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Sourakov, A.

Publications and source records attributed to Sourakov, A..

2 recordsLinked to original sources

On wing pattern and wing shape evolution in Giant Silk Moths: Lessons from wing development in Luna and Polyphemus Moths

Heparin and dextran sulfate were used to influence wing development in the Luna Moth and the Polyphemus Moth. The experiments led to alterations not only of wing patterns, but also of wing shapes in both species, albeit in different ways. Dextran sulfate led to contractions of the wing pattern elements that were expanded by heparin in the Polyphemus Moth. Transformations of the dorsal wing pattern of the Luna Moth under the influence of heparin were dramatic and demonstrated the hidden potential for creating color patterns by contracting and expanding wing pattern elements. For the first time, polysaccharides have been shown to have an effect on wing shape: heparin caused significant expansion of the hindwing tails in the Luna Moth, while dextran sulfate caused a narrowing of the wings in the Polyphemus Moth. This study aims to provide insight into homologies in wing pattern elements, such as eyespots, across the Lepidoptera order, in general, and Saturniidae, in particular, and contributes to understanding phenotypic diversity and plasticity within the genera Actias and Antheraea.

evolutionary biology↗

A high-quality genome assembly of the ghost moth Druceiella hillmani provides new evidence of genome size augmentation in Hepialidae

Ghost moths are an unusual family of primitive moths (Lepidoptera: Hepialidae) known for their large body size and crepuscular adult activity. These moths represent an ancient lineage, frequently have soil dwelling larvae, and are adapted to high elevations, deserts, and other extreme environments. Despite being rather speciose with more than 700 species, there is a dearth of genomic resources for the family. Here, we present the first high quality, publicly available hepialid genome, generated from an Andean species of ghost moth, Druceiella hillmani. Our genome assembly has a length of 2,586 Mbp with contig N50 of 28.1 Mb and N50 of 29, and BUSCO completeness of 97.1%, making it one of the largest genomes in the order Lepidoptera. Our assembly is a vital resource for future research on ghost moth genomics.

evolutionary biology↗