<div><p>Many temperate plant species such as <em>Arabidopsis thaliana</em> are able to increase their freezing tolerance when exposed to low, nonfreezing temperatures in a process called cold acclimation. This process is accompanied by complex changes in gene expression. Previous studies have investigated these changes but have mainly focused on individual or small groups of genes. We present a comprehensive statistical analysis of the genome-wide changes of gene expression in response to 14 d of cold acclimation in <em>Arabidopsis,</em> and provide a large-scale validation of these data by comparing datasets obtained for the Affymetrix ATH1 Genechip and MWG 50-mer oligonucleotide whole-genome microarrays. We combine these datasets with exi...
Plants must reprogram gene expression to adapt constantly changing environmental temperatures. With ...
Plants must reprogram gene expression to adapt constantly changing environmental temperatures. With ...
Plants must reprogram gene expression to adapt constantly changing environmental temperatures. With ...
Many temperate plant species such as Arabidopsis thaliana are able to increase their freezing tolera...
Many temperate plant species such as Arabidopsis thaliana are able to increase their freezing tolera...
Background Low temperature leads to major crop losses every year. Although several studies have been...
Considerable effort has been directed towards understanding how plants adapt to low temperature. In...
Microarray analysis and mutational approaches were used to investigate regulation of freezing tolera...
The physiological process of cold acclimation protects plants native to the temperate regions of the...
Low temperature is a primary determinant of plant growth and survival. Using accessions of Arabidops...
Plants must reprogram gene expression to adapt constantly changing environmental temperatures. With ...
The Arabidopsis 25K GeneChip (ATH1, Affymetrix) was used to make a survey of the variation of the tr...
Cold stress is a major environmental factor that limits plant growth and productivity. Plants have e...
Cold acclimation protects plants from temperate regions of the world from the deleterious effects of...
Plants must reprogram gene expression to adapt constantly changing environmental temperatures. With ...
Plants must reprogram gene expression to adapt constantly changing environmental temperatures. With ...
Plants must reprogram gene expression to adapt constantly changing environmental temperatures. With ...
Plants must reprogram gene expression to adapt constantly changing environmental temperatures. With ...
Many temperate plant species such as Arabidopsis thaliana are able to increase their freezing tolera...
Many temperate plant species such as Arabidopsis thaliana are able to increase their freezing tolera...
Background Low temperature leads to major crop losses every year. Although several studies have been...
Considerable effort has been directed towards understanding how plants adapt to low temperature. In...
Microarray analysis and mutational approaches were used to investigate regulation of freezing tolera...
The physiological process of cold acclimation protects plants native to the temperate regions of the...
Low temperature is a primary determinant of plant growth and survival. Using accessions of Arabidops...
Plants must reprogram gene expression to adapt constantly changing environmental temperatures. With ...
The Arabidopsis 25K GeneChip (ATH1, Affymetrix) was used to make a survey of the variation of the tr...
Cold stress is a major environmental factor that limits plant growth and productivity. Plants have e...
Cold acclimation protects plants from temperate regions of the world from the deleterious effects of...
Plants must reprogram gene expression to adapt constantly changing environmental temperatures. With ...
Plants must reprogram gene expression to adapt constantly changing environmental temperatures. With ...
Plants must reprogram gene expression to adapt constantly changing environmental temperatures. With ...
Plants must reprogram gene expression to adapt constantly changing environmental temperatures. With ...