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EVOCHANGE lab

@evochange.bsky.social
91 followers 108 following 24 posts

EVOCHANGE - Genomics of Evolutionary Change Research Group Based at @biopolis-cibio.bsky.social, University of Porto. PI: @meloferreiraj.bsky.social Our blog: 🇬🇧 evoluchange.wordpress.com 🇵🇹 evochangept.wordpress.com

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EVOCHANGE lab @evochange.bsky.social · 02/10/2026
This work was led by PhD student José Costa, with @joao-pedro-marques.bsky.social, @meloferreiraj.bsky.social, and co-authors!
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EVOCHANGE lab @evochange.bsky.social · 02/10/2026
These estimates are supported by a combination of demographic, phylogenomic, and polarisation-based methods.
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EVOCHANGE lab @evochange.bsky.social · 02/10/2026
About 18% of that mountain hare ancestry is still detectable in broom and Italian hare genomes today! These regions tend to occur around genes, while repeat-rich genomic regions contain less evidence of introgression.
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EVOCHANGE lab @evochange.bsky.social · 02/10/2026
We find that when mountain hare mitochondrial DNA replaced that of broom and Italian hares, their ancestor received a substantial amount of nuclear introgression: around 24% at the time of the exchange!
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EVOCHANGE lab @evochange.bsky.social · 02/10/2026
📢 New preprint out on @biorxiv-evobio.bsky.social! In this work, we look at patterns of ancient mitochondrial and nuclear introgression among hare species in Europe! 🧬🐇 Read more here ⬇️ doi.org/10.64898/202...
doi.org
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EVOCHANGE lab @evochange.bsky.social · 02/10/2026
About 18% of that mountain hare ancestry is still detectable in broom and Italian hare genomes today! These regions tend to occur around genes, while repeat-rich genomic regions contain less evidence of introgression.
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EVOCHANGE lab @evochange.bsky.social · 02/10/2026
We find that, when mountain hare mitochondrial DNA replaced that of broom and Italian hares, their ancestor received a substantial amount of nuclear introgression: around 24% at the time of the exchange!
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Inês Miranda @inesmiranda.bsky.social · 02/10/2026
Last Friday, the @evochange.bsky.social was part of the European Researchers' Night 2026 at the Ciência Viva Centre in Vila do Conde, to share some of the research on seasonal camouflage that we have been developing at @biopolis-cibio.bsky.social! 🧬 Photos: Diogo Moutinho // CCV Vila do Conde
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EVOCHANGE lab @evochange.bsky.social · 05/08/2026
This work was led by postdoc João Pimenta, with @inesmiranda.bsky.social, @marcelaalvarenga.bsky.social, @meloferreiraj.bsky.social, and co-authors! 5/5
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EVOCHANGE lab @evochange.bsky.social · 05/08/2026
MC1R is emerging as a hotspot for the evolution of winter camouflage adaptation, being also implicated in winter colour variation in other carnivores, namely the Arctic fox (Vulpes lagopus) and the least weasel (Mustela nivalis). 4/5
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EVOCHANGE lab @evochange.bsky.social · 05/08/2026
We found evidence of two alternative winter-brown MC1R alleles encoding amino acid deletions, which segregate separately in each transition zone. This suggests alternative intraspecific solutions to adaptation to similar winter conditions, but how these alleles evolved remains to be explored. 3/5
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EVOCHANGE lab @evochange.bsky.social · 05/08/2026
We took advantage of museum collections to sample winter colour transition zones on the West and East coasts of North America. Using whole-genome sequencing at low coverage, we mapped the genomic basis of the polymorphism to a single association peak in MC1R, a key pigmentation gene. 2/5
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EVOCHANGE lab @evochange.bsky.social · 05/08/2026
📢New paper in @journal-evo.bsky.social! This work expands our understanding of seasonal camouflage polymorphism, dissecting the genetic basis of winter colour variation (white and brown morphs) in the long-tailed weasel (Neogale frenata). Paper here ⬇️ doi.org/10.1093/evol... 1/5
doi.org
Museum genomics links MC1R alleles to adaptive winter coat color polymorphism in the long-tailed weasel
Abstract. Understanding the architecture of biological adaptations is a major endeavor of evolutionary biology. Using Natural History collections, we study
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EVOCHANGE lab @evochange.bsky.social · 13/07/2026
This work was led by postdoc @inesmiranda.bsky.social as part of her PhD thesis, with @marcelaalvarenga.bsky.social, @lovedalen.bsky.social, @meloferreiraj.bsky.social, and remaining co-authors!
