Response of the Leaf Cell Wall to Desiccation in the Resurrection Plant Myrothamnus flabellifolius.

Authors :
Moore, John P.
Nguema-Ona, Eric
Chevalier, Laurence
Lindsey, George C.
Brandt, Wolf F.
Lerouge, Patrice
Farrant, Jill M.
Driouich, Azeddine
Source :
Plant Physiology. Jun2006, Vol. 141 Issue 2, p651-662. 10p. 5 Diagrams, 1 Chart, 4 Graphs.
Publication Year :
2006

Abstract

The Myrothamnus flabellifolius leaf cell wall and its response to desiccation were investigated using electron microscopic, biochemical, and immunocytochemical techniques. Electron microscopy revealed desiccation-induced cell wall folding in the majority of mesophyll and epidermal cells. Thick-walled vascular tissue and sclerenchymous ribs did not fold and supported the surrounding tissue, thereby limiting the extent of leaf shrinkage and allowing leaf morphology to be rapidly regained upon rehydration. Isolated cell walls from hydrated and desiccated M. flabellifolius leaves were fractionated into their constituent polymers and the resulting fractions were analyzed for monosaccharide content. Significant differences between hydrated and desiccated states were observed in the water-soluble buffer extract, pectin fractions, and the arabinogalactan protein-rich extract. A marked increase in galacturonic acid was found in the alkali-insoluble pectic fraction. Xyloglucan structure was analyzed and shown to be of the standard dicotyledonous pattern. Immunocytochemical analysis determined the cellular location of the various epitopes associated with cell wall components, including pectin, xyloglucan, and arabinogalactan proteins, in hydrated and desiccated leaf tissue. The most striking observation was a constitutively present high concentration of arabinose, which was associated with pectin, presumably in the form of arabinan polymers. We propose that the arabinan-rich leaf cell wall of M. flabellifolius possesses the necessary structural properties to be able to undergo repeated periods of desiccation and rehydration. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00320889
Volume :
141
Issue :
2
Database :
Academic Search Index
Journal :
Plant Physiology
Publication Type :
Academic Journal
Accession number :
21400031
Full Text :
https://doi.org/10.1104/pp.106.077701