The Topological Model of Genome and Evolution (eBook)
546 Seiten
Springer Nature Singapore (Verlag)
9789819943180 (ISBN)
This book deals with the missing link in the domain of functional genomics viz. genomic architecture. It begins with a deconstruction of the Darwinian paradigm using the proposed model of modified involuted manifolds. It recasts the process of natural selection as a process of information transfer. Using a topological model, this book outlines a new genomic architecture. The key argument for this proposed model is that some such structuralism has always been implicit in genomics. The proposed model fits very well with the known genomic characteristics and allows to separate the regulatory genome from the transcriptive genomes. The model is capable of discerning modular architecture of genomes with different genomic functionalities existing in hierarchical relationships and demonstrates that genomes act as units of selection and as the environment for the individual genes which act as competing species. Towards the end, the book also examines the role of genomic evolution in cancer and the principles of natural selection and evolution of the genotype. The regulatory genome is also discussed, with an emphasis on its evolution and natural selection. It is a valuable source for researchers working in functional genomics, mathematical modeling in biology and evolutionary genomics.
Dr. Pradeep Chhaya has acted as a technical advisor to the pharmaceutical industry for thirty years. He has postdoctoral research experience. Prior to starting a consultancy, he was a chief executive and a partner of an information content company specialized in value addition to research published globally. He has spent the last fifteen writing research monographs on the foundation of science. At present, seven of his monographs are under various stages of publication. His domains of expertise include spacetime theories, quantum mechanics, mathematics, computations theory, cognitive architecture, molecular biology, medicinal chemistry and linguistics.
This book deals with the missing link in the domain of functional genomics viz. genomic architecture. It begins with a deconstruction of the Darwinian paradigm using the proposed model of modified involuted manifolds. It recasts the process of natural selection as a process of information transfer. Using a topological model, this book outlines a new genomic architecture. The key argument for this proposed model is that some such structuralism has always been implicit in genomics. The proposed model fits very well with the known genomic characteristics and allows to separate the regulatory genome from the transcriptive genomes. The model is capable of discerning modular architecture of genomes with different genomic functionalities existing in hierarchical relationships and demonstrates that genomes act as units of selection and as the environment for the individual genes which act as competing species. Towards the end, the book also examines the role of genomic evolution in cancer and the principles of natural selection and evolution of the genotype. The regulatory genome is also discussed, with an emphasis on its evolution and natural selection. It is a valuable source for researchers working in functional genomics, mathematical modeling in biology and evolutionary genomics.
| Erscheint lt. Verlag | 19.9.2023 |
|---|---|
| Zusatzinfo | XXIII, 546 p. 1 illus. |
| Sprache | englisch |
| Themenwelt | Naturwissenschaften ► Biologie ► Evolution |
| Naturwissenschaften ► Biologie ► Genetik / Molekularbiologie | |
| Schlagworte | Complexity in biological evolution • Evolutionary Genomics • Genomic Architecture • Reinterpretation of the Darwinian paradigm • Topological model of genomes |
| ISBN-13 | 9789819943180 / 9789819943180 |
| Informationen gemäß Produktsicherheitsverordnung (GPSR) | |
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