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We are analyzing https://link.springer.com/article/10.1007/s00294-004-0496-6.

Title:
The rpl5–rps14 mitochondrial region: a hot spot for DNA rearrangements in Solanum spp. somatic hybrids | Current Genetics
Description:
Southern analysis with rpl5 and rps14 mtDNA gene probes of Solanum tuberosum, S. commersonii and a sample of somatic hybrids detected polymorphisms between parents and the appearance of a novel restriction fragment in various hybrids. In one of them, detailed mtDNA analyses revealed various configurations of the rpl5–rps14 region present at different stoichiometries. Multiple inter-parental recombination events across homologous sequences were assumed to have caused these rearrangements. Sequence similarity searches detected one sequence putatively involved in the recombination upstream of the rpl5 gene. The presence of a second recombinogenic sequence was inferred. We propose two models to explain the mechanism responsible for obtaining the different rpl5–rps14 arrangements shown after somatic hybridization. Variability in the rpl5–rps14 region observed in both the parental species and their somatic hybrids suggests this region is a hot spot for mtDNA rearrangements in Solanum spp.
Website Age:
28 years and 1 months (reg. 1997-05-29).

Matching Content Categories {📚}

  • Education
  • Science
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Content Management System {📝}

What CMS is link.springer.com built with?

Custom-built

No common CMS systems were detected on Link.springer.com, and no known web development framework was identified.

Traffic Estimate {📈}

What is the average monthly size of link.springer.com audience?

🌠 Phenomenal Traffic: 5M - 10M visitors per month


Based on our best estimate, this website will receive around 5,000,019 visitors per month in the current month.
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How Does Link.springer.com Make Money? {💾}

We don't see any clear sign of profit-making.

The purpose of some websites isn't monetary gain; they're meant to inform, educate, or foster collaboration. Everyone has unique reasons for building websites. This could be an example. Link.springer.com has a secret sauce for making money, but we can't detect it yet.

Keywords {🔍}

google, scholar, mitochondrial, article, plant, somatic, genet, cas, dna, pubmed, hybrids, recombination, solanum, scotti, genome, curr, research, rplrps, spp, cardi, access, mitochondria, mol, privacy, cookies, content, genetics, region, potato, information, publish, search, rearrangements, maréchaldrouard, mtdna, gene, tuberosum, homologous, genomes, biol, small, data, log, journal, hot, spot, rps, commersonii, detected, sequence,

Topics {✒}

high-frequency inter-parental recombination rpl5–rps14–cob gene cluster month download article/chapter cnr-cnrs bilateral agreement rpl5–rps14–cob arrangement rpl5–rps14 arrangements shown ed interazioni nucleo-citoplasmatiche rpl5–rps14 mitochondrial region rpl5–rps14 region present rpl5–rps14 region observed low-copy-number molecules homologous recombination levings cs iii plant mitochondrial genome rare recombination event mitochondrial genome diversity bean mitochondrial genome mitochondrial dna molecule mitochondrial dna regions somatic hybrids suggests interspecific somatic hybrids privacy choices/manage cookies full article pdf cold spring harbor parental solanum spp plant mitochondrial genomes homologous sequences mitochondrial stoichiometric shifting affiliations cnr-igv complex mtdna constitutes organelle dna variation mitochondrial genome plastid-mitochondrial configurations european economic area tetrad pollen sterility male sterile phenotype chondriome type characterization university “federico ii” nuclear-cytoplasmic interactions approximate 620-kb insertion arabidopsis thaliana chromosome 2 large-unit repeats ribosomal proteins s3 higher plant mitochondria conditions privacy policy mitochondrial dna somatic hybrids male fertility variation recombination upstream intergenomic recombination

Questions {❓}

  • Are Synonymous Substitutions in Flowering Plant Mitochondria Neutral?

Schema {đŸ—ș}

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         headline:The rpl5–rps14 mitochondrial region: a hot spot for DNA rearrangements in Solanum spp. somatic hybrids
         description:Southern analysis with rpl5 and rps14 mtDNA gene probes of Solanum tuberosum, S. commersonii and a sample of somatic hybrids detected polymorphisms between parents and the appearance of a novel restriction fragment in various hybrids. In one of them, detailed mtDNA analyses revealed various configurations of the rpl5–rps14 region present at different stoichiometries. Multiple inter-parental recombination events across homologous sequences were assumed to have caused these rearrangements. Sequence similarity searches detected one sequence putatively involved in the recombination upstream of the rpl5 gene. The presence of a second recombinogenic sequence was inferred. We propose two models to explain the mechanism responsible for obtaining the different rpl5–rps14 arrangements shown after somatic hybridization. Variability in the rpl5–rps14 region observed in both the parental species and their somatic hybrids suggests this region is a hot spot for mtDNA rearrangements in Solanum spp.
         datePublished:2004-03-18T00:00:00Z
         dateModified:2004-03-18T00:00:00Z
         pageStart:378
         pageEnd:382
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            Somatic hybrids
            Mitochondrial DNA
            Homologous recombination
             rpl5–rps14 genes
            Microbial Genetics and Genomics
            Microbiology
            Biochemistry
            general
            Cell Biology
            Plant Sciences
            Proteomics
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      headline:The rpl5–rps14 mitochondrial region: a hot spot for DNA rearrangements in Solanum spp. somatic hybrids
      description:Southern analysis with rpl5 and rps14 mtDNA gene probes of Solanum tuberosum, S. commersonii and a sample of somatic hybrids detected polymorphisms between parents and the appearance of a novel restriction fragment in various hybrids. In one of them, detailed mtDNA analyses revealed various configurations of the rpl5–rps14 region present at different stoichiometries. Multiple inter-parental recombination events across homologous sequences were assumed to have caused these rearrangements. Sequence similarity searches detected one sequence putatively involved in the recombination upstream of the rpl5 gene. The presence of a second recombinogenic sequence was inferred. We propose two models to explain the mechanism responsible for obtaining the different rpl5–rps14 arrangements shown after somatic hybridization. Variability in the rpl5–rps14 region observed in both the parental species and their somatic hybrids suggests this region is a hot spot for mtDNA rearrangements in Solanum spp.
      datePublished:2004-03-18T00:00:00Z
      dateModified:2004-03-18T00:00:00Z
      pageStart:378
      pageEnd:382
      sameAs:https://doi.org/10.1007/s00294-004-0496-6
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         Potato
         Somatic hybrids
         Mitochondrial DNA
         Homologous recombination
          rpl5–rps14 genes
         Microbial Genetics and Genomics
         Microbiology
         Biochemistry
         general
         Cell Biology
         Plant Sciences
         Proteomics
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