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Morgan Sobol

@msobol.bsky.social
610 followers 523 following 40 posts

Assistant Professor #newPI, Texas State University. Microbial EcoEvo ◊ Astrobio ◊ ‘Omics. Interested in unraveling Earth-life coevolution. sobollab.wp.txstate.edu 🌎🔭🧬🦠🧫

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Reposted by Morgan Sobol
Julia Van Etten @couchmicroscopy.bsky.social · 29/09/2026
Spread the word! I’m looking to recruit a PhD student to grow the Paulinella project. Some details can be found here: www.vanettenlab.org/join
vanettenlab.org
Join! — Van Etten lab at UMD
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Morgan Sobol @msobol.bsky.social · 30/09/2026
Cool work! I appreciate the break down 🙏 Going to sit and think about this some more.
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Morgan Sobol @msobol.bsky.social · 24/09/2026
If they used ~200 million tokens then I’m estimating it cost about $10k. They say it was done in ~21 hrs of computing time.
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Morgan Sobol @msobol.bsky.social · 21/09/2026
Thanks for the kind words, glad you enjoyed it! 🥰
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Reposted by Morgan Sobol
The Denver Post @denverpost.com · 05/08/2026
The Telluride Mushroom Festival has been a staple of the town’s summer season for more than 45 years. But how many more will it stick around?
denverpost.com
Telluride festival seeks donors after steep drop in 2026 ticket sales
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Dr. Lauren E. Fuess @laurenfuess.bsky.social · 27/07/2026
Thanks to this grant we will be hiring!! Our grad position ad is already live with more opportunities forthcoming. But if you’re interested in postdoc or technician positions, please reach out! fuesslab.wp.txstate.edu/opportunities/
fuesslab.wp.txstate.edu
opportunities – Symbiommunity Lab
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ulisdsrodriguez.bsky.social @ulisdsrodriguez.bsky.social · 24/07/2026
biorxiv.org
Phylogenetic correlation between the Type IV Secretion System and HIP1 suggest an adaptation for horizontal gene transfer conserved at the phylum level
Most cyanobacterial genomes are rich in the GCGATCGC octamer, also known as Highly Iterated Palindrome 1 (HIP1). Despite its description over three decades ago, the biological function of this highly ...
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Kaçar Lab at UW-Madison @kacarlab.bsky.social · 24/07/2026
New publication! Together with the Dekas Lab at Stanford, we explored microbial N₂O reduction in sulfidic waters across varying copper and what this reveal about ancient oceans. Microbial N₂O Reduction in Sulfidic Waters: Implications for Proterozoic Oceans onlinelibrary.wiley.com/doi/full/10....
onlinelibrary.wiley.com
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Tiffany Lowe-Power stands with Minnesota @tlowepower.bsky.social · 22/07/2026
Microbiology professors/PIs, would you like to join the microPI slack? Microbiology is defined broadly. This is an open tent. Professor/PI is inclusive to teaching focused roles, or pure research PI roles like a National lab PI. Reply or DM me and I will send you a link.
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Microbetv @microbetv.bsky.social · 14/07/2026
Dr. Morgan Sobol, joins the Quality Quorum today to discuss how microbes on early earth began interacting with elements like nitrogen, making life possible here and perhaps elsewhere in the universe! 👽 You will learn about the fundamental and amazing enzyme nitrogenase! @markowenmartin.bsky.social
youtu.be
Matters Microbial #134: Could Alien Life Use Different Chemistry?
YouTube video by MicrobeTV
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Mark O. Martin @markowenmartin.bsky.social · 14/07/2026
Every other Tuesday means a new episode of #MattersMicrobial! Dr. Morgan Sobol joins the #QualityQuorum to discuss the evolution of nitrogenase and life on other worlds. Please spread the #GoodMicrobialWorld @microbetv.bsky.social @asmicrobiology @univpugetsound youtu.be/UaZ6skeq884?...
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Morgan Sobol @msobol.bsky.social · 16/07/2026
Thanks again for having me 🙂
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Cameron Thrash @jcamthrash.bsky.social · 13/07/2026
Microbial N2O Reduction in Sulfidic Waters: Implications for Proterozoic Oceans onlinelibrary.wiley.com/doi/10.1111/... #jcampubs 🌊
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Kaçar Lab at UW-Madison @kacarlab.bsky.social · 19/06/2026
New preprint! How do you engineer one of biology’s most complex enzymes without breaking it? We used evolution as a guide to map a protein interface in nitrogenase, screening >9,000 variants to reveal sequence-function rules for future nitrogen fixation engineering. www.biorxiv.org/content/10.6...
biorxiv.org
Evolution-guided engineering of an ancient nitrogenase interface enhances enzyme activity and stability
Nitrogenase is the only enzyme capable of biological nitrogen fixation and a major target for sustainable agricultural engineering, yet its functional and structural complexity has made it difficult t...
