dorsal/arxiv
View SchemaUniversal spectrum for DNA base C+G frequency distribution in Human chromosomes 1 to 24
| Authors | A. M. Selvam |
|---|---|
| Categories | |
| ArXiv ID | physics/0701079 |
| URL | https://arxiv.org/abs/physics/0701079 |
Abstract
Power spectra of human DNA base C+G frequency distribution in all available contiguous sections exhibit the universal inverse power law form of the statistical normal distribution for the 24 chromosomes. Inverse power law form for power spectra of space-time fluctuations is generic to dynamical systems in nature and indicate long-range space-time correlations. A recently developed general systems theory predicts the observed non-local connections as intrinsic to quantumlike chaos governing space-time fluctuations of dynamical systems. The model predicts the following. (1) The quasiperiodic Penrose tiling pattern for the nested coiled structure of the DNA molecule in the chromosome resulting in maximum packing efficiency. (2) The DNA molecule functions as a unified whole fuzzy logic network with ordered two-way signal transmission between the coding and non-coding regions. Recent studies indicate influence of non-coding regions on functions of coding regions in the DNA molecule.
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"abstract": "Power spectra of human DNA base C+G frequency distribution in all available\ncontiguous sections exhibit the universal inverse power law form of the\nstatistical normal distribution for the 24 chromosomes. Inverse power law form\nfor power spectra of space-time fluctuations is generic to dynamical systems in\nnature and indicate long-range space-time correlations. A recently developed\ngeneral systems theory predicts the observed non-local connections as intrinsic\nto quantumlike chaos governing space-time fluctuations of dynamical systems.\nThe model predicts the following. (1) The quasiperiodic Penrose tiling pattern\nfor the nested coiled structure of the DNA molecule in the chromosome resulting\nin maximum packing efficiency. (2) The DNA molecule functions as a unified\nwhole fuzzy logic network with ordered two-way signal transmission between the\ncoding and non-coding regions. Recent studies indicate influence of non-coding\nregions on functions of coding regions in the DNA molecule.",
"arxiv_id": "physics/0701079",
"authors": [
"A. M. Selvam"
],
"categories": [
"physics.gen-ph",
"physics.bio-ph"
],
"title": "Universal spectrum for DNA base C+G frequency distribution in Human chromosomes 1 to 24",
"url": "https://arxiv.org/abs/physics/0701079"
},
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