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  • Variation in genome size found within species and populations offers unique possibility to study ongoing processes of genome size evolution. In a Festuca pallens population with the constant chromosome number we documented recently a high variation in genome size (up to 1.188-fold) that we assume to be a probable consequence of recent retrotransposon activity. Here we tested this hypothesis by studying sequence diversity and copy number of some candidate retrotransposon types in several seedlings with constrasting genome sizes.
  • Variation in genome size found within species and populations offers unique possibility to study ongoing processes of genome size evolution. In a Festuca pallens population with the constant chromosome number we documented recently a high variation in genome size (up to 1.188-fold) that we assume to be a probable consequence of recent retrotransposon activity. Here we tested this hypothesis by studying sequence diversity and copy number of some candidate retrotransposon types in several seedlings with constrasting genome sizes. (en)
Title
  • Quantification of retrotransposon in Festuca pallens population varying in genome size
  • Quantification of retrotransposon in Festuca pallens population varying in genome size (en)
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  • Quantification of retrotransposon in Festuca pallens population varying in genome size
  • Quantification of retrotransposon in Festuca pallens population varying in genome size (en)
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  • RIV/00216224:14310/08:00024946!RIV10-MSM-14310___
http://linked.open...avai/riv/aktivita
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  • P(GP206/08/P222), P(LC06073), Z(MSM0021622416)
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  • 391221
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  • RIV/00216224:14310/08:00024946
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  • Ty1-copia; Ty3-gypsy; quantitative PCR (en)
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  • [620618742CC3]
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  • Copenhagen
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  • Copenhagen
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  • The Comparative Biology of Monocotyledons
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  • Bureš, Petr
  • Šmarda, Petr
  • Horová, Lucie
  • Šmerda, Jakub
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http://linked.open...n/vavai/riv/zamer
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  • University of Copenhagen
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  • 978-87-87772-03-7
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  • 14310
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