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PMID: 15322883 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Physcomitrella patens is highly tolerant against drought, salt and osmotic stress.

Planta ·Vol. 220 ·No. 3 ·2005-01-00 ·Pages 384-94

Frank W, Ratnadewi D, Reski R

Abstract

In order to determine the degree of tolerance of the moss Physcomitrella patens to different abiotic stress conditions, we examined its tolerance against salt, osmotic and dehydration stress. Compared to other plants like Arabidopsis thaliana, P. patens exhibits a high degree of abiotic stress tolerance, making it a valuable source for the identification of genes effecting the stress adaptation. Plants that had been treated with NaCl tolerated concentrations up to 350 mM. Treatments with sorbitol revealed that plants are able to survive concentrations up to 500 mM. Furthermore, plants that had lost 92% water on a fresh-weight basis were able to recover successfully. For molecular analyses, a P. patens expressed sequence tag (EST) database was searched for cDNA sequences showing homology to stress-associated genes of seed plants and bacteria. 45 novel P. patens genes were identified and subjected to cDNA macroarray analyses to define their expression pattern in response to water deficit. Among the selected cDNAs, we were able to identify a set of genes that is specifically up-regulated upon dehydration. These genes encode proteins exerting their function in maintaining the integrity of the plant cell as well as proteins that are known to be members of signaling networks. The identified genes will serve as molecular markers and potential targets for future functional analyses.

MeSH Terms
Bryopsida/genetics,metabolism,physiology DNA, Complementary DNA, Plant Expressed Sequence Tags Gene Expression Profiling Gene Expression Regulation, Plant Osmotic Pressure Sodium Chloride/metabolism Up-Regulation Water/metabolism
Chemicals
DNA, Complementary DNA, Plant Water Sodium Chloride
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Frank Wolfgang
Plant Biotechnology, University of Freiburg, Schaenzlestr. 1, 79104 Freiburg, Germany. [email protected]
Ratnadewi Diah
Reski Ralf
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Article Info
Journal
Planta
Abbr.
Planta
ISSN
0032-0935
Published
2005-01-00
Epub
2004-00-18
Pages
384-94
Language
English
Region
Germany
NLM ID
1250576
Subset
IM
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