Sign in

Michael Habig

@michaelhabig.bsky.social
145 followers 58 following 8 posts

Group leader at Kiel University interested in Fungal Genomics, Accessory Chromosome and Horizontal Chromosome Transfer. Interaction between fungi and animals. fungal-evolutionary-genetics.de

PostsRepliesMedia
Reposted by Michael Habig
Andrew Urquhart @starships-andrew.bsky.social · 24/09/2026
Another step in the #Starship story - they move via a circular intermediate. Helps explain how these elements horizontally transfer and means that we can modify them into transformation vectors (starmids). www.biorxiv.org/content/10.6...
06136
Reposted by Michael Habig
Daniel Croll @danielcroll.bsky.social · 04/09/2026
Our lab is looking for PhD students to join us in 2027 🎓🎉 The projects can be structured around our research directions: - Transposable element dynamics - Fungal pangenomics - ML/language model genomics applications - Pathogen adaptation More here pathogen-genomics.org ("Jobs") and please share! 🙏
pathogen-genomics.org
Evolutionary genomics of pathogens
Croll lab at University of Neuchatel. The lab of Daniel Croll wants to understand how pathogens evolve to cause disease. For this, we mainly focus on major crop pathogens to unravel mechanisms of rapi...
23852
Reposted by Michael Habig
Arvid Ågren @arvidagren.bsky.social · 18/08/2026
New paper with Nick Davies and Kevin Foster in @natcomms.nature.com. We show that often neither selection against transposons’ deleterious effects nor exploitation by parasitic elements is sufficient to keep them in control. Only active host suppression does. www.nature.com/articles/s41...
07927
Reposted by Michael Habig
Gulnara Tagirdzhanova @metalichen.bsky.social · 11/08/2026
Our study on giant transposons Starship 🚀🧬 in the genome of the lichen fungus Xanthoria is now out in @pnas.org! What did we find out about Starships in #lichen fungi? 👇Updated thread below 🖥️ 🧪 🦠 🧫 #SymbioSky 1/6 www.pnas.org/doi/10.1073/...
17145
Reposted by Michael Habig
S. Lorena Ament @loreament.bsky.social · 05/08/2026
How do fungi distinguish conspecific self from non-self? The genetics of this fascinating topic are plagued with misunderstandings even amongst mycologists. We wrote a review/rant to address this confusion, out now! 🍄 #fungi #allorecognition #HETgenes www.sciencedirect.com/science/arti...
sciencedirect.com
Drawing the line: Clarifying fungal allorecognition from HET domains to het genes to heterokaryon incompatibility
The iconic networks of filamentous fungi are connected through hyphal fusions. While fusion is beneficial among hyphae from the same fungal individual…
12313
Reposted by Michael Habig
Ursula Oggenfuss @oggenfussursula.bsky.social · 20/07/2026
I am happy to share that my NWO Veni project was awarded 🍄🧬🔻! In this project, I will study how transposons shape genome folding, evolution, and adaptation in a fungal salamander pathogen. I am incredibly thankful for all the support and look forward to this next chapter #fungi #transposons #TEsky
A sketch of two salamander species, with a zoomed in picture of a fungal fruit body releasing spores, leading to a small stretch of DNA which ends in a folded chromosome with many green triangles indicating transposon insertions
3328
Reposted by Michael Habig
Metaorganism Research @crc1182.bsky.social · 23/06/2026
The @erc.europa.eu is providing 2.5 million euros for the “CrypticBenefits” research project at @uni-kiel.de through an Advanced Grant #ERCAdG awarded to Prof. Hinrich Schulenburg. Congratulations to our spokesperson @schulenburglab.bsky.social! More: www.metaorganism-research.com/news/crc-118...
