
AbstractWe analysed Hordeum spontaneum accessions from 21 different locations to understand the genetic diversity of HsDhn3 alleles and effects of single base mutations on the intrinsically disordered structure of the resulting polypeptide (HsDHN3). HsDHN3 was found to be YSK2-type with a low-frequency 6-aa deletion in the beginning of Exon 1. There is relatively high diversity in the intron region of HsDhn3 compared to the two exon regions. We have found subtle differences in K segments led to changes in amino acids chemical properties. Predictions for protein interaction profiles suggest the presence of a protein-binding site in HsDHN3 that coincides with the K1 segment. Comparison of DHN3 to closely related cereals showed that all of them contain a nuclear localization signal sequence flanking to the K1 segment and a novel conserved region located between the S and K1 segments [E(D/T)DGMGGR]. We found that H. vulgare, H. spontaneum, and Triticum urartu DHN3s have a greater number of phosphorylation sites for protein kinase C than other cereal species, which may be related to stress adaptation. Our results show that the nature and extent of mutations in the conserved segments of K1 and K2 are likely to be key factors in protection of cells.
Base Sequence, Nucleotides, Genetic Variation, Hordeum, Article, Open Reading Frames, Haplotypes, Genetic Loci, Structural Homology, Protein, Amino Acid Sequence, Nucleotide Motifs, Sequence Alignment, Conserved Sequence, Plant Proteins
Base Sequence, Nucleotides, Genetic Variation, Hordeum, Article, Open Reading Frames, Haplotypes, Genetic Loci, Structural Homology, Protein, Amino Acid Sequence, Nucleotide Motifs, Sequence Alignment, Conserved Sequence, Plant Proteins
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