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Effect of Chromosome Geometry on Genetic Diversity
by
Slater, Steven C
, Houmiel, Kathryn
, Ochman, Howard
, Marri, Pradeep Reddy
, Harris, Leigh K
in
Agrobacterium radiobacter
/ Agrobacterium tumefaciens
/ Agrobacterium tumefaciens - genetics
/ alleles
/ Bacteria
/ Base Sequence
/ chromosome architecture
/ Chromosome Mapping
/ Chromosomes
/ Chromosomes, Bacterial
/ Chromosomes, Bacterial - genetics
/ circular chromosomes
/ Cluster Analysis
/ E coli
/ genes
/ Genetic diversity
/ genetic polymorphism
/ genetic recombination
/ Genetic Variation
/ genetics
/ intragenic recombination
/ Investigations
/ linear chromosomes
/ Linkage Disequilibrium
/ loci
/ Microbiology
/ Models, Genetic
/ Molecular Sequence Data
/ Phylogeny
/ Rhizobium rhizogenes
/ Sequence Analysis, DNA
/ Species Specificity
/ Topology
2008
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Effect of Chromosome Geometry on Genetic Diversity
by
Slater, Steven C
, Houmiel, Kathryn
, Ochman, Howard
, Marri, Pradeep Reddy
, Harris, Leigh K
in
Agrobacterium radiobacter
/ Agrobacterium tumefaciens
/ Agrobacterium tumefaciens - genetics
/ alleles
/ Bacteria
/ Base Sequence
/ chromosome architecture
/ Chromosome Mapping
/ Chromosomes
/ Chromosomes, Bacterial
/ Chromosomes, Bacterial - genetics
/ circular chromosomes
/ Cluster Analysis
/ E coli
/ genes
/ Genetic diversity
/ genetic polymorphism
/ genetic recombination
/ Genetic Variation
/ genetics
/ intragenic recombination
/ Investigations
/ linear chromosomes
/ Linkage Disequilibrium
/ loci
/ Microbiology
/ Models, Genetic
/ Molecular Sequence Data
/ Phylogeny
/ Rhizobium rhizogenes
/ Sequence Analysis, DNA
/ Species Specificity
/ Topology
2008
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Do you wish to request the book?
Effect of Chromosome Geometry on Genetic Diversity
by
Slater, Steven C
, Houmiel, Kathryn
, Ochman, Howard
, Marri, Pradeep Reddy
, Harris, Leigh K
in
Agrobacterium radiobacter
/ Agrobacterium tumefaciens
/ Agrobacterium tumefaciens - genetics
/ alleles
/ Bacteria
/ Base Sequence
/ chromosome architecture
/ Chromosome Mapping
/ Chromosomes
/ Chromosomes, Bacterial
/ Chromosomes, Bacterial - genetics
/ circular chromosomes
/ Cluster Analysis
/ E coli
/ genes
/ Genetic diversity
/ genetic polymorphism
/ genetic recombination
/ Genetic Variation
/ genetics
/ intragenic recombination
/ Investigations
/ linear chromosomes
/ Linkage Disequilibrium
/ loci
/ Microbiology
/ Models, Genetic
/ Molecular Sequence Data
/ Phylogeny
/ Rhizobium rhizogenes
/ Sequence Analysis, DNA
/ Species Specificity
/ Topology
2008
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Journal Article
Effect of Chromosome Geometry on Genetic Diversity
2008
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Overview
Although organisms with linear chromosomes must solve the problem of fully replicating their chromosome ends, this chromosome configuration has emerged repeatedly during bacterial evolution and is evident in three divergent bacterial phyla. The benefit usually ascribed to this topology is the ability to boost genetic variation through increased recombination. But because numerous processes can impact linkage disequilibrium, such an effect is difficult to assess by comparing across bacterial taxa that possess different chromosome topologies. To test directly the contribution of chromosome architecture to genetic diversity and recombination, we examined sequence variation in strains of Agrobacterium Biovar 1, which are unique among sequenced bacteria in having both a circular and a linear chromosome. Whereas the allelic diversity among strains is generated principally by mutations, intragenic recombination is higher within genes situated on the circular chromosome. In contrast, recombination between genes is, on average, higher on the linear chromosome, but it occurs at the same rate as that observed between genes mapping to the distal portion of the circular chromosome. Collectively, our findings indicate that chromosome topology does not contribute significantly to either allelic or genotypic diversity and that the evolution of linear chromosomes is not based on a facility to recombine.
Publisher
Genetics Soc America,Genetics Society of America
Subject
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