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PMID: 16972866 Published · ppublish English Journal Article

FtsH11 protease plays a critical role in Arabidopsis thermotolerance.

The Plant journal : for cell and molecular biology ·Vol. 48 ·No. 1 ·2006-10-00 ·Pages 73-84

Chen J, Burke JJ, Velten J, Xin Z

Abstract

Plants, as sessile organisms, employ multiple mechanisms to adapt to the seasonal and daily temperature fluctuations associated with their habitats. Here, we provide genetic and physiological evidence that the FtsH11 protease of Arabidopsis contributes to the overall tolerance of the plant to elevated temperatures. To identify the various mechanisms of thermotolerance in plants, we isolated a series of Arabidopsis thaliana thermo-sensitive mutants (atts) that fail to acquire thermotolerance after pre-conditioning at 38 degrees C. Two allelic mutants, atts244 and atts405, were found to be both highly susceptible to moderately elevated temperatures and defective in acquired thermotolerance. The growth and development of the mutant plants at all stages examined were arrested after exposure to temperatures above 30 degrees C, which are permissive conditions for wild-type plants. The affected gene in atts244 was identified through map-based cloning and encodes a chloroplast targeted FtsH protease, FtsH11. The Arabidopsis genome contains 12 predicted FtsH protease genes, with all previously characterized FtsH genes playing roles in the alleviation of light stress through the degradation of unassembled thylakoid membrane proteins and photodamaged photosystem II D1 protein. Photosynthetic capability, as measured by chlorophyll content (chl a/b ratios) and PSII quantum yield, is greatly reduced in the leaves of FtsH11 mutants when exposed to the moderately high temperature of 30 degrees C. Under high light conditions, however, FtsH11 mutants and wild-type plants showed no significant difference in photosynthesis capacity. Our results support a direct role for the A. thaliana FtsH11-encoded protease in thermotolerance, a function previously reported for bacterial and yeast FtsH proteases but not for those from plants.

MeSH Terms
Acclimatization/physiology Arabidopsis/enzymology,genetics,physiology Arabidopsis Proteins/genetics,metabolism,physiology Chlorophyll/metabolism Cloning, Molecular Cotyledon/metabolism Heat-Shock Proteins/metabolism Membrane Proteins/metabolism Metalloproteases/genetics,metabolism,physiology Mutation Photosynthesis/physiology Photosystem II Protein Complex/metabolism Temperature Thylakoids/metabolism
Chemicals
Arabidopsis Proteins Heat-Shock Proteins Membrane Proteins Photosystem II Protein Complex Chlorophyll FtsH11 protein, Arabidopsis Metalloproteases
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Chen Junping
Plant Stress and Germplasm Development Unit, USDA-ARS, 3810 4th Street, Lubbock, TX 79415, USA. jchen@lbk.ars.usda.gov
Burke John J
Velten Jeff
Xin Zhanguo
Article Info
Journal
The Plant journal : for cell and molecular biology
Abbr.
Plant J
ISSN
0960-7412
Published
2006-10-00
Pages
73-84
Language
English
Region
England
NLM ID
9207397
Subset
IM
Databases
RefSeq
NP_565616, NP_568787, NP_917708
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