" The discovery of a simple numerical formula for the projection of all the atomic mass of life-sustaining CONHSP bioatoms leads to the emergence of a set of Nested CODES unifying all the biological, genetic and genomic components by unifying them from bioatoms up to 'to whole genomes. In particular, we demonstrate the existence of a digital meta-code common to the three languages of biology that are RNA, DNA and amino acid sequences. Through this meta-code, genomic and proteomic images appear almost analogous and correlated. The analysis of the textures of these images then reveals a binary code as well as an undulatory code whose analysis on the human genome makes it possible to predict the alternating bands constituting the cariotypes of the chromosomes. The application of these codes to perspectives in astrobiology, cancer, and specifically in INFORMATION THEORY with the emergence of binary codes and regions of local stability (voting process), whose fractal nature we demonstrate, is illustrated.
In this theoretical discovery of a law of life, it is MATHEMATICS (Geometry and Number) that UNIFY 3 universes as complementary as ATOMIC MASS, WAVE, and INFORMATION (DNA, RNA and Amino Acids)." {Credits 1} " On the one hand, we discover a generic law organizing the entirety of living molecules - the PI-masses code (atomic mass code -I-).
On the other hand, this law is optimal only in the case of the average atomic masses.
But the real world of biology is not a world of average atomic masses but a world of atomic masses mono-isotopes.
This would mean that this optimal law is only a kind of "inaccessible star" as Cervantes would have written ...
But, nevertheless, the average atomic masses exist on earth since they constitute the weighted average of the billions of isotopes constituting each one of the populations of atoms.
Then would it mean that life implies, by the very nature of its laws, that its molecules and atoms rely on diversity and multiplicity, perhaps even on the equilibrium and collective co-operation between these billions of atoms?" {Credits 1} " The law of numerical projection atomic mass code (-I-) behaves like a kind of ideal law, objective in the sense defined by Jacques Monod [Knopf (1971)]. Because it is optimal for the average atomic masses of bioatoms, it is inaccessible in the real universe which is only individual isotopes. Thus this law, if the nature of the living "seeks" to approach it in search of better equilibrium and stability, will compel to seek more DIVERSITY. Diversity of isotopes of the same atom, diversity of isotope changes over time. We can make an analogy with the electron layers of atoms: they are only densities of probability, an individual electron only reaching by chance this ideal value. Here it is the same: this optimal ideal code for the average atomic mass that never exists in the real world of isotopes will force them to diversify and self-organize for more stability ... as if the forced plan of evolution towards more complexity (molecules, RNA, DNA, amino acids) was already a necessity, an implication, in the sense dear to Nobel prizewinner Jacques Monod.
After successive applications of the first and second codes (-I- and -II-) to any genomic double stranded DNA sequence, the texture analysis (roughness) of the genomic and proteomic images highlights:
• a modulation in the form of a ANALOGIC distribution (Figure 9) for the Genomic code. • a modulation in the form of a 0/1 BINARY distribution (Figure 10) for the Proteomic code.
Everything happens as if: two different languages (genomics and proteomics) produced two very similar images but radically different roughnesses: the first (genomics) would be analogous to an amplitude modulation, while the second one (proteomics) would be analogous to a frequency modulation (to use the analogy of radio sounds and waves). We can even say that the second would correspond to a coding of these sounds in binary form as we find them in compact disk or in the current laser based digital coding of information" {Credits 1} " More generally, since 1991, we have described the presence of Phi the Golden ratio and that of Fibonacci numbers in DNA, genes, chromosomes and genomes in many forms [Perez (1997), Pellionisz et al. (2012), Perez (2010), Perez (2011), Perez (2011), Perez (2013), Rapoport and Perez (2018), Perez (2017), Perez (n.d.)].
Finally, Golden ratio and Fibonacci numbers are an evidence in DNA numerical structure, see by example these « 34 » scale invariance fractal occurrences of Fibonacci number 34:
Recently published, in [Singh P. et al. (2018)], in « DNA as an Electromagnetic Fractal Cavity Resonator: Its Universal Sensing and Fractal Antenna Behavior », P. Singh et al. Simulated the DNA geometry using biomaterials, they write : « then, they demonstate that 3D-A-DNA structure behaves as a fractal antenna, which can interact with the electromagnetic fields over a wide range of frequencies. Using the lattice details of human DNA, we have modeled radiation of DNA as a helical antenna. The DNA structure resonates with the electromagnetic waves at 34 GHz ».
Thus, the reader can now reflect on this strange trilogy:
• Each DNA helix rises about 34 angstroms during each complete turn. • We have also demonstrated that the chromosomes 4 of Sapiens and Neanderthal have a standing wave of 34 nucleotides [Perez (2017)]. • Singh et al. demonstrate in 2017 that a standingwave of 34 Giga Hertz would organize DNA molecules [Singh P. et al. (2018)] ...:
Finally, DNA, mathematics [He andPetoukhov (2017)] and stationary waves [Montagnier L. et al, (2017), Weiss and Weiss (2003)] form a rich intersection, which many publications affirm." {Credits 1} {Credits 1} 🎪 Perez, J. C., & Montagnier, L. . (2021). Six Fractal Codes of Life From Bioatoms Atomic Mass to Chromosomes Numerical Standing Waves: Three Breakthoughs in Astrobiology, Cancers and Artificial Intelligence. International Journal of Research -granthaalayah, 9(9), 133–191. Https://doi.org/10.29121/granthaalayah.v9.i9.2021.4191. © 2021 The Author(s). This article is licensed under a Creative Commons Attribution 4.0 International License. |