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MEPGT

@mepgt.bsky.social
193 followers 459 following 57 posts

PhD student in Uppsala University and Zhejiang University

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New Phytologist @newphyt.bsky.social · 30/09/2026
Linking genomic variation to floral trait adaptation across species boundaries #TansleyReview by Acoca-Pidolle et al. @carriewessi.bsky.social nph.onlinelibrary.wiley.com/doi/10.1111/... #plantscience
Examples of floral trait divergences between sister species adapted to different pollination modes.
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Kaiser Lab @clocksevolution.bsky.social · 17/09/2026
We have a new #preprint on #lunar #reproductive #timing as a #magictrait in #speciation www.biorxiv.org/content/10.6... with former PhD students Alexander Jacobsen 🧪💻 Runa Ekrem 🦟🌊 🙏 Big thanks to both for the great work! #EvoBio #barriers #Chronobiology #circadian #MarineEcology
Full moon and new moon strains from Roscoff differ in lunar reproductive timing (A). Genotyping of 11 divergent loci (B) in 797 field-caught individuals shows that thetwo timing strains are distinct genetic entities (C).
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Diana Tataru @dianatataru.bsky.social · 26/09/2026
Structural variant characterization is a hot topic in genomics, but the types of data and methods researchers use can yield different results! Check out this preprint we just dropped on inversion detection and characterization in Timema stick insects: www.biorxiv.org/content/10.6...
biorxiv.org
Inversion characterization in Timema stick insects: from local PCA to pangenome approaches
Structural variants (SVs) can strongly influence evolutionary processes by suppressing recombination to create jointly inherited regions and by altering gene expression and the 3D organization of DNA....
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Zoe Postel @zopos.bsky.social · 25/09/2026
📢 Early access in GBE 👇 🍃🌿Evolutionary consequences of repeated loss of distyly in Linum academic.oup.com/gbe/article/... Huge thanks to all co-authors, reviewers and editors 😍
academic.oup.com
Evolutionary consequences of repeated loss of distyly in Linum
Abstract. The breakdown of distyly, a polymorphism that promotes disassortative pollination between two floral morphs, is often assumed to increase self-fe
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Maria Akopyan, PhD @akopyan.bsky.social · 24/09/2026
New preprint out today! [1/5] Can higher recombination rates help populations adapt more quickly to environmental change? We used forward-time simulations to find out. www.biorxiv.org/content/10.6...
biorxiv.org
Recombination accelerates adaptation across genetic architectures and demographic histories
According to classic population genetics theory, recombination shapes the efficacy of natural selection. However, whether variation in recombination rate itself translates into meaningful differences ...
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Tanja Slotte @tanjaslotte.bsky.social · 23/09/2026
Interested in testing hypotheses on pollen evolution using genomic data? Apply for our open 4-year PhD student position at Stockholm University! Application via the SU website, deadline Oct 24, 2026. #evolution #pollen #pollinationmode #plants #genomics #RNAseq su.varbi.com/what:job/job...
su.varbi.com
Doktorand i ekologi och evolution
Institutionen för ekologi, miljö och botanik (DEEP) bedriver forskning och utbildning vid Arrheniuslaboratorierna på campus Frescati. Vi är cirka 100 medarbetare, inklusive doktorander och postdok
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José Cerca @naturalselection.bsky.social · 22/09/2026
V happy about this one (@brentcemerson.bsky.social @biodiversitysmns.bsky.social @hernmoral.bsky.social)et al Species have survived on oceanic islands for Mya despite occupying small geographic areas, facing environmental calamities and having low Ne. We discuss this w/ a focus on conservation. 1/2
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New Phytologist @newphyt.bsky.social · 21/09/2026
Adaptation in mixed-ploidy populations Grünig et al. nph.onlinelibrary.wiley.com/doi/10.1111/...
Distribution of genomic variation in diploid and tetraploid populations of Biscutella laevigata from low and high elevation.
