Marius F. Maurstad

@mariusmaur.bsky.social

Evolution of insect venoms PhD candidate at UiO

Awesome to see the first chapter of my PhD out in MBE! We used a suite of methods to describe the venom system of the green lacewing. Take a look if you're interested in everything from venom system morphology to the molecular evolution of novel traits doi.org/10.1093/molb...

The green lacewing venom system and the complex mechanisms underlying its evolution

Abstract. Venom has independently evolved across many lineages, yet relatively few have been studied in detail, particularly among insects. Of these, Neuro

doi.org

New publication: "Genome of the green-head ant, #Rhytidoponera metallica, reveals mechanisms of toxin evolution in a genetically hyper-diverse eusocial species" with Isaksen, Nachtigall, Araya, Hansen & Undheim from @biovitenskap.bsky.social Published in Genome Biology by @springernature.com

Genome of the green-head ant, Rhytidoponera metallica, reveals mechanisms of toxin evolution in a genetically hyper-diverse eusocial species - Genome Biology

Background While ants are textbook examples of eusocial animals in which altruistic behavior is maintained through kin selection, several ants form genetically diverse colonies that challenge this concept. One example is the Australian green-head ant (Rhytidoponera metallica) whose colonies harbor such extreme genetic variation that they have been speculated to represent an unstable form of eusociality. Yet, R. metallica is among the most successful ants on the Australian subcontinent. This success has been hypothesized to be partly due to the diverse venoms harbored within each colony. However, the genomic basis and evolutionary scenarios that maintain this toxin diversity remain unknown. Results To examine toxin genomic architecture, quantify individual-level genetic variation, and identify both proximate and ultimate mechanisms that have facilitated the toxin diversity in R. metallica, we generate a high-quality draft genome from a single worker. Most ectatotoxin genes are in clusters that contain evidence of multiple, complex gene-family expansions, some of which are likely explained by the presence of transposable elements. We also show that toxin regions of the genome exhibit elevated genetic variation despite being under strong selection and that this variation can translate to phenotypic diversity through toxin alleles with different functional properties. Conclusions Taken together, our results point to classical gene duplication and diversification as the main evolutionary mechanism by which the main toxin family in ant venoms evolves, suggest toxin-gene functional diversification under frequency-dependent selection maintains colony-level venom hypervariability in R. metallica, and provide new insight into the role of multi-level selection in eusocial animals.

genomebiology.biomedcentral.com

Crazy discovery in ants 🤯🐜 One mother for two species via obligate cross-species cloning in ants | Nature www.nature.com/articles/s41... "Males from the same mother exhibit distinct genomes and morphologies, as they belong to species that diverged over 5 million years ago."

One mother for two species via obligate cross-species cloning in ants - Nature

In a case of obligate cross-species cloning, female ants of Messor ibericus need to clone males of Messor structor to obtain sperm for producing the worker caste, resulting in males from the same moth...

nature.com

Finally is this story out public!! With an amazing historical dataset from IMR (@havforskningsinstituttet) we demonstrate how human perturbations impact the genomic signal in one of the largest cod stocks in the world: the northeast arctic cod | Science Advances www.science.org/doi/10.1126/...

A century of anthropogenic perturbations impact genomic signatures of the iconic migratory Atlantic cod

Retrospective assessment of the iconic migratory Atlantic cod uncovers human-induced genome-wide changes during the last century.

science.org

Phosphaenus hemipterus - one of only 3 firefly species in Czech Republic with both sexes flightless! Was lucky enough to find pupae a while back and now they're already mating in my setup. Fingers crossed for eggs!

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[please share widely!] We have two PhD positions available at the Swedish Museum of Natural History: [Position 1] Birds, hybridization, genomes, island biology, biogeography, sexual selection 🦚, w/ me, Knud Jønsson, Martin Iredstedt and @stelkens.bsky.social et al recruit.visma.com/spa/public/a...

PhD student in Evolution of Indo-Pacific birds

The Department of Bioinformatics and Genetics is offering a four-year PhD position focused on analyzing population-level genomic data from museum bird samples. The project will employ cutting-edge gen...

recruit.visma.com

🚨 Revolutionising Snakebite Treatments with AI-Designed Proteins 🐍 I'm proud to share our latest study published in hashtag#Nature, driven by Susana Vazquez Torres, and co-led by David Baker (Institute for Protein Design, University of Washington) and myself.

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