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  1. (1 other version)RNA as the substrate for epigenome‐environment interactions.John S. Mattick - 2010 - Bioessays 32 (7):642-642.
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  • Language and Communication as Universal Requirements for Life.Gunther Witzany - 2014 - In Kolb Vera (ed.), Astrobiology: An Evolutionary Approach. CRC Press. pp. 349-370.
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  • Rethinking quasispecies theory: From fittest type to cooperative consortia.Luis Villarreal & Guenther Witzany - 2013 - World Journal of Biological Chemistry 4:79-90.
    Recent investigations surprisingly indicate that single RNA "stem-loops" operate solely by chemical laws that act without selective forces, and in contrast, self-ligated consortia of RNA stem-loops operate by biological selection. To understand consortial RNA selection, the concept of single quasi-species and its mutant spectra as drivers of RNA variation and evolution is rethought here. Instead, we evaluate the current RNA world scenario in which consortia of cooperating RNA stem-loops are the basic players. We thus redefine quasispecies as RNA quasispecies consortia (...)
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  • The Addiction Module as a Social Force.Luis P. Villarreal - 2012 - In Witzany Guenther (ed.), Viruses: Essential Agents of Life. Dordrecht: Springer. pp. 107--145.
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  • Introduction: Key Levels of Biocommunication of Bacteria.Guenther Witzany - 2010 - In Günther Witzany (ed.), Biocommunication in Soil Microorganisms. Springer. pp. 1--34.
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  • Defining 'life'.Carol E. Cleland - unknown
    There is no broadly accepted definition of ‘life.’ Suggested definitions face problems, often in the form of robust counter-examples. Here we use insights from philosophical investigations into language to argue that defining ‘life’ currently poses a dilemma analogous to that faced by those hoping to define ‘water’ before the existence of molecular theory. In the absence of an analogous theory of the nature of living systems, interminable controversy over the definition of life is inescapable.
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  • Natural genome-editing competences of viruses.Günther Witzany - 2006 - Acta Biotheoretica 54 (4):235-253.
    It is becoming increasingly evident that the driving forces of evolutionary novelty are not randomly derived chance mutations of the genetic text, but a precise genome editing by omnipresent viral agents. These competences integrate the whole toolbox of natural genetic engineering, replication, transcription, translation, genomic imprinting, genomic creativity, enzymatic inventions and all types of genetic repair patterns. Even the non-coding, repetitive DNA sequences which were interpreted as being ancient remnants of former evolutionary stages are now recognized as being of viral (...)
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  • The Viral Origins of Telomeres and Telomerases and their Important Role in Eukaryogenesis and Genome Maintenance.Guenther Witzany - 2008 - Biosemiotics 1 (2):191-206.
    Whereas telomeres protect terminal ends of linear chromosomes, telomerases identify natural chromosome ends, which differ from broken DNA and replicate telomeres. Although telomeres play a crucial role in the linear chromosome organization of eukaryotic cells, their molecular syntax most probably descended from an ancient retroviral competence. This indicates an early retroviral colonization of large double-stranded DNA viruses, which are putative ancestors of the eukaryotic nucleus. This contribution demonstrates an advantage of the biosemiotic approach towards our evolutionary understanding of telomeres, telomerases, (...)
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  • Editorial: Genome Invading RNA Networks.L. P. Villarreal & Guenther Witzany - 2018 - Frontiers in Microbiology 9:1-3.
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  • (1 other version)Key Levels of Biocommunication.Guenther Witzany - 2016 - In Richard Gordon & Joseph Seckbach (eds.), Biocommunication: Sign-mediated interactions between cells and organisms. World Scientific. pp. 37-61.
    Organisms actively compete for environmental resources. They assess their surroundings, estimate how much energy they need for particular goals, and then realize the optimum variant. They take measures to control certain environmental resources. They perceive themselves and can distinguish between “self” and “non-self.” Current empirical data on all domains of life indicate that unicellular organisms such as bacteria, archaea, giant viruses, and protozoa as well as multicellular organisms such as animals, fungi, and plants coordinate and organize their essential life functions (...)
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  • Biocommunication of Ciliates.Guenther Witzany & Mariusz Nowacki (eds.) - 2016 - Dordrecht: Springer.