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Moi Expósito-Alonso (MOILAB) @mexpositoalonso.bsky.social · 21/09/2026
📣 We are looking for a PhD student in 2027! Interested in studying rapid evolutionary dynamics of species in changing climates? Apply to the MOI LAB by Nov 19! Flyer below & tinyurl.com/flyerphdmoilab @ucberkeleyofficial.bsky.social @innovativegenomics.bsky.social @hhmi-science.bsky.social
tinyurl.com
2027_PhD_RapidEvolutionGenomicsEcology-MoiLab_Berkeley-HHMI
PhD positions: Rapid evolutionary genomics in plants Moi Exposito-Alonso Lab — www.moilab.science Assistant Professor, Freeman Hrabowski Scholar HHMI · Department of Integrative Biology · Innovative G...
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Polina Novikova @pnovik.bsky.social · 16/09/2026
I am happy to present our work @liverworks.bsky.social @robinburns.bsky.social @alisondawnscott.bsky.social on centromeric repeat turnovers, of which we counted three in the Arabidopsis genus:
biorxiv.org
The Nature of Centromeric Repeat Turnovers in the genus Arabidopsis
Centromeres are critical for accurate segregation of chromosomes and are often composed of megabases of tandemly arranged satellite repeats. Yet, despite their conserved function, the DNA sequence of ...
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jim mallet @wtf-r-species.bsky.social · 17/09/2026
here's a nice popular article about genome doubling, and why it's a "hopeful monster" kind of thing, why it works, and why it often doesn't, to advance its lineage(s). Arnold, C. 2026. Genome duplication is a radical evolutionary gamble. Quanta Magazine. www.quantamagazine.org/genome-dupli...
quantamagazine.org
Genome Duplication Is a Radical Evolutionary Gamble | Quanta Magazine
By doubling their entire genome, organisms can evolve extremely rapidly — or they can lose it all. New studies reveal how to survive the high-risk, high-reward evolutionary event.
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Heng Li @lh3lh3.bsky.social · 17/09/2026
Single-page, interactive overlap assembler for teaching purposes: lh3.github.io/teach-demo/o... (vibe coded)
lh3.github.io
Overlap Graph Assembly Demo
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Dr. Paige Duffin @paigeduffin.bsky.social · 14/09/2026
I’m excited to share the 🌷🪻 "meadow plot" 🌻🌷, a new pop genomics visualization tool I created to ID putative selective sweeps across the genome using windowed π & FST estimates from pixy. User-friendly tutorial here: paigeduffin.github.io/meadow_plot_... Please help spread the word by sharing! 🧬
paigeduffin.github.io
Meadow Plot Tutorial
A step-by-step tutorial for creating meadow plots and candidate peak summaries from pixy output.
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Graham Coop @gcbias.bsky.social · 10/09/2026
I’m looking to hire an NIH funded postdoc to join our lab here at Davis (please RT). Ongoing areas of interest include: 1) polygenic signals of selection from time series, ARGs, GWAS, etc 2) The interpretation of GWAS, polygenic scores, & sources of confounding
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Carol Royo @carolinaroyo.bsky.social · 11/09/2026
After a long journey, bringing together archaeology & genetics, our work on Iberian grapevine paleogenomics is finally out! 🍇🧬 Thanks to IH-CSIC@cchscsic.bsky.social, UV, @plantevolution.bsky.social, @leibnizcampusgact.bsky.social and all collaborators! www.sciencedirect.com/science/arti...
