E14: mating systems — monogamy vs promiscuity (mate-pool breadth)
A new analytic experiment on an orthogonal evolution-of-sex axis: not the recombination RATE (E9) but the population's mating STRUCTURE. Agents on a ring recombine with a second parent drawn from a window of breadth b (b->0 monogamous/isolation-by-distance, b=1 promiscuous/panmictic), under local selection, swept against NK ruggedness K. Finding: the optimal mate-pool breadth SHRINKS as skills get more entangled. Wide/promiscuous merging wins the champion on additive landscapes (K<=3, b=0.6), but on rugged ones (K>=6) it prematurely converges to a worse champion and an intermediate breadth (b~0.35) wins; pure monogamy over-fragments. Throughout, promiscuity monotonically lifts the population MEAN but destroys diversity and parallel exploration. The design rule extends E9: merge widely for additive skills, keep island-structured sub-populations for entangled ones — a merging-native axis the panmixia-assuming literature lacks. - src/knowledge/mating_system.py + experiment.py dispatch (kind: mating_system) - configs/layer1/E14.yaml (breadth x K sweep, 20 reps, bitwise-reproducible) - figures/plot_E14.py; results/E14/ (figure, README, manifest, resolved config) - tests/test_mating_system.py (+5, 147 green); make layer1 wired - folded into both papers (full + accessible) as the third §5 result Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
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configs/layer1/E14.yaml
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configs/layer1/E14.yaml
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experiment: E14
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kind: mating_system
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seed: 20260709
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n_replicates: 20
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# (Mating systems — monogamy vs promiscuity): a finite population of genotypes evolves on a Kauffman
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# NK landscape, recombining sexually, but the MATE-POOL BREADTH is swept. Agents sit on a ring; an
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# offspring's second parent is drawn from a window of half-width ~ breadth*N/2 around the focal parent,
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# and selection is LOCAL (offspring competes only against the incumbent at its ring position). breadth
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# -> 0 is monogamous / structured (local mating, isolation by distance); breadth = 1 is promiscuous /
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# panmictic (mate with anyone). Crossed with ruggedness K, this is the mating-system image of the E9
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# design rule. Expect: on smooth landscapes (K low) promiscuity maximises the best fitness (spread the
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# single good direction fastest); as ruggedness rises the OPTIMAL breadth SHRINKS toward an intermediate
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# value (full promiscuity prematurely converges below it); and diversity + occupied local optima are
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# monotonically destroyed by breadth at every K, most severely on rugged landscapes. Falsifier: the best
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# breadth is independent of K (no crossover), or promiscuity is best at every ruggedness.
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mating:
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L: 12 # loci (genotype space 2^L)
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N: 48 # population size (ring positions)
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breadth: 1.0 # mate-pool breadth in [0,1] (overwritten by the sweep)
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K: 0 # landscape ruggedness / epistasis (overwritten by the sweep)
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recomb_rate: 0.5 # per-gap crossover rate (near-free reassortment within a mating)
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mu: 0.003 # per-locus mutation rate
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generations: 60
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sweep:
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- param: mating.K
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values: [0, 3, 6, 10]
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- param: mating.breadth
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values: [0.03, 0.08, 0.17, 0.35, 0.6, 1.0]
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output: {dir: results/E14}
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