Foto: Gunnar Dethlefsen
182
Reposted by Michael Habig
bioRxiv Evolutionary Biology @biorxiv-evobio.bsky.social · 04/06/2026
Evolution of supernumerary chromosomes in wheat blast fungal pathogens www.biorxiv.org/content/10.64898/20…
024
Reposted by Michael Habig
Cecile Lorrain @ccilelorrain.bsky.social · 15/04/2026
Thrilled to share our paper now out in Nature Plants 🎉 We developed a genome-host association (GHA) approach to study pathogen adaptation directly from field metadata by using the originating host cultivar as phenotype. www.nature.com/articles/s41...
nature.com
Genome–host association mapping reveals wheat pathogen genes involved in host specialization - Nature Plants
This study introduces genome–host association (GHA), leveraging natural epidemics to map the genetic landscape of host adaptation in the pathogen Zymoseptoria tritici. Applied to 832 wheat fungal stra...
35231
Michael Habig @michaelhabig.bsky.social · 13/04/2026
Interested in B chromosomes in plants/animals or accessory chromosomes in fungi? Don't miss the 6th B Chromosome Conference in Olomouc, Czech Republic! The abstract submission deadline is April 15th. Come and join this great research community! Details and registration: olomouc.ueb.cas.cz/en/6bcc
olomouc.ueb.cas.cz
6bcc_main
032
Reposted by Michael Habig
Bram van Dijk 🏳️‍🌈 @bramvandijk.bsky.social · 23/03/2026
Phd Position alert 🚨 Join our project ASTRAfun (Adaptation and Starship Traffic in Root-Associated fungi), in which we will use computational models to unveil the hidden dynamics of fungal evolution. It’s not going to be just regular fun. It’s going to ASTRAfun. 🤓 www.uu.nl/en/organisat...
uu.nl
PhD Position in Computational Modelling of Fungal Evolution
How do giant mobile elements called ‘Starships’ reshape fungal plant pathogens? Help us computationally model their spread and impact in nature and agriculture!
12527
Michael Habig @michaelhabig.bsky.social · 25/03/2026
Now out! We show that TEs can be horizontally transferred between fungal species via Starships. Once transferred, these TEs can become active, changing the genome organization and affecting the lifestyle of the recipient fungus. www.nature.com/articles/s41... @oggenfussursula.bsky.social #TEsky
nature.com
Transposable elements hitchhike on Starships across fungal genomes - Nature Communications
Large mobile genetic elements known as Starships act as vehicles for transferring transposable elements (TEs) between fungi. Here, Griem-Krey et al. show that these ‘hitchhiking’ TEs can drive rapid e...
09256
Reposted by Michael Habig
Ben Auxier @benauxier.bsky.social · 17/03/2026
Now up on bioRxiv! Working with @dianzheng.bsky.social and Jan van Kan, we tested how DNA is distributed between nuclei in multinucleate fungal spores. www.biorxiv.org/content/10.6...
biorxiv.org
12212
Reposted by Michael Habig
Daniel Croll @danielcroll.bsky.social · 05/03/2026
Please share widely! We think MycoMobilome can go a long way to support high-quality TE annotations across fungi! Also, try it on your favorite 🍄 genome and tell us what you think 😉
02710
Reposted by Michael Habig
Schulenburg Lab Kiel @schulenburglab.bsky.social · 30/01/2026
Join us at this year's meeting of the International Society of Evolution, Medicine, and Public Health - ISEMPH 2026 in Kiel. See: isemph.org/page-18356
isemph.org
ISEMPH - 2026 in Kiel, Germany
053
Reposted by Michael Habig
Slavica Janevska @slavi-jan.bsky.social · 07/01/2026
Beyond excited to see this work finally out in @narjournal.bsky.social! We show that epigenetic modifiers on fungal accessory chromosomes can contribute to the overall epigenetic profile. Many thanks to @gomezlucia93.bsky.social and our other amazing collaborators 👏🏻 academic.oup.com/nar/article/...
academic.oup.com
Facultative heterochromatin mediated by core and accessory chromosome-encoded H3K27-specific methyltransferases controls virulence in a fungal phytopathogen
Abstract. In many fungal phytopathogens, infection is regulated by accessory genomic regions enriched in facultative heterochromatin, but the precise role
13419
Reposted by Michael Habig
Cecile Lorrain @ccilelorrain.bsky.social · 28/11/2025
Our paper on Zymoseptoria tritici 3D genome organization is officially out! @iglavincheska.bsky.social link.springer.com/article/10.1...
link.springer.com
Three-dimensional genome architecture connects chromatin structure and function in a major wheat pathogen - BMC Biology
Background Genome spatial organization plays a fundamental role in biological function across all domains of life. While the principles of nuclear architecture have been well-characterized in animals ...
