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Article << Previous     |     Next >>   Contents Vol 36(7)

Sporobolus stapfianus, a model desiccation-tolerant grass

Donald F. Gaff A D, Cecilia K. Blomstedt A, Alan D. Neale A, Tuan N. Le A B, John D. Hamill A, Hamid R. Ghasempour A C

A School of Biological Sciences, Monash University, Clayton, Vic. 3800, Australia.
B Present address: CSIRO Plant Industry, GPO Box 1600, Canberra, ACT 2601, Australia.
C Present address: Department of Biology, Razi University, Taghbostan, Kermanshah, Iran 6.
D Corresponding author. Email: don.gaff@sci.monash.edu.au
 
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Abstract

Sporobolus stapfianus Gandoger, one of ~40 known ‘anabiotic’grass species (i.e. ‘able to regain vital activity from a state of latent life’), is the most versatile tool for research into desiccation tolerance in vegetative grass tissue. Current knowledge on this species is presented, including the features that suit it for investigations into the plant’s ability to survive dehydration of its leaf protoplasm. The main contributors to desiccation tolerance in S. stapfianus leaves appear to be: accumulation during dehydration of protectants of membranes and proteins; mechanisms limiting oxidative damage; a retention of protein synthetic activity in late stages of drying that is linked with changes in gene expression and in the proteomic array; and an ability to retain net synthesis of ATP during drying. S. stapfianus exemplifies an advanced stage of an evolutionary trend in desiccation tolerant plants towards increased importance of the dehydration phase (for induction of tolerance, for synthesis of protectants and for proteomic changes).

Keywords: abscisic acid, evolution, gene expression, grazing potential, proteome, protoplasmic drought tolerance, resurrection plant, salt tolerance.


   
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