Abstract
Premise of the study: The use of genome skimming allows systematists to quickly generate large data sets, particularly of sequences in high abundance (e.g., plastomes); however, researchers may be overlooking data in low abundance that could be used for phylogenetic or evo-devo studies. Here, we present a bioinformatics approach that explores the low-abundance portion of genome-skimming next-generation sequencing libraries in the fan-flowered Goodeniaceae. Methods: Twenty-four previously constructed Goodeniaceae genome-skimming Illumina libraries were examined for their utility in mining low-copy nuclear genes involved in floral symmetry, specifically the CYCLOIDEA (CYC)-like genes. De novo assemblies were generated using multiple assemblers, and BLAST searches were performed for CYC1, CYC2, and CYC3 genes. Results: Overall Trinity, SOAPdenovo-Trans, and SOAPdenovo implementing lower k-mer values uncovered the most data, although no assembler consistently outperformed the others. Using SOAPdenovo-Trans ac...
Cite
CITATION STYLE
Berger, B. A., Han, J., Sessa, E. B., Gardner, A. G., Shepherd, K. A., Ricigliano, V. A., … Howarth, D. G. (2017). The unexpected depths of genome‐skimming data: A case study examining Goodeniaceae floral symmetry genes 1. Applications in Plant Sciences, 5(10). https://doi.org/10.3732/apps.1700042
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.