sciencedirect.com
Eastern origin and three-millennia persistence of a founding grapevine lineage in Iberian viticulture
Viticulture became central to most Mediterranean civilizations a few millennia after the grapevine (Vitis vinifera L.) was domesticated in the South C…
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PLOS Biology @plosbiology.org · 10/09/2026
How & why does the distribution of fitness effects #DFE vary among species? Meixi Lin, @klohmueller.bsky.social &co analyze genetic variation from 11 animal species, finding that fitness effects are influenced by phylogeny, population size, & organismal complexity @plosbiology.org 🧪 buff.ly/t5q7Mqo
Mutations are more deleterious in mammals compared to insects and birds. Left: The phylogenetic relationship among the (sub)species included in this study. Middle: The mean deleterious mutation effects (|s|mean) for 11 (sub)species, assuming a gamma-distributed DFE of neutral and deleterious mutations. From top to bottom, species are increasingly divergent from humans: mice, fin whales, vaquitas, arctic wolves, gray wolves, collared flycatchers, pied flycatchers, halictid bees, Drosophila and mosquitoes. Numbers show the ranks of |s|mean. Right: The shape parameter (alpha) of the gamma-distributed DFE for 11 (sub)species. Numbers show the ranks of alpha.
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Lauren Hennelly @laurenhennelly.bsky.social · 09/09/2026
Hi Everyone! I am hiring a 2 year Postdoctoral Research Associate in Evolutionary and Conservation Genomics at my lab at Rice University! You can read more about the position here: emdz.fa.us2.oraclecloud.com/hcmUI/Candid... Please reach out with any questions!
emdz.fa.us2.oraclecloud.com
Postdoctoral Associate - BioSciences
The Hennelly Lab is hiring a Postdoctoral Research Associate in evolutionary and population genomics in mammalian systems. The project will involve analyzing genomic data from modern and historical/an...
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Sam Yeaman @samyeaman.bsky.social · 08/09/2026
I'm looking to hire a postdoc to work on the RepAdapt + MacroMar projects, analysing genomic data from >130 species of plants, animals, and fungi (VCFs are processed, ready to go). Lots of potential for creativity and collaboration! yeamanlab.weebly.com/uploads/5/7/...
Picture shows fireweed in foreground and Mt. Lougheed in background
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Joelle Lafond, PhD @joellelafond.bsky.social · 08/09/2026
🚨Our new preprint is out! 🤩 🌟 Mutation rates vary widely across taxa, and decades of research have sought to explain why. ♀️♂️ Reproductive modes, and evolutionary shifts between them, could help explain some of this variation. ❓ So what does the evidence tell us? 👀 Read our preprint to find out!
doi.org
Reproductive mode and the evolution of mutation rate
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Josef Uyeda @pseudacris.bsky.social · 03/09/2026
Story on our new paper led by Sergei Tarasov! www.helsinki.fi/en/news/rese...
helsinki.fi
When biology inspires mathematics: new discovery explains why a widely used evolutionary method can give false answers | University of Helsinki
Researchers have identified a previously unrecognised mathematical property that explains why one of evolutionary biology's most widely used statistical models can produce convincing but incorrect con...
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Vincent Arel-Bundock @vincentab.bsky.social · 04/09/2026
Big news! 🎉 𝚖𝚊𝚛𝚐𝚒𝚗𝚊𝚕𝚎𝚏𝚏𝚎𝚌𝚝𝚜 1.0.0 for #Rstats is out. It’s a big number and it feels like a big step. I wrote a blog on the challenges of interpreting statistical models, SPEED, cool new features, the future, and a 5 year package development and writing odyssey. arelbundock.com/posts/margin...
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Max Telford @maxjtelford.bsky.social · 02/09/2026
Important paper by @kaplipa.bsky.social and colleagues. Advocating for the importance of Natural History museum collections in genomics. www.nature.com/articles/s41...
nature.com
Species-dense genomics through natural history collections - Nature Reviews Genetics
Large-scale genome initiatives are transforming biodiversity genomics, but genomes remain taxonomically sparse and difficult to compare across species. Kapli and colleagues argue that natural history ...
