Abstract Background Roots are an attractive system for genomic and post-genomic studies of NaCl responses, due to their primary importance to agriculture, and because of their relative structural and biochemical simplicity. Excellent genomic resources have been established for the study of Arabidopsis roots, however, a comprehensive microarray analysis of the root transcriptome following NaCl exposure is required to further understand plant responses to abiotic stress and facilitate future, systems-based analyses of the underlying regulatory networks. Results We used microarrays of 70-mer oligonucleotide probes representing 23,686 Arabidopsis genes to identify root transcripts that changed in relative abundance following 6 h, 24 h, or 48 h ...
<div><p>Understanding the molecular mechanisms that convey salt tolerance in plants is a crucial iss...
NAC domain genes belong to a large plant-specific transcription factor family, which is well-known t...
Abstract Background Arabidopsis pumila is native to the desert region of northwest China and it is e...
Plant growth and crop productivity has been adversely affected by salt stress around the world. Arab...
Characterization of many osmotic stress-induced genes has greatly contributed to the understanding o...
With recent advancements in DNA-chip technology, requisite software development and support and prog...
With recent advancements in DNA-chip technology, requisite software development and support and prog...
Salt stress is one of the major abiotic stresses in agriculture worldwide. Analysis of natural genet...
Understanding the molecular mechanisms that convey salt tolerance in plants is a crucial issue for i...
<div><p>Salt stress is one of the major abiotic stresses in agriculture worldwide. Analysis of natur...
Salt stress is one of the major abiotic stresses in agriculture worldwide. Analysis of natural genet...
<div><p>Plants have evolved with intricate mechanisms to cope with multiple environmental stresses. ...
Salt stress is one of the major abiotic stresses in agriculture worldwide. Analysis of natural genet...
NAC domain genes belong to a large plant-specific transcription factor family, which is well-known t...
Popova OV, Yang O, Dietz K-J, Golldack D. Differential transcript regulation in Arabidopsis thaliana...
<div><p>Understanding the molecular mechanisms that convey salt tolerance in plants is a crucial iss...
NAC domain genes belong to a large plant-specific transcription factor family, which is well-known t...
Abstract Background Arabidopsis pumila is native to the desert region of northwest China and it is e...
Plant growth and crop productivity has been adversely affected by salt stress around the world. Arab...
Characterization of many osmotic stress-induced genes has greatly contributed to the understanding o...
With recent advancements in DNA-chip technology, requisite software development and support and prog...
With recent advancements in DNA-chip technology, requisite software development and support and prog...
Salt stress is one of the major abiotic stresses in agriculture worldwide. Analysis of natural genet...
Understanding the molecular mechanisms that convey salt tolerance in plants is a crucial issue for i...
<div><p>Salt stress is one of the major abiotic stresses in agriculture worldwide. Analysis of natur...
Salt stress is one of the major abiotic stresses in agriculture worldwide. Analysis of natural genet...
<div><p>Plants have evolved with intricate mechanisms to cope with multiple environmental stresses. ...
Salt stress is one of the major abiotic stresses in agriculture worldwide. Analysis of natural genet...
NAC domain genes belong to a large plant-specific transcription factor family, which is well-known t...
Popova OV, Yang O, Dietz K-J, Golldack D. Differential transcript regulation in Arabidopsis thaliana...
<div><p>Understanding the molecular mechanisms that convey salt tolerance in plants is a crucial iss...
NAC domain genes belong to a large plant-specific transcription factor family, which is well-known t...
Abstract Background Arabidopsis pumila is native to the desert region of northwest China and it is e...