13524
Reposted by Michael Habig
Toby Baril @tobybarilbio.bsky.social · 29/10/2025
1/ Ever needed to annotate TEs in a fungal genome, but didn't know where to start? We have released #MycoMobilome, a community-focused non-redundant database of transposable element consensus sequences for the fungal kingdom, constructed from >4,000 fungal genomes! www.biorxiv.org/content/10.1...
16738
Reposted by Michael Habig
Slavica Janevska @slavi-jan.bsky.social · 21/10/2025
📣 I’m excited to share two open positions in my lab @leibniz-hki.de. For this interdisciplinary project with @luziagyr.bsky.social, I’m seeking (1) an enthusiastic PhD student interested in fungal natural product research and genetic engineering, as well as (2) a technical assistant 👇🏻
21721
Michael Habig @michaelhabig.bsky.social · 13/10/2025
Want to understand how entire fungal chromosomes can be horizontally transferred? Join us to unravel the mechanism/consequences of horizontal chromosome transfer in a fungal pathogen as part of an ERC-funded project. Postdoc/PhD positions available. fungal-evolutionary-genetics.de/open-positio...
fungal-evolutionary-genetics.de
Open Positions
ERC-funded project on the mechanism of horizontal transfer of entire fungal chromosomes PhD PostDoc
02421
Reposted by Michael Habig
Schulenburg Lab Kiel @schulenburglab.bsky.social · 08/09/2025
We are welcoming applications for a full professorship on Molecular and Evolutionary Zoology at Kiel Univerdity, Northern Germany, with fantastic facilities and infrastructure! @uni-kiel.de @crc1182.bsky.social @transevo.bsky.social www.nature.com/naturecareer...
nature.com
W 3 professorship in Molecular and Evolutionary Zoology - Kiel, Schleswig-Holstein (DE) job with Christian-Albrechts-Universität zu Kiel | 12844416
Kiel University aims to attract more qualified women to professorship positions. The Institute of Zoology at the Faculty of Mathematics and Natural...
02547
Reposted by Michael Habig
Hanna Johannesson @hannajohannesson.bsky.social · 07/09/2025
We have several open positions in my group, funded from the ERC Grant on the Early Sequestered Germline of Fungi. We search broadly for applicants at both PhD and master-level, with a dedicated interest in fungal evolutionary biology. Please forward and RT! Find the positions here: su.varbi.com
su.varbi.com
Lediga jobb vid Stockholms universitet
Jobb
05152
Michael Habig @michaelhabig.bsky.social · 05/09/2025
Thrilled and honoured to have received an #ERCStG from @erc.europa.eu for my project MobiChrom on horizontal chromosome transfer in fungal pathogens. We’ll explore key questions: What is the mechanism? How is specificity regulated? Are these selfish elements? Exciting times ahead - job ads soon!
3132
Reposted by Michael Habig
Judith Behnsen @judith-behnsen.bsky.social · 03/09/2025
Excited to share our new publication, out today in Nature! www.nature.com/articles/s41.... @kanchanj.bsky.social led this fascinating fungal-bacterial interaction project. We are grateful for our wonderful collaborators Brian Peters and David Underhill.
nature.com
Commensal yeast promotes Salmonella Typhimurium virulence - Nature
Commensal Candida albicans enhances the virulence and dissemination of Salmonella enterica subsp. enterica serovar Typhimurium.
