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Lewis Stevens

@phylewgenetics.bsky.social
615 followers 351 following 3 posts

I like worms, genomes, & evolution. Postdoc in Tree of Life @ Wellcome Sanger Institute. He/him.

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Reposted by Lewis Stevens
Laura Ross @laurarossevo.bsky.social · 08/09/2026
Ever wondered why diverse organism shrink their genome in specific cells? We try to make sense of these curious cases of programmed DNA elimination in a review that came out today @naturerevgenet.bsky.social trebuchet.public.springernature.app/get_content/... @sandraduharcourt.bsky.social
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KamilSJaron.bsky.social @kamilsjaron.bsky.social · 18/09/2026
I am so excited to see this preprint out. I started working on springtails with @laurarossevo.bsky.social in 2019, but this pinnacle of our efforts manifested only with heroric leadership of Sam Ebdon! So, what's the deal? 👇
Globular springtail Allacma fusca. Female, one of the samples in the linked preprint.
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Nature Reviews Genetics @natrevgenet.nature.com · 08/09/2026
New online! The mechanistic and evolutionary diversity of programmed DNA elimination
dlvr.it
The mechanistic and evolutionary diversity of programmed DNA elimination
Nature Reviews Genetics, Published online: 08 September 2026; doi:10.1038/s41576-026-01004-7Programmed DNA elimination is a developmentally regulated process in which specific DNA sequences are reproducibly removed from particular cell lineages. Here, the authors review the mechanistic diversity and evolutionary dynamics of DNA elimination, spanning chromosome breakage, whole-chromosome elimination and whole-genome elimination.
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sandraduharcourt.bsky.social @sandraduharcourt.bsky.social · 08/09/2026
Very happy to see our Nature Reviews Genetics article on programmed DNA elimination across eukaryotes out! A fantastic collective effort with an amazing group of colleagues, born from inspiring discussions at the Fondation des Treilles. rdcu.be/tmvKgsPZNhBa @laurarossevo.bsky.social
rdcu.be
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bioRxivpreprint @biorxivpreprint.bsky.social · 29/08/2026
Massive programmed DNA elimination during embryogenesis in the trioecious nematode Auanema rhodense www.biorxiv.org/content/10.64898/20…
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Gavin Woodruff @weirdworms.bsky.social · 21/08/2026
Species-specific barriers restrict virus spillover potential across the Caenorhabditis genus journals.plos.org/plosbiology/...
journals.plos.org
Species-specific barriers restrict virus spillover potential across the Caenorhabditis genus
Why do most cross-species virus jumps fail? Using Orsay virus across multiple Caenorhabditis species, this study reveals how mismatches in replication, genome balance, and transmission create layered ...
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mara lawniczak @marakat.bsky.social · 10/08/2026
new preprint from our group led by Talleh Almelli -- important for folks doing single cell on malaria parasites or other organisms with hyperdiverse gene families. www.biorxiv.org/content/10.6...
biorxiv.org
Evaluating the impact of a sample-matched reference genome on single-cell transcriptomic inferences in Plasmodium falciparum
Background Plasmodium falciparum field isolates exhibit genomic variation, including copy number variation and sequence divergence. In contrast, the P. falciparum 3D7 reference genome (Pf3D7) was deri...
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Petra Korlević @petrathepostdoc.bsky.social · 03/08/2026
bug is out of the rug, I got commissioned by @theguardian.com to #SciArt illustrate this year's goobies for #InvertebrateOfTheYear there are some really good ones stay tuned! www.theguardian.com/environment/...
theguardian.com
Revealed: the top 10 invertebrates of the year
At last! It’s time for our invertebrate of the year competition as voted for by you. Today, the common woodlouse – come back on Tuesday to find out who else made the top 10
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Petra Korlević @petrathepostdoc.bsky.social · 03/08/2026
I have only drawn a handful of dry and wet isopods over the last few #Invertober years, but they are good goobies
#SciArt 2x2 grid of semi-realistic isopod paintings on a black background, from top left:
zebra black and white isopod
green thin algae isopod
zebra black and yellow tod isopod
deep sea isopod but it is very orange with yellowish leggies
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Daniel Bolnick @danielbolnick.bsky.social · 29/07/2026
It’s almost as if for-profit companies are not a reliable partner in developing long term scientific innovation for public good.
