Having studied biology and genetics this is common sense to me. Genetic systems are probabilistic chemical systems where everything influences everything to varying degrees in parallel. They are nothing like the linear assemblies of modules that humans prefer to engineer.
Common sense from the machine learning side too! (that said, the ex-physicist in me would like to remind everyone that science and reality are not required to match your common sense) If true, this means that evolution could look more like stochastic gradient descent, and less like brute force luck plus survival of the fittest.
Theory Suggests That All Genes Affect Every Complex Trait
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Re: Theory Suggests That All Genes Affect Every Complex Trait
#12Earlier quoted context omitted.
Common sense from the machine learning side too! (that said, the ex-physicist in me would like to remind everyone that science and reality are not required to match your common sense) If true, this means that evolution could look more like stochastic gradient descent, and less like brute force luck plus survival of the fittest.
From an evolution point of view, it actually just means that selection happens at the organismal level, not the gene level.
Re: Theory Suggests That All Genes Affect Every Complex Trait
#13Having studied biology and genetics this is common sense to me. Genetic systems are probabilistic chemical systems where everything influences everything to varying degrees in parallel. They are nothing like the linear assemblies of modules that humans prefer to engineer.
I'm really glad that this mental model I've built up seems to reflect reality. The idea of neatly editing specific genes to produce a desired result always sat with me as the pinnacle of human hubris. The more I learn about Biology the more I just throw up my hands and say "magic".
Re: Theory Suggests That All Genes Affect Every Complex Trait
#14This is a paper that I'm glad was published (maybe not Cell, but somewhere), because it presents an interesting and pretty clear theory. At the same time, it seems like it's fairly clearly falsifiable almost on its face, because there are many genetic disorders involving clear, substantial mutations (in a chromosomal topography sense) that are circumscribed in their effects, at least to one extent or another. I think…
Re: Theory Suggests That All Genes Affect Every Complex Trait
#15R.A. Fisher was right, as usual.
Are there any communities like HN, but focused on evolution, population genetics, etc. that you would recommend?
Re: Theory Suggests That All Genes Affect Every Complex Trait
#16Re: Theory Suggests That All Genes Affect Every Complex Trait
#17There's a couple of things that are slowly changing in the thinking of biologists related to this: 1. Genes are not loci. The "one gene = one protein" dogma of molecular biology (expanded: "one trait selectable in breeding experiments = one compact locus of the chromosome") was a priori wrong, but it's taken us decades to undo the damage. We were led astray because there are traits that do map to a single locus, or s…
Could you elaborate on what you mean by ‘evolution doesn’t abstract’? I did not totally understand what the example given had to do with abstraction
Re: Theory Suggests That All Genes Affect Every Complex Trait
#18Having studied biology and genetics this is common sense to me. Genetic systems are probabilistic chemical systems where everything influences everything to varying degrees in parallel. They are nothing like the linear assemblies of modules that humans prefer to engineer.
>Having studied biology and genetics this is common sense to me. Genetic systems are probabilistic chemical systems where everything influences everything to varying degrees in parallel. They are nothing like the linear assemblies of modules that humans prefer to engineer. I'm really glad that this mental model I've built up seems to reflect reality. The idea of neatly editing specific genes to produce a desired resu…
See, for example: Gene Therapy in a Patient with Sickle Cell Disease https://www.nejm.org/doi/full/10.1056/NEJMoa1609677
Re: Theory Suggests That All Genes Affect Every Complex Trait
#19Earlier quoted context omitted.
>Having studied biology and genetics this is common sense to me. Genetic systems are probabilistic chemical systems where everything influences everything to varying degrees in parallel. They are nothing like the linear assemblies of modules that humans prefer to engineer. I'm really glad that this mental model I've built up seems to reflect reality. The idea of neatly editing specific genes to produce a desired resu…
>The idea of neatly editing specific genes to produce a desired result always sat with me as the pinnacle of human hubris. See, for example: Gene Therapy in a Patient with Sickle Cell Disease https://www.nejm.org/doi/full/10.1056/NEJMoa1609677
Re: Theory Suggests That All Genes Affect Every Complex Trait
#20There's a couple of things that are slowly changing in the thinking of biologists related to this: 1. Genes are not loci. The "one gene = one protein" dogma of molecular biology (expanded: "one trait selectable in breeding experiments = one compact locus of the chromosome") was a priori wrong, but it's taken us decades to undo the damage. We were led astray because there are traits that do map to a single locus, or s…