1911856
Reposted by Michael Habig
Eli Thynne @elithynne.bsky.social · 24/08/2025
Really happy this is out in preprint - Congratulations to @graemekettles.bsky.social @zymohaider.bsky.social, and everyone involved for their hard work completing this study! It examines a Z. tritici effector that is a molecular mimic of plant LRRs, and suppresses PTI www.biorxiv.org/content/10.1...
biorxiv.org
Molecular mimicry of plant cell-surface immune receptors by fungal secreted leucine-rich repeat proteins
Leucine-rich repeat (LRR) receptor-like kinases (LRR-RLKs) are important plant immunity proteins. The wheat pathogen Zymoseptoria tritici produces many virulence effectors during infection; however, m...
13023
Reposted by Michael Habig
Frank Melzner @frankmelzner.bsky.social · 05/08/2025
Doctoral position on genomic basis of Fucus (brown algal) local adaptation - join our exciting #Fubluc team! Fully funded for 3.5 years & we also consider candidates with strong molecular or bioinformatic skillls but no marine / algal experience, see www.geomar.de/en/karriere/...
Fucus algal meadow in the Baltic Sea
13036
Reposted by Michael Habig
Amelia Barber @ameliabarberphd.bsky.social · 29/07/2025
My group at is hiring a PhD student to explore how fungal pathogens that live in the environment will adapt their genomes, acquire new phenotypes, and perhaps even increased infectivity as a result of climate change. Please share! More info and applications at @ jobs.uni-jena.de/vrbup
AI-generated drawing of a woman looking through a microscope with DNA and fungi drawn in the background. The text contains the same content as the bsky post.
14847
Reposted by Michael Habig
Team Thomma @teamthomma.bsky.social · 24/07/2025
📣 Happy to see the journal publication 📄 of our work on Starships 🚀 in Verticillium fungi: terrific work led by @yukiyosato.bsky.social rdcu.be/exBSp
rdcu.be
Starship giant transposons dominate plastic genomic regions in a fungal plant pathogen and drive virulence evolution
Nature Communications - Giant transposons, known as ‘Starships’, mediate horizontal gene transfer between fungal genomes. Here, Sato et al. show that Starships occupy genome regions...
410556
Reposted by Michael Habig
Slavica Janevska @slavi-jan.bsky.social · 17/07/2025
📣 I’m recruiting a #Postdoc to help us further our understanding on the infection strategies of our human fungal pathogen. If you’re enthusiastic about research, our interdisciplinary group @leibniz-hki.de will be a good fit for you! Please share! jobs.hki-jena.de/jobs/Postdoc...
jobs.hki-jena.de
Job opportunity Postdoctoral Researcher (m/w/div) in “Microbial Infection Strategies” at Leibniz HKI Jobportal
Wissenschaft/Forschung in Jena
01724
Reposted by Michael Habig
Genome Biology and Evolution @genomebiolevol.bsky.social · 07/07/2025
The July cover of Genome Biology and Evolution features the work of Dubin, @oliviaroth.bsky.social et al., who investigate sexual antagonism and sex determination in syngnathids with differences in how male pregnancy develops. 🔗 doi.org/10.1093/gbe/evaf103 📷 Olivia Roth #genome #evolution
097
Reposted by Michael Habig
Matthias C. Rillig @mrillig.bsky.social · 16/05/2025
Wow: check it out; these fungi distribute their chromosomes across different nuclei! Normally each nucleus has a complete set of all chromosomes. Distribution of haploid chromosomes into separate nuclei in two pathogenic fungi | Science www.science.org/doi/10.1126/...
science.org
Distribution of haploid chromosomes into separate nuclei in two pathogenic fungi
Nuclei define eukaryotes, enabling macromolecular compartmentalization and cellular regulation. Each nucleus is believed to contain one or more haploid sets of chromosomes (1N). However, we discovered...
