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Roth, S.

Publications and source records attributed to Roth, S..

2 recordsLinked to original sources

A molecular phylogeny of bedbugs elucidates the evolution of host associations and sex-reversal of reproductive trait diversification

All 100+ bedbug species (Cimicidae) are obligate blood-sucking parasites and well-known for their habit of traumatic insemination but the evolutionary trajectory of these characters is unknown. Our new, fossil-dated, molecular phylogeny estimates that ancestral Cimicidae evolved ca. 115MYA as hematophagous specialists on an unidentified host, 50MY before bats, switching to bats and birds thereafter. Humans were independently colonized three times and our phylogeny rejects the idea that the divergence of the two current urban pests (Cimex lectularius and C. hemipterus) 47MYA was associated with the divergence of Homo sapiens and H. erectus (1.6MYA). The females functional reproductive tract is unusually diverse and heterotopic, despite the unusual and strong morphological stasis of the male genitalia. This sex-reversal in genital co-variation is incompatible with current models of genital evolution. The evolutionary trait diversification in cimicids allowed us to uncover fascinating biology and link it to human pre-history and current activity.

ecology

A novel role for Ets4 in axis specification and cell migration in the spider Parasteatoda tepidariorum

Organizers play important roles during the embryonic development of many animals. The most famous example is the Spemann organizer that sets up embryonic axes in amphibian embryos.\n\nIn spiders, a group of BMP secreting mesenchymal cells (the cumulus) functions as an organizer of the dorsoventral axis. Similar to experiments performed with the Spemann organizer, transplantation of the cumulus is able to induce a secondary axis in spiders.\n\nDespite the importance of this structure, it is unknown which factors are needed to activate cumulus specific gene expression.\n\nTo address this question, we performed a transcriptomic analysis of early embryonic development in the spider Parasteatoda tepidariorum. Through this work, we found that the transcription factor Pt-Ets4 is needed for cumulus integrity, dorsoventral patterning and for the activation of Pt-hunchback and Pt-twist expression. Furthermore, ectopic expression of Pt-Ets4 is sufficient to induce cell delamination and migration by inducing a mesoderm-like cell fate.

developmental biology