The dehydration-responsive element-binding factor (DREB) is a plant-specific family of transcription factors and plays an important role in plant response and adaptation to abiotic stress. In the present work, two h...The dehydration-responsive element-binding factor (DREB) is a plant-specific family of transcription factors and plays an important role in plant response and adaptation to abiotic stress. In the present work, two highly similar CBF/DREB l-like genes, designated as PhCBF4a and PhCBF4b, were identified from Populus hopeiensis. These two genes contain all conserved domains known to exist in other CBF/DREB1 genes. In the AP2 domain, there is only one different amino acid residue between PhCBF4a and PhCBF4b, alanine or valine, a nonpolar amino acid, suggesting that PhCBF4a and PhCBF4b may have similar DNA binding ability. Their expression is induced by water-loss treatment and their expression patterns are similar. Moreover, with a genomic DNA as template, the presence of the same bands in PCR products as those in expression pattern analysis indicated that PhCBF4a and PhCBF4b exist in the genome ofP. hopeiensis. Their detailed functions are discussed and will need further study.展开更多
The transcription factors DREB1s/CBFs play important roles in the regulation of plant resistance to environmental stresses and are quite useful for generating transgenic plants tolerant to these stresses. In the prese...The transcription factors DREB1s/CBFs play important roles in the regulation of plant resistance to environmental stresses and are quite useful for generating transgenic plants tolerant to these stresses. In the present work, a cDNA encoding DREB1/CBF-like protein (GhDREB1L) from cotton was isolated, and its sequence features, DNA binding preference, and expression patterns of the transcripts were also characterized. GhDREB1L contained one conserved AP2/ERF domain and its amino acid sequence was similar to the DREB1/CBF group of the DREB family from other plants. The DNA-binding domain of GhDREB1L was successfully expressed as a fusion protein in Escherichia coli BL21 (DE3) and purified by Ni-NTA affinity chromatography. Electrophoretic mobility shift assay revealed that the purified GhDREB1L fusion protein had a specific binding activity with the previously characterized DRE ele-ment (core sequence, ACCGAC) and also with the DRE-like sequence (core sequence, GCCGAC) in the promoter of the dehydration-responsive late embryogenesis-abundant gene LEA D113. Semi-quantita- tive RT-PCR showed that GhDREB1L was induced in the cotton cotyledons by low temperature, as well as drought and NaCl treatments. These results suggested that the novel cotton GhDREB1L might play an important role in response to low temperature as well as drought and high salinity through binding to the DRE cis-element.展开更多
基金the National Project of Science and Technology for the 11th Five-Year Plan in China (Grant No.2006BAD01A1502)
文摘The dehydration-responsive element-binding factor (DREB) is a plant-specific family of transcription factors and plays an important role in plant response and adaptation to abiotic stress. In the present work, two highly similar CBF/DREB l-like genes, designated as PhCBF4a and PhCBF4b, were identified from Populus hopeiensis. These two genes contain all conserved domains known to exist in other CBF/DREB1 genes. In the AP2 domain, there is only one different amino acid residue between PhCBF4a and PhCBF4b, alanine or valine, a nonpolar amino acid, suggesting that PhCBF4a and PhCBF4b may have similar DNA binding ability. Their expression is induced by water-loss treatment and their expression patterns are similar. Moreover, with a genomic DNA as template, the presence of the same bands in PCR products as those in expression pattern analysis indicated that PhCBF4a and PhCBF4b exist in the genome ofP. hopeiensis. Their detailed functions are discussed and will need further study.
基金the State Key Basic Research and Development Plan of China (Grant No. 2004CB117303),the Hi-Tech Research and Development Program of China (Grant Nos.2004AA222100, 2002AA212051 and 2002AA207006),the National Natural Science Foundation of China (Grant Nos. 30170080 and 39770078)
文摘The transcription factors DREB1s/CBFs play important roles in the regulation of plant resistance to environmental stresses and are quite useful for generating transgenic plants tolerant to these stresses. In the present work, a cDNA encoding DREB1/CBF-like protein (GhDREB1L) from cotton was isolated, and its sequence features, DNA binding preference, and expression patterns of the transcripts were also characterized. GhDREB1L contained one conserved AP2/ERF domain and its amino acid sequence was similar to the DREB1/CBF group of the DREB family from other plants. The DNA-binding domain of GhDREB1L was successfully expressed as a fusion protein in Escherichia coli BL21 (DE3) and purified by Ni-NTA affinity chromatography. Electrophoretic mobility shift assay revealed that the purified GhDREB1L fusion protein had a specific binding activity with the previously characterized DRE ele-ment (core sequence, ACCGAC) and also with the DRE-like sequence (core sequence, GCCGAC) in the promoter of the dehydration-responsive late embryogenesis-abundant gene LEA D113. Semi-quantita- tive RT-PCR showed that GhDREB1L was induced in the cotton cotyledons by low temperature, as well as drought and NaCl treatments. These results suggested that the novel cotton GhDREB1L might play an important role in response to low temperature as well as drought and high salinity through binding to the DRE cis-element.