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Joachim Mergeay @jmergeay.bsky.social · 03/09/2026
We calculated the effective size of the Scandinavian wolf population every year since its founding from the entire pedigree. Why? Because we could. But also because this population is vulnerable, and policy keeps pushing for lower and lower conservation targets 1/ #consgen
nature.com
The effective size of the Scandinavian wolf population is too small for both short- and long-term conservation - Heredity
Heredity - The effective size of the Scandinavian wolf population is too small for both short- and long-term conservation
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Becky Taylor @beckystaylor.bsky.social · 01/09/2026
Been wondering how well runs of homozygosity can predict inbreeding depression? Read our new meta-analysis where we show a significant relationship between ROH and fitness across taxa #popgen #consgen: onlinelibrary.wiley.com/doi/10.1111/...
onlinelibrary.wiley.com
Runs of Homozygosity Predict Inbreeding Depression Across Taxa: A Systematic Review and Meta‐Analysis
Measuring inbreeding via runs of homozygosity (ROH) captures realized autozygosity and can infer inbreeding timing through ROH length. A growing body of literature links the proportion of the genome ....
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MEPGT @mepgt.bsky.social · 30/08/2026
Very important paper by @phylogenetrips.bsky.social "Genes and sites under adaptation at the phylogenetic scale also exhibit adaptation at the population-genetic scale" | PNAS www.pnas.org/doi/10.1073/...
pnas.org
Genes and sites under adaptation at the phylogenetic scale also exhibit adaptation at the population-genetic scale | PNAS
Adaptation in protein-coding sequences can be detected from multiple sequence alignments across species or alternatively by leveraging polymorphism...
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Anne Roulin @anneroulin.bsky.social · 21/08/2026
A good way to end the week: some rain and a new preprint! 🌧️🧬 Big 👏 to @lpiat.bsky.social for tackling a tricky genome assembly problem! We assembled the genome of a Swiss Lolium multiflorum ecotype, a forage grass with a large (~2.2 Gb), highly heterozygous genome. www.biorxiv.org/content/10.6...
biorxiv.org
A chromosome-scale genome assembly of the Swiss Lolium multiflorum ecotype Tremona reveals a scalable method to purge spurious duplications
Italian ryegrass ( Lolium multiflorum ) is a key temperate forage species underpinning livestock production in Europe. Genomic resources remain limited by its large (2.2 Gb), repetitive, and highly he...
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Yun Deng @yundeng.bsky.social · 26/08/2026
This is one of the best ARG talks I’ve ever heard and there are lots of good tips for best practice in empirical studies. If you are interested in using ARG-based methods to your system, I highly recommend that you check this out.
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Casey Dunn @caseywdunn.bsky.social · 25/08/2026
My new book, Phylogenetic Biology, is now published. Available online for free at dunnlab.org/phylogenetic... . Physical copies can be purchased at shop.lightningsource.com/b/085?params... or your favorite bookstore.
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MEPGT @mepgt.bsky.social · 22/08/2026
Natural and Anthropogenic Drivers of Genomic Diversity in the California Towhee: Conservation Implications for Peripheral Populations - Black - 2026 - Evolutionary Applications - Wiley Online Library onlinelibrary.wiley.com/doi/10.1111/...
onlinelibrary.wiley.com
Natural and Anthropogenic Drivers of Genomic Diversity in the California Towhee: Conservation Implications for Peripheral Populations
Demographic, geographic, and environmental factors such as effective population size, isolation, and habitat availability interact to shape contemporary levels of population genomic diversity. Such f...
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Darrin T. Schultz @dts.bsky.social · 19/08/2026
Our new paper in Science Advances asks how animals' genomes have changed since their origin from a common ancestor over 600 million years ago, and what patterns in their DNA have arisen in the churn of speciation and extinction. www.science.org/doi/10.1126/...
Five-panel diagram explaining fusion-with-mixing in chromosome evolution. Red and blue represent two different ancestral chromosomes throughout.