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Morgan Sobol @msobol.bsky.social · 19/06/2026
Thanks again Mark for having me, was fun! 😄
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Hannah Reich @hannahgreich.bsky.social · 12/06/2026
It’s out! There are so many fun back stories with this project’s origin story & how it reshaped my career trajectory. For now, plz welcome my lab’s culture collection of #Symbiodiniaceae associated bacteria! & the many siderophores they produce! 🧪 doi.org/10.1093/fems...
doi.org
Widespread siderophore production among Symbiodiniaceae-associated bacteria
Abstract. Nutritional exchanges fuel the evolutionary and ecological dominance of multi-partner symbioses among reef-building corals and microbial associat
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Morgan Sobol @msobol.bsky.social · 25/05/2026
Had a blast spending the last week learning a lot, reconnecting with old friends, and making new connections together with Sobol lab members @ulisdsrodriguez.bsky.social, @alphaxidowell.bsky.social at #AbSciCon26🚀
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Kaçar Lab at UW-Madison @kacarlab.bsky.social · 06/05/2026
Latest paper out in Nature Communications! We find molecular dating evidence that life was using molybdenum and tungsten as far back as ~3.4 billion years ago, reshaping how we think about trace metals and early microbial evolution. Read here: www.nature.com/articles/s41...
nature.com
Biological use of molybdenum and tungsten stems back to 3.4 billion years ago - Nature Communications
The study shows that life began using molybdenum and tungsten enzymes as early as 3.7–3.1 billion years ago. Study reveals that key metabolic processes arose despite scarce metals and highlighting the...
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Asher Leeks @asherleeks.bsky.social · 28/04/2026
We're recruiting! We're looking for two graduate students to join us at UBC in Vancouver. Fully funded and open to global applicants, with flexible start-date. Topics include theory, bioinformatics, and microbiology. More details: asherleeks.com/apply #socialviruses #evosky #virosky 🧪
Leeks Lab is recruiting. We study social evolution in viruses. We're recruiting for two fully funded PhD or MSc positions, starting from September 2026. Evolutionary theory / experimental microbiology / viral bioinformatics. Experience optional / enthusiasm essential. asherleeks.com/apply
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Carolina Martinez Gutierrez @carolinamicro.bsky.social · 23/04/2026
🔬 Postdoctoral Opportunity – 51 Pegasi b Fellowship 📍University of California, Santa Barbara | ELME Lab We invite expressions of interest from candidates applying to the 51 Pegasi b Fellowship to be hosted in the Early Life & Microbial Evolution (ELME) Lab. Info ⬇️
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Morgan Sobol @msobol.bsky.social · 16/04/2026
No, ours is Synechococcus elongatus PCC 7942.
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Mark Mandel @markjmandel.bsky.social · 13/04/2026
Interested in a teaching faculty position in Bacteriology at UW-Madison? See the attached announcement! @uwbact.bsky.social
A job posting flyer from the Department of Bacteriology at the University of Wisconsin-Madison advertising a Teaching Faculty II position. The role involves coordinating and teaching microbiology lab courses and/or large enrollment introductory classes. The application deadline is May 5, 2026, at 11:59pm CDT. Applications must be submitted electronically via the Jobs at UW portal; emailed applications are not accepted. Applicants must upload a single document containing a cover letter, CV, and teaching philosophy. The job listing URL is https://jobs.wisc.edu/jobs/teaching-faculty-ii-madison-wisconsin-united-states, Job ID JR10009916. The flyer notes that Madison, Wisconsin is described as a vibrant place to live and work, combining college-town energy, lakeside scenery, and a community-focused atmosphere.
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Morgan Sobol @msobol.bsky.social · 03/04/2026
🚨New pub is live! It was really fun to write this with my friend @carolinamicro.bsky.social. If you're curious about how phylogenomics has shaped our understanding of early life and want guidance on how to do this kind of work yourself, then this review is for you. Enjoy! 🚀 doi.org/10.1093/jamb...
doi.org
Tracing ancient life through the genomic record
Abstract. Since its origins, life has been profoundly interconnected with Earth’s history. The genomes that underpin the diversity of modern life forms hav
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Morgan Sobol @msobol.bsky.social · 04/03/2026
We’re trying to put some together as well!
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Morgan Sobol @msobol.bsky.social · 28/02/2026
Looking for suggestions for concentrating multiple low concentration, replicate 50 uL DNA and RNA extractions ranging from 0-3 ng/uL. Column or mag bead preference? Or SpeedVac? TIA!! Please share.
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Cameron Thrash @jcamthrash.bsky.social · 17/02/2026
Ecological constraints and evolutionary trade-offs shape nitrogen fixation across habitats academic.oup.com/ismecommun/a... #jcampubs
academic.oup.com
Ecological constraints and evolutionary trade-offs shape nitrogen fixation across habitats
Abstract. From its earliest beginnings, life’s expansion into new habitats has been profoundly shaped by its reciprocal interactions with a changing Earth.
