Comprehensive Analysis of NAC Domain Transcription Factor Gene Family in Populus trichocarpa
Comprehensive Analysis of NAC Domain Transcription Factor Gene Family in Populus trichocarpa
Abstract Background NAC (NAM, ATAF1/2 and CUC2) domain proteins are plant-specific transcriptional factors known to play diverse roles in various plant developmental processes. NAC transcription factors comprise of a large gene family represented by more than 100 members in Arabidopsis, rice and soybean etc. Recently, a preliminary phylogenetic analysis was reported for NAC gene family from 11 plant species. However, no comprehensive study incorporating phylogeny, chromosomal location, gene structure, conserved motifs, and expression profiling analysis has been presented thus far for the model tree species Populus. Results In the present study, a comprehensive analysis of NAC gene family in Populus was performed. A total of 163 full-length NAC genes were identified in Populus, and they were phylogeneticly clustered into 18 distinct subfamilies. The gene structure and motif compositions were considerably conserved among the subfamilies. The distributions of 120 Populus NAC genes were non-random across the 19 linkage groups (LGs), and 87 genes (73%) were preferentially retained duplicates that located in both duplicated regions. The majority of NACs showed specific temporal and spatial expression patterns based on EST frequency and microarray data analyses. However, the expression patterns of a majority of duplicate genes were partially redundant, suggesting the occurrence of subfunctionalization during subsequent evolutionary process. Furthermore, quantitative real-time RT-PCR (RT-qPCR) was performed to confirm the tissue-specific expression patterns of 25 NAC genes. Conclusion Based on the genomic organizations, we can conclude that segmental duplications contribute significantly to the expansion of Populus NAC gene family. The comprehensive expression profiles analysis provides first insights into the functional divergence among members in NAC gene family. In addition, the high divergence rate of expression patterns after segmental duplications indicates that NAC genes in Populus are likewise to have been retained by substantial subfunctionalization. Taken together, our results presented here would be helpful in laying the foundation for functional characterization of NAC gene family and further gaining an understanding of the structure-function relationship between these family members.
- Chinese Academy of Science (中国科学院) China (People's Republic of)
- Qingdao Institute of Bioenergy and Bioprocess Technology China (People's Republic of)
- Chinese Academy of Sciences (中国科学院) China (People's Republic of)
- University of Georgia Press United States
- Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences China (People's Republic of)
Reverse Transcriptase Polymerase Chain Reaction, Gene Expression Profiling, Amino Acid Motifs, Botany, Chromosome Mapping, Reproducibility of Results, Plant Science, Genes, Plant, Populus, QK1-989, Gene Order, Phylogeny, Research Article, Plant Proteins, Transcription Factors
Reverse Transcriptase Polymerase Chain Reaction, Gene Expression Profiling, Amino Acid Motifs, Botany, Chromosome Mapping, Reproducibility of Results, Plant Science, Genes, Plant, Populus, QK1-989, Gene Order, Phylogeny, Research Article, Plant Proteins, Transcription Factors
17 Research products, page 1 of 2
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