    This is the first coherent description of all levels of communication of ciliates. Ciliates are highly sensitive organisms that actively compete for environmental resources. They assess their surroundings, estimate how much energy they need for particular goals, and then realise the optimum variant. They take measures to control certain environmental resources. They perceive themselves and can distinguish between ‘self’ and ‘non-self’. They process and evaluate information and then modify their behaviour accordingly. These highly diverse competences show us that this is (...)
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  • Life is physics and chemistry and communication.Gunther Witzany - 2015 - In Guenther Witzany (ed.), DNA Habitats and Their RNA Inhabitants. pp. 1-9.
    Manfred Eigen extended Erwin Schroedinger’s concept of “life is physics and chemistry” through the introduction of information theory and cybernetic systems theory into “life is physics and chemistry and information.” Based on this assumption, Eigen developed the concepts of quasispecies and hypercycles, which have been dominant in molecular biology and virology ever since. He insisted that the genetic code is not just used metaphorically: it represents a real natural language.However, the basics of scientific knowledge changed dramatically within the second half (...)
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  • Introduction: Keylevels of Biocommunication in Fungi.Guenther Witzany - 2012 - In Biocommunication of Fungi. Dordrecht: Springer. pp. 1--18.
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  • Megavirales Composing a Fourth Domain of Life: Mimiviridae and Marseilleviridae.Philippe Colson & Didier Raoult - 2012 - In Witzany Guenther (ed.), Viruses: Essential Agents of Life. Dordrecht: Springer. pp. 217--244.
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  • From the "'logic of Molecular Syntax' to Molecular Pragmatism. Explanatory deficits in Manfred Eigen's concept of language and communication.Guenther Witzany - 1995 - Evolution and Cognition 2 (1):148-168.
    Manfred Eigen employs the terms language and communication to explain key recombination processes of DNA as well as to explain the self-organization of human language and communication: Life processes as well as language and communication processes are governed by the logic of a molecular syntax, which is the exact depiction of a principally formalizable reality. The author of the present contribution demonstrates that this view of Manfred Eigen’s cannot be sufficiently substantiated and that it must be supplemented by an approach (...)
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  • From Viruses to Genes: Syncytins.Philippe Pérot, Pierre-Adrien Bolze & François Mallet - 2012 - In Witzany Guenther (ed.), Viruses: Essential Agents of Life. Dordrecht: Springer. pp. 325--361.
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  • Serial endosymbiotic theory (set): The biosemiotic update.Günther Witzany - 2006 - Acta Biotheoretica 54 (2):103-117.
    The Serial Endosymbiotic Theory explains the origin of nucleated eukaryotic cells by a merging of archaebacterial and eubacterial cells. The paradigmatic change is that the driving force behind evolution is not ramification but merging. Lynn Margulis describes the symbiogenetic processes in the language of mechanistic biology in such terms as “merging”, “fusion”, and “incorporation”. Biosemiotics argues that all cell-cell interactions are (rule-governed) sign-mediated interactions, i.e., communication processes. As the description of plant communication demonstrates, the biosemiotic approach is not limited to (...)
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  • Biocommunication of Fungi.Guenther Witzany (ed.) - 2012 - Dordrecht: Springer.
    Fungi are sessile, highly sensitive organisms that actively compete for environmental resources both above and below the ground. They assess their surroundings, estimate how much energy they need for particular goals, and then realise the optimum variant. They take measures to control certain environmental resources. They perceive themselves and can distinguish between ‘self’ and ‘non-self’. They process and evaluate information and then modify their behaviour accordingly. These highly diverse competences show us that this is possible owing to sign-mediated communication processes (...)
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  • The DNA Habitat and its RNA Inhabitants.Luis Villarreal & Guenther Witzany - 2013 - Genomics Insights 6:1-12.
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  • RNA editing: a driving force for adaptive evolution?Willemijn M. Gommans, Sean P. Mullen & Stefan Maas - 2009 - Bioessays 31 (10):1137-1145.
    Genetic variability is considered a key to the evolvability of species. The conversion of an adenosine (A) to inosine (I) in primary RNA transcripts can result in an amino acid change in the encoded protein, a change in secondary structure of the RNA, creation or destruction of a splice consensus site, or otherwise alter RNA fate. Substantial transcriptome and proteome variability is generated by A‐to‐I RNA editing through site‐selective post‐transcriptional recoding of single nucleotides. We posit that this epigenetic source of (...)
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