Importance of Gene Duplication in the Evolution of Genomic Imprinting Revealed by Molecular Evolutionary Analysis of the Type I MADS-Box Gene Family in Arabidopsis Species
نویسندگان
چکیده
The pattern of molecular evolution of imprinted genes is controversial and the entire picture is still to be unveiled. Recently, a relationship between the formation of imprinted genes and gene duplication was reported in genome-wide survey of imprinted genes in Arabidopsis thaliana. Because gene duplications influence the molecular evolution of the duplicated gene family, it is necessary to investigate both the pattern of molecular evolution and the possible relationship between gene duplication and genomic imprinting for a better understanding of evolutionary aspects of imprinted genes. In this study, we investigated the evolutionary changes of type I MADS-box genes that include imprinted genes by using relative species of Arabidopsis thaliana (two subspecies of A. lyrata and three subspecies of A. halleri). A duplicated gene family enables us to compare DNA sequences between imprinted genes and its homologs. We found an increased number of gene duplications within species in clades containing the imprinted genes, further supporting the hypothesis that local gene duplication is one of the driving forces for the formation of imprinted genes. Moreover, data obtained by phylogenetic analysis suggested "rapid evolution" of not only imprinted genes but also its closely related orthologous genes, which implies the effect of gene duplication on molecular evolution of imprinted genes.
منابع مشابه
Molecular and phylogenetic analyses of the MADS-box gene family in tomato.
MIKCc-type MADS-box genes encode key transcriptional regulators of a variety of developmental processes in Arabidopsis thaliana. However, there has been relatively little effort to systematically carry out comparative genomic or functional analyses of these genes across flowering plants. Here we describe a strategy to identify members of the MIKCc-type MADS-box gene family from any angiosperm s...
متن کاملMolecular Cloning and Analysis of Two Flowering Related Genes from Apple (Malus × domestica)
Apple (Malus×domestica Borkh.) is the fourth fruit in importance and Iran ranks fifth in apple production in the world. Longevity of juvenility in apple extends breeding cycles and makes its breeding a tough job. To alleviate this barrier via genetic engineering, the genes involved in flowering and floral development of apple and their function must be identified and characterized. Most of thes...
متن کاملLoss of Chloroplast trnLUAA Intron in Two Species of Hedysarum (Fabaceae): Evolutionary Implications
Previous studies have indicated that in all land plants examined to date, the chloroplast gene trnLUAA isinterrupted by a single group I intron ranging from 250 to over 1400 bp. The parasitic Epifagus virginiana haslost, however, the entire gene. We report that the intron is missing from the chloroplast genome of twoarctic species of the legume genus Hedysarum (H. alpinum, H. ...
متن کاملBioinformatics Genome-Wide Characterization of the WRKY Gene Family in Sorghum bicolor
The WRKY gene family encodes a large group of transcription factors that regulate genes involved in plant response to biotic and abiotic stresses. Sorghum is a notable grain and forage crop in semi-arid regions because of its unusual tolerance against hot and dry environments. We identified a set of 85 WRKY genes in the S. bicolor genome and classified them into three groups (I–III). Among the ...
متن کاملAdaptive evolution in the Arabidopsis MADS-box gene family inferred from its complete resolved phylogeny.
Gene duplication is a substrate of evolution. However, the relative importance of positive selection versus relaxation of constraints in the functional divergence of gene copies is still under debate. Plant MADS-box genes encode transcriptional regulators key in various aspects of development and have undergone extensive duplications to form a large family. We recovered 104 MADS sequences from ...
متن کامل