Article ID Journal Published Year Pages File Type
2817123 Gene 2013 9 Pages PDF
Abstract

•A total of 58 JcWRKY genes were identified in the physic nut genome.•There was no recent gene duplication among JcWRKY genes.•Thirty-eight JcWRKY genes are differentially expressed in different tissues.•Forty-seven JcWRKY genes were response to the tested abiotic stress.

The WRKY proteins, which contain highly conserved WRKYGQK amino acid sequences and zinc-finger-like motifs, constitute a large family of transcription factors in plants. They participate in diverse physiological and developmental processes. WRKY genes have been identified and characterized in a number of plant species. We identified a total of 58 WRKY genes (JcWRKY) in the genome of the physic nut (Jatropha curcas L.). On the basis of their conserved WRKY domain sequences, all of the JcWRKY proteins could be assigned to one of the previously defined groups, I–III. Phylogenetic analysis of JcWRKY genes with Arabidopsis and rice WRKY genes, and separately with castor bean WRKY genes, revealed no evidence of recent gene duplication in JcWRKY gene family. Analysis of transcript abundance of JcWRKY gene products were tested in different tissues under normal growth condition. In addition, 47 WRKY genes responded to at least one abiotic stress (drought, salinity, phosphate starvation and nitrogen starvation) in individual tissues (leaf, root and/or shoot cortex). Our study provides a useful reference data set as the basis for cloning and functional analysis of physic nut WRKY genes.

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Life Sciences Biochemistry, Genetics and Molecular Biology Genetics
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