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Soybean kinome: functional classification and gene expression patterns
- Source :
- Journal of Experimental Botany
- Publication Year :
- 2015
-
Abstract
- Highlight Identification and functional classification of soybean kinase gene family revealed wide expansion and extensive divergence in gene structure, subcellular localizations, and tissue and stress gene expression patterns.<br />The protein kinase (PK) gene family is one of the largest and most highly conserved gene families in plants and plays a role in nearly all biological functions. While a large number of genes have been predicted to encode PKs in soybean, a comprehensive functional classification and global analysis of expression patterns of this large gene family is lacking. In this study, we identified the entire soybean PK repertoire or kinome, which comprised 2166 putative PK genes, representing 4.67% of all soybean protein-coding genes. The soybean kinome was classified into 19 groups, 81 families, and 122 subfamilies. The receptor-like kinase (RLK) group was remarkably large, containing 1418 genes. Collinearity analysis indicated that whole-genome segmental duplication events may have played a key role in the expansion of the soybean kinome, whereas tandem duplications might have contributed to the expansion of specific subfamilies. Gene structure, subcellular localization prediction, and gene expression patterns indicated extensive functional divergence of PK subfamilies. Global gene expression analysis of soybean PK subfamilies revealed tissue- and stress-specific expression patterns, implying regulatory functions over a wide range of developmental and physiological processes. In addition, tissue and stress co-expression network analysis uncovered specific subfamilies with narrow or wide interconnected relationships, indicative of their association with particular or broad signalling pathways, respectively. Taken together, our analyses provide a foundation for further functional studies to reveal the biological and molecular functions of PKs in soybean.
- Subjects :
- abiotic stress
Physiology
Gene Expression
Plant Science
Biology
Genome
Segmental Duplications, Genomic
biotic stress
Gene expression
Gene family
Kinome
Amino Acid Sequence
Gene
Phylogeny
Segmental duplication
Plant Proteins
soybean kinases
Genetics
co-expression network
Intron
Chromosome Mapping
collinearity analysis
Organ Specificity
Multigene Family
Soybeans
Protein Kinases
Functional divergence
Genome, Plant
Research Paper
duplication events
Subjects
Details
- ISSN :
- 14602431
- Volume :
- 66
- Issue :
- 7
- Database :
- OpenAIRE
- Journal :
- Journal of experimental botany
- Accession number :
- edsair.doi.dedup.....70abe42d8d1de0718cdb8a6f7e22c1cc