Information, Coding, and Biological Function: The Dynamics of Life

dc.contributor.authorCartwright, Julyan
dc.contributor.authorGrácio, Clara
dc.contributor.authorCejková, Jitka
dc.contributor.authorFimmel, Elena
dc.contributor.authorGonzalez, Diego
dc.contributor.authorPiro, Oreste
dc.contributor.authorMišic, Natasa
dc.contributor.authorGiannerini, Simone
dc.contributor.authorHouwing-Duister, Jeanine
dc.contributor.authorGoracci, Greta
dc.contributor.authorMatic, Dragan
dc.contributor.authorMulder, Frans
dc.contributor.editorAlan Dorin
dc.date.accessioned2026-02-23T11:20:16Z
dc.date.available2026-02-23T11:20:16Z
dc.date.issued2024
dc.description.abstractIn the mid-20th century, two new scientific disciplines emerged forcefully: molecular biology and informationcommunication theory. At the beginning, cross-fertilization was so deep that the term genetic code was universally accepted for describing the meaning of triplets of mRNA (codons) as amino acids. However, today, such synergy has not taken advantage of the vertiginous advances in the two disciplines and presents more challenges than answers. These challenges not only are of great theoretical relevance but also represent unavoidable milestones for next-generation biology: from personalized genetic therapy and diagnosis to Artificial Life to the production of biologically active proteins. Moreover, the matter is intimately connected to a paradigm shift needed in theoretical biology, pioneered a long time ago, that requires combined contributions from disciplines well beyond the biological realm. The use of information as a conceptual metaphor needs to be turned into quantitative and predictive models that can be tested empirically and integrated in a unified view. Successfully achieving these tasks requires a wide multidisciplinary approach, including Artificial Life researchers, to address such an endeavour.por
dc.identifier.authoremailJulyan Cartwright <julyan.cartwright@csic.es>
dc.identifier.authoremailmgracio@uevora.pt
dc.identifier.authoremailcejkovaj@vscht.cz
dc.identifier.authoremaile.fimmel@hs-mannheim.de
dc.identifier.authoremaildiegoluis.gonzalez@cnr.it
dc.identifier.authoremailoreste.piro@uib.es
dc.identifier.authoremailnatasa.misic@gmail.com
dc.identifier.authoremailsimone.giannerini@uniud.it
dc.identifier.authoremailJ.Duistermaat@math.ru.nl
dc.identifier.authoremailGreta.Goracci@unibz.it
dc.identifier.authoremaildragan.matic@pmf.unibl.org
dc.identifier.authoremailmailto:franz.mulder@jku.at
dc.identifier.citationJulyan H. E. Cartwright, Jitka Čejková, Elena Fimmel, Simone Giannerini, Diego Luis Gonzalez, Greta Goracci, Clara Grácio, Jeanine Houwing-Duistermaat, Dragan Matić, Nataša Mišić, Frans A. A. Mulder, Oreste Piro; Information, Coding, and Biological Function: The Dynamics of Life. Artif Life 2024; 30 (1): 16–27por
dc.identifier.doidoi: 10.1162/artl_a_00432por
dc.identifier.issn1530-9185
dc.identifier.scientificarea721por
dc.identifier.urihttp://hdl.handle.net/10174/41364
dc.language.isoengpor
dc.peerreviewedyespor
dc.publisherMIT Press Journalspor
dc.rightsopenAccesspor
dc.subjectComplex biological systemspor
dc.subjectnonlinear dynamics,por
dc.subjectclassical and quantum informationpor
dc.subjectbiological codespor
dc.subjecttheoretical biologypor
dc.titleInformation, Coding, and Biological Function: The Dynamics of Lifepor
dc.typearticlepor

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