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Arif M @arf-mln.bsky.social · 23/07/2026
Very excited to see the first chapter of my PhD out on bioRxiv! It began as a rotation project and became a pivotal part of my PhD on beetles, adding a complementary macroevolutionary perspective to my second chapter on early-stage speciation in Indonesian herbivorous ladybird beetles.
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KamilSJaron.bsky.social @kamilsjaron.bsky.social · 23/07/2026
New preprint: 338 coleopteran genomes reveal exceptional rearrangement variation compared to other insect orders. Big congrats to @arf-mln.bsky.social, for getting this giant piece together. Big collaboration of @joanameier.bsky.social's and my groups. 🧵👇 doi.org/10.64898/202...
Phylogeny of 338 species with tips painted by the chromosomal ancestry of their contemporary genomes (well separated colours indicate only few changes, while blending indicates rearrangements). Colouring of the branches is by the number of rearrangements. The ring between paints and phylogeny indicates wether the chromosomal rearrangement was fusion dominated (brown) or fission dominated (teal) process.  
Photo credits: Udo Schmidt, Lech Borowiec, JL Tachet, David Navrátil, Fred Chevaillot, Siga, Cosmin Manci, John Hallmén, Igor Souza-Gonçalves, Alex Hyde, H. Coiffait, David Ignace, Yves Bousquet.
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Carmen Denman Hume @carmcdhume.bsky.social · 17/07/2026
Huzzah! Today begins the Big Butterfly Count, a huge effort to collect data by @savebutterflies.bsky.social. Need help understanding why study butterflies? I interviewed @charlottewright.bsky.social co-lead of @projectpsyche.bsky.social and learned heaps. sangerinstitute.blog/2025/12/11/f...
sangerinstitute.blog
Five questions on butterfly and moth genomics with Charlotte Wright - Wellcome Sanger Institute Blog
Drawn to genomics like a moth to a flame, Wellcome Sanger Institute Postdoctoral Fellow, Dr Charlotte Wright, shares with us how she uses genomics to shed light on the evolutionary history of butterfl...
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Lewis Stevens @phylewgenetics.bsky.social · 17/07/2026
Parasitic worms are a big deal, but their genomes have been tricky to study 🪱. New technologies now let us generate high-quality genomes from individual worms, opening the door to a new era of parasite genomics. Steve Doyle (@stephenrdoyle.bsky.social) and I discuss what this means for the field 👇
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Carmen Denman Hume @carmcdhume.bsky.social · 26/03/2026
I can't resist sharing this wonderfully wormy blog about helminths of all sorts. My all-time favourite course in undergrad was one term of parisitology - so gross but so cool. 💩 Featuring @phylewgenetics.bsky.social and @stephenrdoyle.bsky.social 's research group this was well worth a read!
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Wellcome Sanger Institute @sangerinstitute.bsky.social · 17/03/2026
Parasitic worms might not be cute, but they are fascinating. From global health impacts to cutting-edge genomics, we explore why helminths matter more than you think. Read more 👉 sangerinstitute.blog/2026/03/17/wha…
Microscopic view of Haemonchus contortus, also known as barber’s pole worm.
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James McCulloch @jamesimcc.bsky.social · 03/03/2026
Why do the chromosomes of cyperids (sedges & rushes) split and fuse so regularly on evolutionary timescales? Is it because they have so many centromeres? Our new preprint, the first major paper of my PhD, addresses this question. 🧵⬇️ 1/12 www.biorxiv.org/content/10.6...
A sedge. It may look unassuming but its genome has several unusual features.
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Gavin Woodruff @weirdworms.bsky.social · 23/02/2026
Are you ready for *the* meeting about the evolutionary biology of Caenorhabditis and other nematodes?? EvoWorm 2026 will be held at McMaster University from June 16–19 Abstract submission deadline: April 15 Registration deadline: June 1 Further details can be found at evoworm.org
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Greg Albery @gfalbery.bsky.social · 03/10/2025
I'm v excited to be recruiting a PhD student to work on badger behaviour and ecology! Starting date is March 2026; see the ad here, or message me for more details: www.gregalbery.me/s/March-2026...
