Saturday, August 1, 2026

Information-theoretic Limits on Programmatic Specification of Biological Systems

Abstract of the post linked in the tweet:

The central problem of biology is the origin of biological organization. We show, using informa- tion theory, that an organism does not contain enough organism-specific information to specify its own fully functioning microscopic organization. The organized machinery of life is therefore not the execution of a fully prewritten organism-specific program under favorable conditions. Rather, it is the compilation of a coarse organism-specific specification by a shared physical background that is constitutive of biological organization. We formalize this as a coarse-graining information threshold on biological specification, with two complementary entropy faces — a Shannon face controlling stochastic generation and a Hartley face controlling zero-error deterministic addressability. Above the threshold, organism-controlled information is sufficient to specify structural and functional ensembles; below it, programmed microstate determinism is impossible: deterministic addressability fails by pigeonhole, and any algorithm producing sub- threshold outputs must consume runtime randomness proportional to the information deficit. The threshold follows from two information-theoretic constraints — finite specification capacity and causal locality — supplemented by a mixing lemma showing that initial-condition information decays exponentially under thermal dynamics. We establish the threshold as a family of maximal capacity-compatible coarse-grainings, distinguish the proven impossibility below the threshold from the empirically realized coarse mappings above it, and locate the threshold empirically through worked cases of protein folding, E. coli, Drosophila early development, and C. elegans, together with computational verification using AlphaFold-2, the JCVI-syn3A 4D whole-cell simulation, and canonical stochastic gene network models. We further show that no known naturally realized environmental channel can close the gap. The result rules out programmed microstate determinism while leaving physical determinism untouched, reframes the genome as a generator specification rather than a trajectory program, and unifies gene-centric, developmental, and field-theoretic (bioelectric, morphogenetic, and related continuum) views of biological specification under a single coarse-graining framework.

1 comment:

  1. Bill, perfect timing to post "Information-theoretic Limits on Programmatic Specification of Biological Systems".

    I've sent to a professor of microbiology i know. He will greatly appreciate the paper.

    But. Spooky action at a distance?!

    I think you will appreciate- ymmv - these two astrophysicists. Both agree that under our known fundamental building blocks is... nothing science currently see - null - and so spooky action at a distance is somehow a necessary information carrier.

    "The History of Reality: What is real and is God behind it all?

    Every civilisation that's ever existed has asked the same question: what's actually real?  
    Plato made the point that it's more than we can see with our own eyes. 
    Then came Newton, and reality became a clock with time. 
    Then came Einstein, and time started to bend. Then came quantum mechanics — and reality gets stranger still!
    Two astrophysicists go back to the beginning of humanity to ask "what did humans even mean by "real", before anyone had the maths to check?" 
    And is there a creator behind it all?
    GUESTS:
    Geraint Lewis, Professor of astrophysics at the University of Sydney, has spent his career hunting dark energy and dark matter — and doesn't believe in a God at the end of it. His new book is The Shortest History of Reality.

    His old friend and former student – now astrophysicist himself at Western Sydney University is Dr Luke Barnes, who works on the very same equations — and continues to believe it points to a creator. 
    https://www.abc.net.au/listen/programs/godforbid/god-forbid/106907900

    SD

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