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DNA sequences classification and computation scheme based on the symmetry principle
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  • Published: 23 April 2009

DNA sequences classification and computation scheme based on the symmetry principle

  • Xiao-Gang Song1 &
  • Wen-Yuan Qiu2 

Nature Precedings (2009)Cite this article

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Abstract

The DNA sequences containing multifarious novel symmetrical structure frequently play crucial role in how genomes work. Here we present a new scheme for understanding the structural features and potential mathematical rules of symmetrical DNA sequences using a method containing stepwise classification and recursive computation. By defining the symmetry of DNA sequences, we classify all sequences and conclude a series of recursive equations for computing the quantity of all classes of sequences existing theoretically; moreover, the symmetries of the typical sequences at different levels are analyzed. The classification and quantitative relation demonstrate that DNA sequences have recursive and nested properties. The scheme may help us better discuss the formation and the growth mechanism of DNA sequences because it has a capability of educing the information about structure and quantity of longer sequences according to that of shorter sequences by some recursive rules. Our scheme may provide a new stepping stone to the theoretical characterization, as well as structural analysis, of DNA sequences.

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Authors and Affiliations

  1. Chemistry Department, State Key Laboratory of Applied Organic Chemistry, Lanzhou University https://www.nature.com/nature

    Xiao-Gang Song

  2. Physical Chemistry, State Key Laboratory of Applied Organic Chemistry, Lanzhou University https://www.nature.com/nature

    Wen-Yuan Qiu

Authors
  1. Xiao-Gang Song
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  2. Wen-Yuan Qiu
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Corresponding author

Correspondence to Wen-Yuan Qiu.

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Cite this article

Song, XG., Qiu, WY. DNA sequences classification and computation scheme based on the symmetry principle. Nat Prec (2009). https://doi.org/10.1038/npre.2009.3116.1

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  • Received: 21 April 2009

  • Accepted: 23 April 2009

  • Published: 23 April 2009

  • DOI: https://doi.org/10.1038/npre.2009.3116.1

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Keywords

  • DNA symmetry
  • recursive
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