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Lewis Stevens @phylewgenetics.bsky.social · 28/10/2025
New preprint! We unexpectedly discovered that some Caenorhabditis species delete parts of their somatic genome early in development, which fragments their chromosomes and eliminates key germline genes. Multiple lines of evidence suggest this bizarre process was present in the ancestors of C. elegans
Figure with three panels. Left: phylogenetic tree of Caenorhabditis species, highlighting those with programmed DNA elimination. Middle: plot showing chromosomal locations of eliminated DNA. Right: Images showing DNA fragments being eliminated during early development.
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bioRxivpreprint @biorxivpreprint.bsky.social · 24/10/2025
Programmed DNA elimination was present in the last common ancestor of Caenorhabditis nematodes www.biorxiv.org/content/10.1101/202…
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bioRxiv Evolutionary Biology @biorxiv-evobio.bsky.social · 24/10/2025
Programmed DNA elimination was present in the last common ancestor of Caenorhabditis nematodes www.biorxiv.org/content/10.1101/202…
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Amjad Khalaf 🇵🇸 @amjadkhalaf.bsky.social · 22/10/2025
Really, really happy that our work on microsporidian genomes is now out in @plosbiology.org! A huge thank you to my coauthors, my supervisors @mblaxter.bsky.social & @marakat.bsky.social, the editors @roliroberts.bsky.social & Joseph Heitman, and the reviewers ❤️ plos.io/48HsAQJ
plos.io
Forty new genomes shed light on sexual reproduction and the origin of tetraploidy in Microsporidia
Microsporidia are single-celled, intracellular parasites of growing public health, agricultural, and economic importance. This study presents 40 new microsporidian genomes derived collaterally from Da...
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闵娅(Min Ya; Minya) PhD @minyaaa.bsky.social · 05/10/2025
And look at this graphic abstract….. 😱🤯
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Current Biology @currentbiology.bsky.social · 08/10/2025
Which journal would publish such a fragmented mess? www.cell.com/current-biol...
cell.com
Constraints on chromosome evolution revealed by the 229 chromosome pairs of the Atlas blue butterfly
The genome of the Atlas blue butterfly contains ten times more chromosomes than most butterflies, and more than any other known diploid animal. Wright et al. show that this extraordinary karyotype is ...
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Marcela Uliano-Silva @marcelauliano.bsky.social · 02/10/2025
Preprint Alert! 🦥 We produced complete genomes for 2 Xenarthra and placed them in a mammalian comparative framework. We found that Xenarthra harbour the largest number of retrocopies in mammals! www.biorxiv.org/content/10.1...
biorxiv.org
Retrocopy formation and domestication shape genome evolution in sloths and other xenarthrans
Xenarthrans, comprising sloths, anteaters, and armadillos, represent one of the most morphologically and physiologically specialised mammalian clades, yet the genomic basis of their adaptations remain...
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Charlotte Wright @charlottewright.bsky.social · 11/09/2025
How many chromosomes can an animal have? In our paper out now in @currentbiology.bsky.social we show that the Atlas blue butterfly has 229 chromosome pairs- the highest in diploid Metazoa! These arose by rapid autosome fragmentation while sex chromosomes stayed intact. www.cell.com/current-biol...
tinyurl.com
Constraints on chromosome evolution revealed by the 229 chromosome pairs of the Atlas blue butterfly
The genome of the Atlas blue butterfly contains ten times more chromosomes than most butterflies, and more than any other known diploid animal. Wright et al. show that this extraordinary karyotype is ...
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Matt Rockman @wormsrock.bsky.social · 24/09/2025
That is, Oceania looks like a source for Asian species, not the reverse! Here’s the preprint.
biorxiv.org
Caenorhabditis diversity on Pohnpei, Micronesia, provides evidence that the Elegans Supergroup has its roots in the Americas and diversified in the Pacific en route to Asia
The microscopic nematode Caenorhabditis elegans stands unrivaled as a model for developmental biology, neurobiology, and genetics, but fundamental aspects of its ecology, biogeography, and natural his...