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EVOCHANGE lab @evochange.bsky.social · 13/07/2026
📢New paper in @commsbio.nature.com! In our new work on seasonal camouflage in least weasels, we show the functional impact of an MC1R mutation underlying adaptive winter colour and dissect its origin & evolution. Paper: www.nature.com/articles/s42... See the thread by @inesmiranda.bsky.social! ⬇️
nature.com
Balanced polymorphism underlies long-standing adaptation for seasonal camouflage in the least weasel - Communications Biology
In vitro functional assays link alternative MC1R alleles to least weasels’ camouflage in environments with different winter snow, and population genomics sheds light on their evolutionary origin and b...
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Communications Biology @commsbio.nature.com · 16/06/2026
🟤⚪❄️This article featured on our homepage shows how the long-standing adaptation in least #weasel protein MC1R allows #camouflage in diverse environments www.nature.com/commsbio/ www.nature.com/articles/s42... @evochange.bsky.social @inesmiranda.bsky.social @meloferreiraj.bsky.social
A least weasel with winter-brown coat on a green grass-covered plateau
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EVOCHANGE lab @evochange.bsky.social · 15/06/2026
This work was led by postdoc João Carvalho, with @joao-pedro-marques.bsky.social, @meloferreiraj.bsky.social and co-authors! 5/5
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EVOCHANGE lab @evochange.bsky.social · 15/06/2026
Some early selection signals were likely false positives due to low diversity, but persistent selection signatures in 9 genes suggest strong candidates for local adaptation. These were used to select and validate a set of SNP markers for future population monitoring. 4/5
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EVOCHANGE lab @evochange.bsky.social · 15/06/2026
In this new work, we revisit the same populations, two to four years after their first sampling. We show a recovery in genetic diversity of that early-sampled population, which likely resulted from gene flow with other nearby populations. 3/5
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EVOCHANGE lab @evochange.bsky.social · 15/06/2026
Previous whole-genome sequencing of Portuguese populations had identified a southern European invasion route, but one of the populations showed exceedingly low levels of genetic diversity, hypothesized to have resulted from recent colonization of the area. See more: doi.org/10.1186/s128... 2/5
doi.org
Dissecting the invasion history of Spotted-Wing Drosophila (Drosophila suzukii) in Portugal using genomic data - BMC Genomics
Background The invasive pest Spotted-Wing Drosophila, Drosophila suzukii (Matsumura), causes extensive damage and production losses of soft-skinned fruits. Native to Asia, the species has now spread worldwide, with first reports in Portugal in 2012. In this study, we focus on the genomic signatures of the recent Portuguese invasion, in the context of worldwide patterns established in previous works. We analyzed whole genome pool sequencing data from three Portuguese populations (N = 240) sampled in 2019 and 2021. Results The correlation of allele frequencies suggested that Portuguese populations are related to South European ones, indicating a Mediterranean invasion route. While two populations exhibited levels of genetic variation comparable to others in the invasive range, a third showed low levels of genetic diversity, which may result from a recent colonization of the region. Genome-wide analyses of natural selection identified ten genes previously associated with D. suzukii’s invasive capacity, which may have contributed to the species’ success in Portugal. Additionally, we pinpointed six genes evolving under positive selection across Portuguese populations but not in European ones, which is indicative of local adaptation. One of these genes, nAChRalpha7, encodes a nicotinic acetylcholine receptor, which are known targets for insecticides widely used for D. suzukii control, such as neonicotinoids and spinosyns. Although spinosyn resistance has been associated with mutations in the nAChRalpha6 in other Drosophila species, the putative role of nAChRalpha7 in insecticide resistance and local adaptation in Portuguese D. suzukii populations encourages future investigation. Conclusions Our results highlight the complex nature of rapid species invasions and the role of rapid local adaptation in determining the invasive capacity of these species.
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EVOCHANGE lab @evochange.bsky.social · 15/06/2026
📢New paper in @neobiota.pensoft.net! In our new study of the invasion of Drosophila suzukii in Portugal, we show how temporal genomics can uncover demographic recovery after a founding event and help assess the persistence of selective signals over time. OA paper ➡️ doi.org/10.3897/neob... 1/5
doi.org
Temporal genomics unravels demographic and selective invasion dynamics of Drosophila suzukii at a European range edge
Drosophila suzukii is a globally invasive fruit fly that causes significant economic impacts on soft-skinned fruit crops. While its invasion history has been studied on a global scale, regional-scale ...