05423
Reposted by Michael Habig
Thorsten Reusch @thorstenreusch.bsky.social · 26/04/2025
Junior faculty job alert in Germany - Marine Evolutionary Genomics @geomarkiel.bsky.social / University of Kiel www.geomar.de/en/karriere/... Marine study system of your choice (no microbes, sorry…), excellent infrastructure and ship access, moderate teaching requirements, closing date 6 June
17492
Reposted by Michael Habig
Daniel Croll @danielcroll.bsky.social · 25/03/2025
@guidopuccetti.bsky.social, Gabriel Scalliet and I are excited to share our latest work. Resistance in agriculture emerges fast, but we fail to grasp how the myriad mutations in pathogen populations contribute to this. Please check out and share our latest preprint: www.biorxiv.org/content/10.1...
22815
Reposted by Michael Habig
Mycological Society of America @msafungi.bsky.social · 17/02/2025
📣Call for Abstracts for the Mycological Society of America 2025 Annual Meeting this summer in Madison, Wisconsin. Submit your abstract by March 17th! #MSAfungi25 msa.joynconference.com/v2/
066
Michael Habig @michaelhabig.bsky.social · 10/02/2025
Our perspective on the horizontal transfer of accessory chromosomes in fungi is now available in Heredity: rdcu.be/d9jOR. It may be a regulated process. Very proud of this collaborative effort with Henrik de Fine Licht (@henriklicht.bsky.social) and Remco Stam (@rstam.bsky.social)!
rdcu.be
Horizontal transfer of accessory chromosomes in fungi – a regulated process for exchange of genetic material?
Heredity - Horizontal transfer of accessory chromosomes in fungi – a regulated process for exchange of genetic material?
01812
Reposted by Michael Habig
bioRxiv Genomics @biorxiv-genomic.bsky.social · 26/01/2025
Germline-restricted chromosome of songbirds has different centromere compared to regular chromosomes www.biorxiv.org/content/10.1101/202…
033
Reposted by Michael Habig
Team Thomma @teamthomma.bsky.social · 10/01/2025
📣New year, new preprint @biorxiv-microbiol.bsky.social 🎉! A study led by the brilliant @yukiyosato.bsky.social showing that Starship giant transposons dominate plastic genomic regions in the fungal plant pathogen Verticillium dahliae and drive virulence evolution. 🧵[1/12] doi.org/10.1101/2025...
doi.org
Starship giant transposons dominate plastic genomic regions in a fungal plant pathogen and drive virulence evolution
Starships form a recently discovered superfamily of giant transposons in Pezizomycotina fungi, implicated in mediating horizontal transfer of diverse cargo genes between fungal genomes. Their elusive nature has long obscured their significance, and their impact on genome evolution remains poorly understood. Here, we reveal a surprising abundance and diversity of Starships in the phytopathogenic fungus Verticillium dahliae. Remarkably, Starships dominate the plastic genomic compartments involved in host colonization, are enriched in virulence-associated genes, and exhibit genetic and epigenetic characteristics associated with adaptive genome evolution. We further uncover extensive horizontal transfer of Starships between Verticillium species and, strikingly, from distantly related Fusarium fungi. Finally, we demonstrate how Starship activity facilitated the de novo formation of a novel virulence gene. Our findings illuminate the profound influence of Starship dynamics on fungal genome evolution and the development of virulence. ### Competing Interest Statement The authors have declared no competing interest.
311669
Reposted by Michael Habig
bioRxiv Genomics @biorxiv-genomic.bsky.social · 13/12/2024
Reference-free identification and pangenome analysis of accessory chromosomes in a major fungal plant pathogen www.biorxiv.org/content/10.1101/202…
0124
Reposted by Michael Habig
Remco Stam @rstam.bsky.social · 09/12/2024
We're looking for a PhD student on disease mechanisms of the barley pathogen Ramularia collo cygni, supported by a (tax free) fellowship. Please RT.
0712
Michael Habig @michaelhabig.bsky.social · 24/11/2024
Proud of our recent preprint on Horizontal Chromosome Transfer in Fungi with Remco Stam and Henrik de Fine Licht.
02814