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Matt Rockman @wormsrock.bsky.social · 24/09/2025
C. elegans is a real animal and we set out to understand how it comes to have its distinctive biogeography. Its ancestral center of diversity is in the higher elevation forests of Hawaii. Its closest relatives are spread across east Asia. Did they travel from Asia? [Preprint 🧵]
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Greg Albery @gfalbery.bsky.social · 08/09/2025
Celebrating the publication of our big collaborative spatial-social meta-analysis of density-dependent transmission effects, out now in Nature Eco Evo! doi.org/10.1038/s415... (or rdcu.be/eD6eB)
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Amjad Khalaf 🇵🇸 @amjadkhalaf.bsky.social · 16/05/2025
New preprint! We generate 40 new high-quality microsporidian genomes from infected arthropod hosts that were sequenced to create reference genomes by the Darwin Tree of Life project. 8 of our genomes are chromosome-level, and we’re able to generate Hi-C data for 7! 🧬 www.biorxiv.org/content/10.1...
biorxiv.org
Forty New Genomes Shed Light on Sexual Reproduction and the Origin of Tetraploidy in Microsporidia
Microsporidia are single-celled, obligately intracellular parasites with growing public health, agricultural, and economic importance. Despite this, Microsporidia remain relatively enigmatic, with man...
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Tom Mathers @tom-mathers.bsky.social · 16/05/2025
Struggling to find the tiny microchromosomes in draft bird genome assemblies? Our new #preprint introducing MicroFinder can help: www.biorxiv.org/content/10.1... 🧵 below (1/n) @sangerinstitute.bsky.social
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Peter Mulhair @petermulhair.bsky.social · 22/04/2025
Delighted to have been awarded a BBSRC Fellowship to look at the genetics of how insects have adapted to living in freshwater habitats 🧬🦋🪰🪲🌊 Extremely grateful to all who have supported me over the years and excited to be at Liverpool with some great colleagues! www.ukri.org/news/9-milli...
ukri.org
£9 million investment fuels groundbreaking bioscience research
From unlocking the secrets of animal movement to tackling antimicrobial resistance, UK’s brightest bioscience minds are pushing the boundaries of innovation.
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bioRxivpreprint @biorxivpreprint.bsky.social · 02/04/2025
A non-vesicular Argonaute protein is transmitted from nematode to mouse and is important for parasite survival www.biorxiv.org/content/10.1101/202…
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amyhbuck.bsky.social @amyhbuck.bsky.social · 02/04/2025
Very excited to share this collaborative work led by Kyriaki Neophytou. An extracellular Argonaute from a nematode parasite is transmitted to host cells and the non-vesicular form is functionally important (and now a vaccine candidate). An Argonaute vaccine... who would have thought.
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Kyriaki Neophytou @kyriakibakeri.bsky.social · 02/04/2025
Super excited to see our work shared with the scientific community! We know #Argonaute proteins can be extracellular, but can they be transferred to recipient cells and can they function? Happy reading!
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Claudia C. Weber @cc7740.bsky.social · 21/03/2025
Our paper on myxozoan genomes is out now in G3! See thread below for a brief recap (slight change of title from the preprint, same content). Thank you also to @arunsethuraman.bsky.social for handling the manuscript and @joannamasel.bsky.social for helpful comments. academic.oup.com/g3journal/ad...
academic.oup.com
Myxozoan parasite genomes assembled from contaminated host data reveal extensive gene order conservation and rapid sequence evolution
Abstract. Myxozoans are obligate endoparasites that belong to the phylum Cnidaria. Compared to their closest free-living relatives, they have evolved highl
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KamilSJaron.bsky.social @kamilsjaron.bsky.social · 20/03/2025
This is an absolutely insane story! Autosomes shattered to pieces 🫠 while sex chromosomes entirely intact 😎. Wicked evolution of atlas blues 🦋 by @charlottewright.bsky.social et al. @sangerinstitute.bsky.social
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Project Psyche @projectpsyche.bsky.social · 20/03/2025
(1/4) In its first year, #ProjectPsyche has engaged with the research community by creating networks with experts in moths and butterflies 🦋 Members of the project have also trained the research community in #GenomeCuration, a key step in the generation of genomes 🧬
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bioRxiv Evolutionary Biology @biorxiv-evobio.bsky.social · 17/03/2025
The 229 chromosomes of the Atlas blue butterfly reveal rules constraining chromosome evolution in Lepidoptera www.biorxiv.org/content/10.1101/202…
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bioRxiv Evolutionary Biology @biorxiv-evobio.bsky.social · 05/02/2025
Evolution of developmental bias explains divergent patterns of phenotypic evolution www.biorxiv.org/content/10.1101/202…
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EvolDir @evoldir.bsky.social · 07/01/2025
Two postdoctoral positions at the Wellcome Sanger Institute focus on symbiosis genomics, analyzing eukaryotic and prokaryotic cobionts. Closing date: Jan 26, … sanger.wd103.myworkdayjobs.com/en-U… #job
