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A chromosome-scale genome assembly and dense genetic map for Xenopus tropicalis

Author(s)
Mitros, ThereseLyons, Jessica B.Session, Adam M.Jenkins, JerryShu, ShengquiangKwon, TaejoonLane, MauraNg, ConnieGrammer, Timothy C.Khokha, Mustafa K.Grimwood, JaneSchmutz, JeremyHarland, Richard M.Rokhsar, Daniel S.
Issued Date
2019-08
DOI
10.1016/j.ydbio.2019.03.015
URI
https://scholarworks.unist.ac.kr/handle/201301/26852
Fulltext
https://www.sciencedirect.com/science/article/pii/S0012160618303890?via%3Dihub
Citation
DEVELOPMENTAL BIOLOGY, v.452, no.1, pp.8 - 20
Abstract
The Western clawed frog Xenopus tropicalis is a diploid model system for both frog genetics and developmental biology, complementary to the paleotetraploid X. laevis. Here we report a chromosome-scale assembly of the X. tropicalis genome, improving the previously published draft genome assembly through the use of new assembly algorithms, additional sequence data, and the addition of a dense genetic map. The improved genome enables the mapping of specific traits (e.g., the sex locus or Mendelian mutants) and the characterization of chromosome-scale synteny with other tetrapods. We also report an improved annotation of the genome that integrates deep transcriptome sequence from diverse tissues and stages. The exon-intron structures of these genes are highly conserved relative to both X. laevis and human, as are chromosomal linkages (“synteny”) and local gene order. A network analysis of developmental gene expression will aid future studies.
Publisher
Academic Press
ISSN
0012-1606
Keyword (Author)
Genome assemblyGenetic mappingComparative genomicsPigmentationSex determinationGene expression analysis
Keyword
FUNCTIONAL GENOMICSSEX DETERMINATIONPROTEIN FAMILIESDM-WEXPRESSIONEVOLUTIONLAEVISFROGSDATABASEREVEALS

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