Data for: Patterns of intracolumnar size variation inform the heterochronic mechanisms underlying extreme body shape divergence in microcephalic sea snakes
<div>Morphometric dataset comprising vertebral size data for pre-cloacal vertebrae for neonates and adults of three species of sea snake (<i>Hydrophis macdowelli, H. obscurus, </i>and<i> H. curtus</i>)</div><div><b><br></b></div><div><b>File list:</b><br></div><div># R script<br></div><div>Analyses.R </div><div># Data files:</div><div>H_curtus_FMNH_202011.csv</div><div>H_curtus_FMNH_202032.csv</div><div>H_curtus_FMNH_202086.csv</div><div>H_curtus_QM_J11175.csv</div><div>H_macdowelli_QM_J22453.csv</div><div>H_macdowelli_QM_J47243.csv</div><div>H_macdowelli_QM_J93156.csv</div><div>H_macdowelli_SAM_R24236.csv</div><div>H_obscurus_ZMUC_R661244.csv</div><div>H_obscurus_ZMUC_R661253.csv</div><div>H_obscurus_ZMUC_R661255.csv</div><div># Metadata</div><div>ontovert.csv</div>
Funding
DVCR Research Fellowship from University of Adelaide
Identifying the genes and population histories that drive rapid adaptive change and speciation