Literature DB >> 15020479

Meiotic recombination between paralogous RBCSB genes on sister chromatids of Arabidopsis thaliana.

John G Jelesko1, Kristy Carter, Whitney Thompson, Yuki Kinoshita, Wilhelm Gruissem.   

Abstract

Paralogous genes organized as a gene cluster can rapidly evolve by recombination between misaligned paralogs during meiosis, leading to duplications, deletions, and novel chimeric genes. To model unequal recombination within a specific gene cluster, we utilized a synthetic RBCSB gene cluster to isolate recombinant chimeric genes resulting from meiotic recombination between paralogous genes on sister chromatids. Several F1 populations hemizygous for the synthRBCSB1 gene cluster gave rise to Luc+ F2 plants at frequencies ranging from 1 to 3 x 10(-6). A nonuniform distribution of recombination resolution sites resulted in the biased formation of recombinant RBCS3B/1B::LUC genes with nonchimeric exons. The positioning of approximately half of the mapped resolution sites was effectively modeled by the fractional length of identical DNA sequences. In contrast, the other mapped resolution sites fit an alternative model in which recombination resolution was stimulated by an abrupt transition from a region of relatively high sequence similarity to a region of low sequence similarity. Thus, unequal recombination between paralogous RBCSB genes on sister chromatids created an allelic series of novel chimeric genes that effectively resulted in the diversification rather than the homogenization of the synthRBCSB1 gene cluster.

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Year:  2004        PMID: 15020479      PMCID: PMC1470745          DOI: 10.1534/genetics.166.2.947

Source DB:  PubMed          Journal:  Genetics        ISSN: 0016-6731            Impact factor:   4.562


  40 in total

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Authors:  J G Jelesko; R Harper; M Furuya; W Gruissem
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Authors:  A Peterhans; H Schlüpmann; C Basse; J Paszkowski
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  13 in total

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8.  Natural diversity in flowering responses of Arabidopsis thaliana caused by variation in a tandem gene array.

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9.  Pericentromeric effects shape the patterns of divergence, retention, and expression of duplicated genes in the paleopolyploid soybean.

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