sanger.wd103.myworkdayjobs.com
Postdoctoral Fellow (Microbiomes of Tree of Life)
Do you want to help us improve human health and understand life on Earth? Make your mark by shaping the future to enable or deliver life-changing science to solve some of humanity’s greatest challenges. We have an exciting opportunity for a Postdoctoral Fellow to work with Tree of Life and Parasites and Microbes teams to identify cobionts in genome sequence datasets as they are generated and thus build a catalogue of host-microbe associations. This PDF contract will be 3 years fixed term at the Sanger Institute Life on planet Earth is a complex web of interactions between organisms, some mutualistic, some harmful, some neutral. While sequencing diverse eukaryotic species, the Tree of Life programme at the Sanger Institute is also able to assemble the genomes of many (often unexpected) bacterial, archaeal and eukaryotic microbial organisms. We already have assemblies for over 6,000 bacterial, archaeal and eukaryotic microbes. These “cobionts” represent a subsampling of the organisms associated with the target species, and may be pathogens, parasites, components of the microbiome or chance encounters. To understand these cobionts more fully, we are seeking a Postdoctoral Fellow to work in a collaboration between the Tree of Life (ToL) and the Parasites and Microbes (PaM) programmes to collate, annotate and explore the biology of the bacterial and archaeal cobionts we discover. About the Role: You will work with ToL and PaM teams to identify cobionts in genome sequence datasets as they are generated and thus build a catalogue of host-microbe associations. You will explore the evolutionary and systems biology of host-microbiome interactions, including identification of phylogenetic associations between hosts and microbes, exploration of virulence and other phenotypes in pathogens, exploration of phage metagenomes, definition and functional analysis of horizontal DNA transfers into host genomes, and other topics. Where required, additional data will be commissioned to better evidence particular aspects of host and microbe. About Us: The post is shared between the Blaxter group (which has a focus on large scale analysis of genome evolution across diversity) and groups within PaM who have interests in (respectively) the genomic epidemiology of human pathogens and human microbiomes in health and disease. You will be embedded in a supportive and dynamic environment to produce significant work of wide impact. About You: You should have a PhD in Biomedical science, statistical genetics, microbial genomics, computational biology or similar related discipline or equivalent working experience in bioinformatics. You will have the ability to analyse and interpret data with strong quantitative/computational skills. You will have relevant programming skills in modern languages including Python and R and experience with software development and good practice in coding. Applicants should have excellent communication and organisational skills, and have the ability to work collaboratively with a range of stakeholders. When you join us as a Postdoctoral Fellow, you will benefit from a unique and well-resourced learning environment that will equip you for your future career. We are proud to produce and analyse genetic and cellular data on a scale unmatched by other institutes in Europe to advance biological and medical science. Essential Scientific and Technical Skills: PhD in relevant subject area, or on track to be awarded your PhD within 6 months of starting the role Proven ability to deliver research projects A track record of demonstrating research excellence and expertise in your area of research Knowledge, skills and experience as appropriate to the research area including: Ability to analyse and interpret data with strong quantitative/computational skills Programming in relevant, modern languages, including Python and R; experience with software development and good practice in coding Excellent communication and organisation skills Ability to work collaboratively and inclusively with a range of stakeholders Essential Competencies and Behavioural Skills: Proven ability to develop and maintain effective working relationships with wide range of persons of differing level, abilities and knowledge Foster an inclusive culture where all can thrive and diversity is celebrated Team player with the ability to work with others in a collegiate and collaborative environment Ability to effectively communicate ideas and results and present orally to groups Commitment to personal development and updating of knowledge and skills Ability to prioritise, multi-task and work independently Detail-orientated, with strong organisational and problem-solving skills Other information Please apply with your CV and a Cover Letter outlining how you would meet the criteria set out above. Salary: PDF £38,000 - £49,156 Role profile Closing Date: 26th January 2025 Recruitment Process: Zoom interviews w/c 3rd Feb, Face to face Interviews w/c 10th Feb Contract Type: 3 years fixed term contract Hybrid Working at Wellcome Sanger: We recognise that there are many benefits to Hybrid Working; including an improved work-life balance, with more focused time, as well as the ability to organise working time so that