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Biodiversity Genomics Europe plus (BGE+) @biogeneurope.bsky.social · 26/02/2026
BGE is coming to an end, but don't worry: we have amazing news!✨ BGE+, heir to BGE, has been selected for funding 🥳💥 BGE+ aims to build a #biodiversity #genomics infrastructure in #Europe. 💪 Want to know more about what that entails? 👉 biodiversitygenomics.eu/2026/02/16/b...
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ERGA - European Reference Genome Atlas @ergabiodiv.bsky.social · 18/03/2026
How do you turn many individual experiences, workflows, and challenges into something the whole community can use? Watch Katja Reichel explaining the writing of doi.org/10.1111/1755... Link: youtu.be/80cedW-Oc6c #Genomics #Biodiversity #ReferenceGenomes #ERGA
doi.org
From Permits to Samples: Addressing Key Challenges for High‐Quality Reference Genome Generation in Europe
High-quality reference genome assemblies have become essential for deepening our understanding of biodiversity, yet obtaining them for many species remains surprisingly challenging. Drawing on experi...
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Inês Miranda @inesmiranda.bsky.social · 10/11/2025
📢New PhD paper out! Science communication & education are one of my priorities, which is why, a few years ago, I accepted the challenge to develop a one-year scientific project with local high school students. What started as a side project has now turned into a paper! doi.org/10.20897/ejs...
doi.org
Promoting Scientific Literacy in High School: Insights from Short-Term STEM Collaborative Projects
Fostering scientific literacy is a key societal goal to equip individuals with skills to navigate and make informed decisions in an increasingly complex world. The development of project-based learnin...
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ERGA - European Reference Genome Atlas @ergabiodiv.bsky.social · 03/11/2025
🙌 Many thanks to all the speakers and participants who made our Genomics for Biodiversity Conference a success! It was a wonderful opportunity to connect, exchange ideas, and learn from @biogeneurope.bsky.social case studies and their results. #genomics #biodiversity #conservation #bioeconomy
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EVOCHANGE lab @evochange.bsky.social · 02/07/2025
This work was led by former MSc student João Souto, with @joao-pedro-marques.bsky.social @meloferreiraj.bsky.social and co-authors!
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EVOCHANGE lab @evochange.bsky.social · 02/07/2025
Using whole genomes, we detected introgression from three species - L. granatensis, L. timidus, and L. europaeus - into the broom hare. Some of it was likely layered across past hybridization events! These are the genomic echoes of hares' Pleistocene history. #genomics #Lepus #Iberia #evolution
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EVOCHANGE lab @evochange.bsky.social · 02/07/2025
📣 NEW PAPER! News from our group in @journal-evo.bsky.social ! The broom hare (Lepus castroviejoi) carries traces of multiple genomic ancestries, revealing a complex history of admixture in Iberia! Read more here ⬇️ doi.org/10.1093/evol...
doi.org
Multiple genomic ancestries in the broom hare mark the complex biogeographic history of hares in the Iberian Peninsula
Abstract. Pleistocene climatic fluctuations have often driven range shifts and hybridization among related species, leaving present-day genomic footprints.
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Biodiversity Genomics Europe plus (BGE+) @biogeneurope.bsky.social · 01/07/2025
📢 New #BGE-‪@ergabiodiv.bsky.social‬ publication! It’s time to #harmonise practices for assessing genome-wide genetic diversity. 🧬 #Standardisation is key to meet the needs of #stakeholders in biodiversity #conservation. 🔗 More info: biodiversitygenomics.eu/2025/07/01/h... @ebpgenome.bsky.social
biodiversitygenomics.eu
Harmonising genomics to preserve nature: A call for standardisation in biodiversity research practices - Biodiversity Genomics Europe
Text by Luísa Marins “Biodiversity Genomics Research Practices Require Harmonising to Meet Stakeholder Needs in Conservation” In a new publication, the European Reference Genome Atlas (ERGA) members c...
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EVOCHANGE lab @evochange.bsky.social · 16/04/2025
We focus on: 👉 understanding how populations responded to past climate shifts & might adapt to current climate change 👉 studying the genetics & evolution of key adaptations 👉 using genomics to design biodiversity applications for conservation 👉 clariyfing species evolution & systematics
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EVOCHANGE lab @evochange.bsky.social · 16/04/2025
Our research group uses genomic tools to study evolutionary responses to changes in climate in natural populations, including processes such as local adaptation, hybridization, speciation. Read more about our work & check out our blog ⬇ www.cibio.up.pt/en/groups/ge... evoluchange.wordpress.com
evoluchange.wordpress.com
EVOCHANGE
Genomics of Evolutionary Change - CIBIO-InBIO, U. Porto
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