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Data from: Genetic analyses in Lake Malawi cichlids identify new roles for Fgf signaling in scale shape variation

Albertson, R. Craig; Kawasaki, Kenta; Tetrault, Emily; Powder, Kara

Elasmoid scales are the most common epithelial appendage among vertebrates, however an understanding of the genetic mechanisms that underlie variation in scale shape is lacking. Using an F2 mapping cross between morphologically distinct cichlid species, we identified >40 QTL for scale shape at different body positions. We show that while certain regions of the genome regulate variation in multiple scales, most are specific to scales at distinct positions. This suggests a degree of regional modularity in scale development. We also identified a single QTL for variation in scale shape disparity across the body. Finally, we screened a QTL hotspot for candidate loci, and identified the Fgf receptor fgfr1b as a prime target. Quantitative rtPCR and small molecule manipulation support a role for Fgf signaling in shaping cichlid scales. While Fgfs have previously been implicated in scale loss, these data reveal new roles for the pathway in scale shape variation.

Funding provided by: National Science Foundation
Crossref Funder Registry ID: http://dx.doi.org/10.13039/100000001
Award Number: IOS-1054909

Files (398.7 kB)
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Cichlid_Scale_qPCR_Data.csv
md5:bd6f090cb3a64698c15ba62e535c7126
811 Bytes Download
F2_scale1-6.TPS
md5:eba8cfe0870d1efad86f66fc34010f26
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LF_TRC_parental_scale1-6.TPS
md5:498e92733db175df3c30aff5a96b9bc5
23.4 kB Download
LFxTRC_F2_scale_pheno_data.csv
md5:8fc9c9b3f047592f99cb90ab54181481
76.8 kB Download
Parental_F2_Residuals_data.csv
md5:436b0b05cc16a619325773de909eea0f
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Parental_F2_sex_SL.csv
md5:02799c634565f34196257f3f73ee43bb
4.2 kB Download
parental_F2scale_number.csv
md5:c0a017682a492688d3fa34d670e90724
3.2 kB Download
SU5402_treatment.csv
md5:10324435e74c78c19358f216a9009582
4.6 kB Download
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