Data from: Many-to-one form-to-function mapping weakens parallel morphological evolution

Thompson C, Ahmed N, Veen T, Peichel CL, Hendry AP, Bolnick DI, Stuart YE

Date Published: August 18, 2017

DOI: https://doi.org/10.5061/dryad.5b1k0

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Title main.cole
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Description Main R script to run first, to load packages, and set up directory structure, along with other housekeeping.
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Title functions.cole
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Description Contains functions for analysis. Is sourced by main.cole
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Title figures.cole
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Description Contains figure functions. Is sourced by main.R
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Title analyses.cole_MS_161115
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Description analysis code, used to generate the statistics, analyses, and output in the manuscript. requires main.cole to be run first.
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Title CalculateKTCode
Downloaded 5 times
Description Calculates Kinematic Transmission for the Opercular 4-bar system.
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Title Complexity Simulation
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Description Code for the simulation that compares levels of many-to-one mapping across biomechanical systems.
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Title 03.dietCntnt_fromGitHub_161013
Downloaded 7 times
Description Gut content data.
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Title Results_all_R_SI_KT_sexSL
Downloaded 6 times
Description Biomechanical trait measurements.
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When using this data, please cite the original publication:

Thompson CJ, Ahmed NI, Veen T, Peichel CL, Hendry AP, Bolnick DI, Stuart YE (2017) Many-to-one form-to-function mapping weakens parallel morphological evolution. Evolution, online in advance of print. https://doi.org/10.1111/evo.13357

Additionally, please cite the Dryad data package:

Thompson C, Ahmed N, Veen T, Peichel CL, Hendry AP, Bolnick DI, Stuart YE (2017) Data from: Many-to-one form-to-function mapping weakens parallel morphological evolution. Dryad Digital Repository. https://doi.org/10.5061/dryad.5b1k0
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