A, Fusion-with-mixing: a red chromosome and a blue chromosome fuse into one half-red, half-blue bar. Down the page, successive rows show inversions, drawn as X-shaped crossings between rows, progressively interleaving the two colors until the bottom bar is finely striped. A widening gray wedge labeled Entropy runs alongside an arrow marked Time plus evolution, pointing down.

B, Independent regulation: two separate chromosomes, one red and one blue. In each, a regulatory element, drawn as an oval, acts by an arrow on a gene within its own chromosome only.

C, FWM and novel regulation: on a fused, mixed chromosome, a red gene and a blue gene now sit next to each other across an inversion breakpoint. Red and blue arrows show regulatory elements reaching across it to act on the other chromosome's gene.

D, Regulatory entanglement: an extensively mixed chromosome, finely striped. Below it, a row of alternating red and blue genes is linked by a dense web of crossing curved arrows, so many overlapping regulatory connections that unmixing the chromosome would break them.

E, Emergence of entangled loci: a five-species phylogeny. A red and a blue chromosome fuse at an ancestral node, and helical icons on later branches mark continued mixing. Colored boxes mark four new red-blue regulatory interactions arising after inversions. Species A keeps its two chromosomes separate. In species B through E, the two earliest interactions, cyan boxes 1 and 2, are present in every descendant lineage, while later ones, yellow 3 and magenta 4, appear in fewer.
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Mark Phillips @maphillips.bsky.social · 30/07/2026
Recent work from the lab. Even after hundreds of generations of intense directional selection at relatively small Ne, substantial genetic variation persists, and can be rapidly redeployed when the direction of selection reverses. Results are suggestive of balancing selection. doi.org/10.1093/molb...
doi.org
Beyond Fixation: Persistent Genetic Variation Under Intense Selection
Abstract. Understanding how and why genetic variation is maintained under sustained selection remains a central question in evolutionary genetics. Experime
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Evolution Letters @evolletters.bsky.social · 10/08/2026
Big evolutionary events can fool phylogenetic analyses. A new approach combines phylogenetic regression with eigenvectors to reduce false positives and better account for the history written in genomes. doi.org/10.1093/evle...
doi.org
Characterizing and mitigating confounding by unreplicated evolutionary events in phylogenetic regression
Abstract. When researchers want to test for a direct effect of one attribute on another using interspecific data, they need to account for the confounding
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Yann Bourgeois @bourgeoisyann.bsky.social · 17/08/2026
Nice. watchgen.readthedocs.io/en/latest/ph...
watchgen.readthedocs.io
The Watchmaker’s Philosophy — The Watchmaker's Guide to Population Genetics
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Amanda Gardiner @alwaysamandag.bsky.social · 16/08/2026
My first paper from my PhD is now up as a preprint on bioxriv while under review - Excited to finally share this with the world!
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MEPGT @mepgt.bsky.social · 15/08/2026
Revealing the hidden patterns of shark and ray diversity over the past 145 million years: Current Biology www.cell.com/current-biol...
cell.com
Revealing the hidden patterns of shark and ray diversity over the past 145 million years
Gardiner et al. reconstruct the diversity of sharks and rays across the past 145 million years using deep learning and an extensive dataset. Their results unveil previously hidden patterns, including ...
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MEPGT @mepgt.bsky.social · 15/08/2026
Fantastic research! @alwaysamandag.bsky.social 512 Vertebrate Species Genomes Reveal the Complex Relationship Between Extinction Risk and Ecological Features doi.org/10.64898/202...