collaborative opportunities and team discussions are facilitated on campus. The hybrid working arrangement will vary for different roles and teams. The nature of your role and the type of work you do will determine if a hybrid working arrangement is possible. Equality, Diversity and Inclusion: We aim to attract, recruit, retain and develop talent from the widest possible talent pool, thereby gaining insight and access to different markets to generate a greater impact on the world. We have a supportive culture with the following staff networks, LGBTQ+, Parents and Carers, Disability and Race Equity to bring people together to share experiences, offer specific support and development opportunities and raise awareness. The networks are also a place for allies to provide support to others. We want our people to be whoever they want to be because we believe people who bring their best selves to work, do their best work. That’s why we’re committed to creating a truly inclusive culture at Sanger Institute. We will consider all individuals without discrimination and are committed to creating an inclusive environment for all employees, where everyone can thrive. Our Benefits: We are proud to deliver an awarding campus-wide employee wellbeing strategy and programme. The importance of good health and adopting a healthier lifestyle and the commitment to reduce work-related stress is strongly acknowledged and recognised at Sanger Institute. Sanger Institute became a signatory of the International Technician Commitment initiative In March 2018. The Technician Commitment aims to empower and ensure visibility, recognition, career development and sustainability for technicians working in higher education and research, across all disciplines. Life at the Sanger Institute is unique. We are tackling some of the most difficult challenges in genomic research. Our people are shaping the future by delivering life-changing science with the reach, scale, and creativity to solve some of humanity’s greatest challenges. We aim to attract, recruit, retain and develop talent from the widest possible talent pool, thereby gaining insight and access to different markets to generate a greater impact on the world.
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Verity Hill @viralverity.bsky.social · 03/01/2025
Most of my time this year has been working on this new dengue nomenclature system with a huge and brilliant set of global collaborators!! Glad to see other people think it's worthwhile too 😎 @nathangrubaugh.bsky.social
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bioRxiv Evolutionary Biology @biorxiv-evobio.bsky.social · 27/12/2024
Population genomics reveals an ancient origin of heartworms in canids www.biorxiv.org/content/10.1101/202…
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Lulu Smyth @lulusmyth.bsky.social · 20/12/2024
Over the last few months I watched 100 Christmas films, and wrote about it for the FT Mag: on.ft.com/3BBYrUR It's been a year
on.ft.com
The wonderful, horrible, madcap world of the Christmas movie
Our festive viewing habits reflect Yuletide’s carnivalesque nature, a time when eccentric choices are celebrated
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Miguel V. Almeida @migueldvalmeida.bsky.social · 19/12/2024
First #bluetorial. 🎉🎉 We’re very happy to share our latest biorxiv #preprint, just in time before the holiday season. We explored how transposable elements (TEs) diversify eukaryotic proteomes and found a cool case in nematode F-box genes. #TEsky #evosky #Celegans Short 🧵 with highlights.
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holocentricity2025.bsky.social @holocentricity2025.bsky.social · 20/12/2024
Join us for the 1st Holocentric Chromosomes conference! If you work on holocentric plants🌱, arthropods🦋or worms🪱, cell biology or macroevolution🧬, this conference is for you! Amazing keynotes! @joanameier.bsky.social @amarques.bsky.social, Marcial Escudero and Ines Drinnenberg @UniNeuchatel
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Katerina Guschanski @kguschan.bsky.social · 01/12/2024
If you like genomics, speciation, and primates, this PhD position is for you! Unraveling the genomic architecture of speciation and gene flow in a crazy group of monkeys at U of Edinburgh . Do reach out with questions! evol.mcmaster.ca/brian/evoldi...
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mara lawniczak @marakat.bsky.social · 18/12/2024
very proud of this work -- if you are into malaria or popgen or evolutionary biology or genomics, have a read. and congratulations to the whole team behind this progress to understanding of malaria mosquito genomic diversity and population structure!
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Kathryn Else @kathelse.bsky.social · 19/12/2024
Interested in immune responses to parasites? Mark Viney, James Hewitson and I have an exciting PhD project available : BBSRC NWD CASE: The role of co-infections in modulating anti-nematode immune responses Do get in touch if interested! urldefense.com/v3/__https:/...
urldefense.com
BBSRC NWD CASE: The role of co-infections in modulating anti-nematode immune responses at University of Liverpool on FindAPhD.com
PhD Project - BBSRC NWD CASE: The role of co-infections in modulating anti-nematode immune responses at University of Liverpool, listed on FindAPhD.com
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