Back to Search
Start Over
Genome-wide analysis of the bZIP transcription factors in cucumber
- Source :
- PLoS ONE, PLoS ONE, Vol 9, Iss 4, p e96014 (2014)
- Publication Year :
- 2014
-
Abstract
- bZIP proteins are one of the largest transcriptional regulators playing crucial roles in plant development, physiological processes, and biotic/abiotic stress responses. Despite the availability of recently published draft genome sequence of Cucumis sativus, no comprehensive investigation of these family members has been presented for cucumber. We have identified 64 bZIP transcription factor-encoding genes in the cucumber genome. Based on structural features of their encoded proteins, CsbZIP genes could be classified into 6 groups. Cucumber bZIP genes were expanded mainly by segmental duplication rather than tandem duplication. Although segmental duplication rate of the CsbZIP genes was lower than that of Arabidopsis, rice and sorghum, it was observed as a common expansion mechanism. Some orthologous relationships and chromosomal rearrangements were observed according to comparative mapping analysis with other species. Genome-wide expression analysis of bZIP genes indicated that 64 CsbZIP genes were differentially expressed in at least one of the ten sampled tissues. A total of 4 CsbZIP genes displayed higher expression values in leaf, flowers and root tissues. The in silico micro-RNA (miRNA) and target transcript analyses identified that a total of 21 CsbZIP genes were targeted by 38 plant miRNAs. CsbZIP20 and CsbZIP22 are the most targeted by miR165 and miR166 family members, respectively. We also analyzed the expression of ten CsbZIP genes in the root and leaf tissues of drought-stressed cucumber using quantitative RT-PCR. All of the selected CsbZIP genes were measured as increased in root tissue at 24th h upon PEG treatment. Contrarily, the down-regulation was observed in leaf tissues of all analyzed CsbZIP genes. CsbZIP12 and CsbZIP44 genes showed gradual induction of expression in root tissues during time points. This genome-wide identification and expression profiling provides new opportunities for cloning and functional analyses, which may be used in further studies for improving stress tolerance in plants.
- Subjects :
- Models, Molecular
lcsh:Medicine
Plant Science
Plant Genetics
Genome
Plant Roots
Evolution, Molecular
Gene Expression Regulation, Plant
Stress, Physiological
Arabidopsis
Gene Duplication
Gene duplication
Gene expression
Genetics
Plant Genomics
lcsh:Science
Gene
Phylogeny
Segmental duplication
Plant Proteins
Multidisciplinary
biology
Gene Expression Profiling
lcsh:R
food and beverages
Biology and Life Sciences
Genomics
biology.organism_classification
Genome Analysis
Droughts
Gene expression profiling
Plant Leaves
MicroRNAs
Basic-Leucine Zipper Transcription Factors
RNA, Plant
lcsh:Q
Plant Biotechnology
Tandem exon duplication
Cucumis sativus
Research Article
Subjects
Details
- ISSN :
- 19326203
- Volume :
- 9
- Issue :
- 4
- Database :
- OpenAIRE
- Journal :
- PloS one
- Accession number :
- edsair.doi.dedup.....1c53d0856917ccaacb996f99226a9661