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Yun Deng @yundeng.bsky.social · 15/08/2026
The first manuscript from my postdoc is out (doi.org/10.64898/202...)! We introduce 𝐭𝐢𝐦𝐞-𝐬𝐭𝐫𝐚𝐭𝐢𝐟𝐢𝐞𝐝 𝐬𝐭𝐚𝐭𝐢𝐬𝐭𝐢𝐜𝐬 for studying population structure change over time, with the temporal resolution of Ancestral Recombination Graphs (ARGs). Joint with @jkpritch.bsky.social and @jeffspence.github.io. 1/n
google.com
Coalescent-Based Time-Stratified Statistics Reveal Population Structure Dynamics using the Ancestral Recombination Graph
Many questions in population genetics are concerned with reconstructing evolutionary history through time, such as inferring how population structure has changed throughout the past. Yet, many existing approaches have only an implicit temporal component, using quantities such as allele frequency or haplotype length as rough proxies for age. Recent advances in the inference of Ancestral Recombination Graphs (ARGs) have made it possible to estimate the entire sequence of local genealogies along the genome. These genealogies explicitly encode how samples are related to each other at different time points in the past, enabling the inference of how population structure has changed over time. To this end, recent work has used ARGs to define time-stratified versions of widely-used population genetics summary statistics in an attempt to capture the population structure present within a particular time window. Here, we show that naive approaches result in statistics that cannot be interpreted solely in terms of the population structure present within the time window they are targeting. To address this problem, we introduce a framework of coalescent-based time-stratified statistics, which use coalescence probabilities to partition classical summary statistics into interval-specific contributions. Using coalescent simulations, we demonstrate that these statistics accurately isolate population structure at different temporal depths and avoid spurious signals. Our results highlight the necessity of integrating coalescent theory into ARG-based temporal analyses and provide a principled and practical foundation for studying the dynamics of population structure through time. ### Competing Interest Statement The authors have declared no competing interest. National Human Genome Research Institute, https://ror.org/00baak391, R01HG014005
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Mark Hibbins, Great Lakes Swashbuckler @rejectresubmit.bsky.social · 14/08/2026
New review from me and @stepheniwright.bsky.social! We argue the time is ripe for a phylogenomic approach to the study of plant sex chromosomes: doi.org/10.32942/X2S...
doi.org
Plant sex chromosome evolution in the phylogenomic era
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Stephan Schiffels @stschiff.bsky.social · 12/08/2026
If you are interested in learning computational population genetics and ancient genomics, I have curated my list of workshops and online tutorials (and will continue to do so) indicating suitability for self-learners and status. You find the list [here](www.stephanschiffels.de/resources.html).
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Jeffrey Ross-Ibarra @jrossibarra.bsky.social · 12/08/2026
I am excited to announce a job for an Asst Prof in Plant Evolution in the dept. of Evolution and Ecology at @ucdavis.bsky.social. We're looking broadly, from macro (speciation, comparative genomics, evo-devo) to micro (pop biology, adaptive evolution, evo-eco). recruit.ucdavis.edu/JPF07777
recruit.ucdavis.edu
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Graham Coop @gcbias.bsky.social · 12/08/2026
Excited for @gabrielesgarlata.bsky.social’s new preprint on the Genome-Wide Effect of Drift and Selection over a Single Generation 1/n www.biorxiv.org/content/10.6...
biorxiv.org
The Genome-Wide Effect of Drift and Selection over a Single Generation
The relative importance of genetic drift versus selection to evolutionary change has long been debated. This debate has mainly focused over long-time-scales (e.g. hundreds of thousands of generations)...
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Mario Vallejo-Marin @nicrodemo.bsky.social · 09/08/2026
Last year we took a small amber with a fossil bee to the Oxford synchrotron. Little did we know that it would become a tiny window into the ecology of bees and their mites in the subtropical forests 40 million years ago. @charliezoology.bsky.social @hfspo.bsky.social www.cell.com/iscience/ful...
cell.com
Insights into the ecology of early leaf-cutter bees revealed through synchrotron X-ray tomography
Zoology; Entomology; Evolutionary biology; Paleobiology
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Jeffrey Ross-Ibarra @jrossibarra.bsky.social · 06/08/2026
Regular reminder that the first thing you should do if you're interested in population structure of some samples is not PCA, NJ tree, or STRUCTURE. Just build a dang kinship matrix and look at it.
