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Analysing Network Models to Make Discoveries about Biological Mechanisms

Bibliographic Data

ID8399541
AuthorsWilliam Bechtel (0000-0001-6370-5321, University of California San Diego, corresponding author)
Year2019
Volume70
Issue2
Pages459-484
Publication date2019-06-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueThe British Journal for the Philosophy of Science (JOURNAL)
Journal identifiersISSN: 0007-0882 • E-ISSN: 1464-3537
PublisherOxford University Press (PUBLISHER • GB)
DOI10.1093/bjps/axx051
OpenAlexW2745534734
LanguageEN
Citations received7
References cited21

Systems biology provides alternatives to the strategies to developing mechanistic explanations traditionally pursued in cell and molecular biology and much discussed in accounts of mechanistic explanation. Rather than starting by identifying a mechanism for a given phenomenon and decomposing it, systems biologists often start by developing cell-wide networks of detected connections between proteins or genes and construe clusters of highly interactive components as potential mechanisms. Using inference strategies such as ‘guilt-by-association’, researchers advance hypotheses about functions performed of these mechanisms. I examine several examples of research on budding yeast, first on what are taken to be enduring networks and subsequently on networks that change as cells perform different activities or respond to different external conditions. 1. Introduction2. Analysing Networks under Static Conditions 2.1. Networks constructed from structural relations between proteins2.2. Networks constructed using information about functional interactions3. Analysing Changes in Networks across Conditions 3.1. Active sub-networks3.2. Differential network biology4. Conclusion

Biological network · Biology · Budding yeast · Cognitive science · Computational biology · Epistemology · Gene · Gene regulatory network · Inference · Mechanism (biology) · Modelling biological systems · Saccharomyces cerevisiae · Systems biology · Yeast · Artificial Intelligence · Bioinformatics and Genomic Networks · Computer Science · Gene Regulatory Network Analysis · Genetics · Microbial Metabolic Engineering and Bioproduction · Psychology · Theoretical Computer Science

  • Hierarchies and networks

    Open Access•Przemysław Nowakowski, Michał Piekarski•Studies in History and Philosophy…•2026

  • Emergence in Context

    Robert C Bishop, Michael Silberstein et al.•Emergence in Context•2022

  • Hierarchies, Networks, and Causality

    Open Access•Nathalie Gontier•Journal for General Philosophy of…•2021

  • Flat mechanisms

    Open Access•Peter Fazekas•Philosophical Studies•2022

  • From parts to mechanisms

    Open Access•William Bechtel•History & Philosophy of the Life…•2019

  • Resituating cognitive mechanisms within heterarchical networks controlling physiology and behavior

    Open Access•William Bechtel•Theory & Psychology•2019

  • Getting over Atomism

    Open Access•Daniel C Burnston•The British Journal for the…•2021

  • Gene Ontology

    Open Access•Michael Ashburner, Catherine A Ball et al.•Nature Genetics•2000

  • Network Motifs

    Open Access•Ron Milo, S Shen-Orr et al.•Science•2002

  • Explanation

    Open Access•William Bechtel, Adele Abrahamsen•Studies in History and Philosophy…•2005

  • Thinking about Mechanisms

    Open Access•Peter Machamer, Lindley Darden et al.•Philosophy of Science•2000

Unique citing works7
Citations per year1
Citation span2019 - 2026 (8)
Citation velocitycurrent
Highly citedNo
Citation typesNeutral: 6

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