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Laslo, M.

Publications and source records attributed to Laslo, M..

2 recordsLinked to original sources

Conserved chromatin and repetitive patterns reveal slow genome evolution in frogs

Frogs are an ecologically diverse and phylogenetically ancient group of living amphibians that include important vertebrate cell and developmental model systems, notably the genus Xenopus. Here we report a high-quality reference genome sequence for the western clawed frog, Xenopus tropicalis, along with draft chromosome-scale sequences of three distantly related emerging model frog species, Eleutherodactylus coqui, Engystomops pustulosus and Hymenochirus boettgeri. Frog chromosomes have remained remarkably stable since the Mesozoic Era, with limited Robertsonian (i.e., centric) translocations and end-to-end fusions found among the smaller chromosomes. Conservation of synteny includes conservation of centromere locations, marked by centromeric tandem repeats associated with Cenp-a binding, surrounded by pericentromeric LINE/L1 elements. We explored chromosome structure across frogs, using a dense meiotic linkage map for X. tropicalis and chromatin conformation capture (HiC) data for all species. Abundant satellite repeats occupy the unusually long ([~]20 megabase) terminal regions of each chromosome that coincide with high rates of recombination. Both embryonic and differentiated cells show reproducible association of centromeric chromatin, and of telomeres, reflecting a Rabl configuration similar to the "bouquet" structure of meiotic cells. Our comparative analyses reveal 13 conserved ancestral anuran chromosomes from which contemporary frog genomes were constructed.

genomics↗

Distinct developmental mechanisms influence sexual dimorphisms in the milkweed bug Oncopeltus fasciatus

Sexual dimorphism is common in animals. The most complete model of sex determination comes from Drosophila melanogaster, where the relative dosage of autosomes and X chromosomes leads indirectly to sex-specific transcripts of doublesex. Female Dsx interacts with a mediator complex protein encoded by intersex to activate female development. In males the transcription factor encoded by fruitless promotes male-specific behavior. The genetics of sex determination have been examined in a small number of other insects, yet several questions remain about the pleisomorphic state. Is doublesex required for female and male development? Is fruitless conserved in male behavior or morphology? Are other components such as intersex functionally conserved? To address these questions, we report expression and functional tests of doublesex, intersex and fruitless in the hemipteran Oncopeltus fasciatus, characterizing three sexual dimorphisms. doublesex prevents intersex phenotypes in all sexes and dimorphic traits in the milkweed bug. intersex and fruitless are expressed across the body, in females and males. fruitless and intersex also affect the genitalia of both sexes, but have effects limited to different dimorphic structures in different sexes. These results reveal roles for intersex and fruitless distinct from other insects, and demonstrate distinct development mechanisms in different sexually dimorphic structures.

developmental biology↗