kinship matrix of a number of Tripsacum individuals based on whole genome sequencing
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MEPGT @mepgt.bsky.social · 06/08/2026
Estimation of Contemporary and Recent Effective Population Size from Genomic Data - www.annualreviews.org/content/jour...
annualreviews.org
Estimation of Contemporary and Recent Effective Population Size from Genomic Data
Effective population size (Ne) is a crucial parameter in the fields of evolutionary biology, conservation biology of endangered species, and selective breeding of domestic animals and crops, as it qua...
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Chris Fiscus @fiscuscj.bsky.social · 06/08/2026
New paper out in PNAS! 🍇🧬 Vitis phylogenomics is a tangled vine. Highlights: • ~14% of the average grape genome comes from introgression • Two classic “hybrid species” are better described as hybrid swarms • Repeated adaptation is fueled by introgression and standing genetic variation
pnas.org
The dynamics of introgression and parallel adaptation across North American Vitis species | PNAS
Hybridization between species can contribute to parallel adaptive events. However, the prevalence of introgression is rarely measured across multip...
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MEPGT @mepgt.bsky.social · 04/08/2026
Neutral Theory Is the Foundation of Conservation Genetics academic.oup.com/mbe/article/...
academic.oup.com
Neutral Theory Is the Foundation of Conservation Genetics
Abstract. Kimura’s neutral theory of molecular evolution has been essential to virtually every advance in evolutionary genetics, and by extension, is found
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Kieran Samuk @ksamuk.bsky.social · 03/08/2026
Just posted: a group paper describing major updates to my software pixy, for population genetic summary statistics. www.biorxiv.org/content/10.6... New since 2021: arbitrary ploidy, multiallelic sites, missingness-aware Watterson's θ and Tajima's D, Hudson's FST, multicore execution!
Alt text: Schematic of the pixy workflow. Left, inputs: a bgzipped, tabix- or CSI-indexed VCF with callable sites supplied as an all-sites VCF or gVCF blocks, a populations file, and optional BED and sites files. Centre, core: windowing by fixed width, BED or region; statistic selection; options for Hudson's FST, multiallelic SNPs, automatic ploidy detection and multicore execution. Right, outputs: one TSV per statistic for pi, dxy, FST, Watterson's theta and Tajima's D, with raw count columns for exact aggregation. Bottom, development: GitHub fork and pull request, local checks with ruff, mypy and pytest, continuous integration across Python 3.10 to 3.14, and distribution through conda-forge. Features new since the 2021 release are badged "new".
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MEPGT @mepgt.bsky.social · 03/08/2026
A nice paper by @ahancock.bsky.social, A VIM2/4 deletion, and premature truncations of CMT2 and FBX5, drive DNA methylation changes after colonization of a novel habitat. Nat. Plants (2026). doi.org/10.1038/s414...
doi.org
A VIM2/4 deletion, and premature truncations of CMT2 and FBX5, drive DNA methylation changes after colonization of a novel habitat - Nature Plants
This study shows that Arabidopsis thaliana colonizing the Cape Verde Islands rapidly evolved altered DNA methylation patterns through high-impact mutations affecting VIM2/4, CMT2 and FBX5, linked to a...
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Jeff Groh @jeffgroh.bsky.social · 28/07/2026
Avocados come in 2 varieties - A-types start each day female and switch to male midday. B-types do the reverse. In work just published from the last chapter of my PhD, we show this system evolved 40+million yrs ago and is regulated by alleles of 1 transcription factor www.pnas.org/doi/10.1073/...
pnas.org
Balanced polymorphism in a floral transcription factor underlies the ancient rhythm of daily sex alternation in avocado | PNAS
In avocado and certain wild relatives in Lauraceae, a highly synchronized daily rhythm of floral sex timing promotes cross-pollination between two ...
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