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Martinez, J. I.

Publications and source records attributed to Martinez, J. I..

2 recordsLinked to original sources

Gene family evolution reveals dietary adaptations in butterflies and moths

Butterflies and moths (Lepidoptera) are a hyperdiverse lineage of nearly 160,000 described species and their evolutionary success is postulated to be tightly correlated with the radiation of their primary host -- angiosperms. Previous studies found that a significant number of emergent gene families are specific to Lepidoptera, with many genes linked to odorant receptors and peptidases, suggesting that such genetic innovations may be linked to their diversification. Here, we use genomic resources to identify lineage-specific gene families in four nested lepidopteran clades (e.g. Lepidoptera, Glossata, Ditrysia, and Apoditrysia). Among nearly a hundred gene families specific to each group, a handful of gene families have specific and interpretable functions. We found that many digestion-related gene families emerged early in the evolution of Lepidoptera, followed by genes associated with detoxification and immunity. This result aligns with the evolutionary transition in ancient Lepidoptera diets to terrestrial plants, highlighting the emergence of detoxification mechanisms in the megadiverse Ditrysia as a critical adaptation driven by the proliferation of plant chemical defenses. We also found gene families originating from horizontal gene transfer (HGT) events, likely introduced from bacteria and fungi to the common ancestors of Lepidoptera and Ditrysia, respectively. These HGT-derived genes likely played a pivotal role in supporting the dietary transition from algae, diatoms, and aquatic plant debris to fungi and primitive terrestrial plants, ultimately enabling the adaptation to the most dominant angiosperm species.

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↗