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Kaçar Lab at UW-Madison @kacarlab.bsky.social · 11/02/2026
Latest work! 🧬 We uncover how evolution of translation initiation factor 2 (IF2) extensions links translation to bacterial stress response. We map 7 structural architectures & show how terminal extensions are enriched in intrinsic disorder & phase-separation features. Link: doi.org/10.64898/202...
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Kaçar Lab at UW-Madison @kacarlab.bsky.social · 06/02/2026
What happened before the last universal common ancestor? Pre-LUCA evolution is hard to study. In our new Cell Genomics Perspective we spotlight how paralogous proteins open a window onto the deepest chapters of evolution. 🧬🌍 Out today! --> www.cell.com/cell-genomic... @cellpress.bsky.social
cell.com
Universal paralogs provide a window into evolution before the last universal common ancestor
Universal paralog protein families form due to gene duplications that occurred prior to the last universal common ancestor of life. This perspective describes how these protein families offer valuable...
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Kaçar Lab at UW-Madison @kacarlab.bsky.social · 06/02/2026
New paper! Why are some Nitrogen fixing microbes more complex? @msobol.bsky.social et al. find that microbes with more N2-fixation genes have larger, more versatile genomes, showing how changing environments shaped this key metabolism! > academic.oup.com/ismecommun/a... @isme-microbes.bsky.social
academic.oup.com
Ecological constraints and evolutionary trade-offs shape nitrogen fixation across habitats
Abstract. From its earliest beginnings, life’s expansion into new habitats has been profoundly shaped by its reciprocal interactions with Earth’s changing
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Reposted by Morgan Sobol
Carolina Martinez Gutierrez @carolinamicro.bsky.social · 25/01/2026
Paper alert 🚨 @lbobay.bsky.social and I explored the prevalence and potential drivers of genome rearrangements in bacteria. academic.oup.com/gbe/advance-...
academic.oup.com
Prevalence and Evolutionary Implications of Genome Rearrangements in Bacteria
Abstract. The genetic material of bacteria and archaea is organized into various structures and set-ups, attesting that genome architecture is dynamic in t
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Emil Ruff @emilruff.bsky.social · 06/01/2026
If you work on Dark Oxygen --> come to #AbSciCon2026 this year. 17-22 May, Madison Join our session on ""Dark Oxygen" Production: where does it happen, how does it work, and what does it mean for astrobiology?" Submit your abstract until January 14 More info here: agu.confex.com/agu/abscicon...
agu.confex.com
2026 Astrobiology Science Conference
Molecular oxygen (O₂) is often regarded as a strong biosignature in the search for life. Traditionally the production of O2 has been linked to photosynthesis, yet non-photosynthetic (“dark”) pathways ...
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Morgan Sobol @msobol.bsky.social · 31/12/2025
🚀 Planning to attend #AbSciCon2026 and study the role of metals in life evolution and life elsewhere? Then consider submitting an abstract to our session #20- Transition Metals in Habitability and Biological Evolution. Details below and at this link: agu.confex.com/agu/abscicon...
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Morgan Sobol @msobol.bsky.social · 16/12/2025
Congrats Dr. Cordova!! 🥳🍾
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Morgan Sobol @msobol.bsky.social · 13/12/2025
Congrats! Love the cover art 🔥
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Kaçar Lab at UW-Madison @kacarlab.bsky.social · 12/12/2025
🚨 New paper out (cover article!) We introduce #ChemOrigins, a community-curated, searchable database for experimental prebiotic chemistry, helping connect fragmented origins-of-life research across disciplines! Congrats @brunocuevaszuviria.bsky.social! royalsocietypublishing.org/rsfs/article...
royalsocietypublishing.org
ChemOrigins: a community-curated database for origins-of-life chemistry
Abstract. The origin of life is one of the most compelling questions in science. While experimental prebiotic chemistry has produced a wide range of reacti
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Maggie Langwig @maggielangwig.bsky.social · 10/12/2025
So happy this is finally out! We reconstructed the 1st large-scale spatiotemporal dataset of 600+ MAGs from San Francisco Bay and show they have functional redundancy in key N and S pathways. These functions may better recover from disturbance in this highly urban estuary 💧
academic.oup.com
Metabolic capacity is maintained despite shifts in microbial diversity in estuary sediments
Abstract. Estuaries are highly productive ecosystems where microbial communities drive nutrient and carbon cycling, supporting complex food webs. With inte
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Morgan Sobol @msobol.bsky.social · 19/11/2025
Would love to know more about that water filtering set up! 👀
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Morgan Sobol @msobol.bsky.social · 16/11/2025
This is so cool!
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Morgan Sobol @msobol.bsky.social · 12/11/2025
Safe travels!
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Morgan Sobol @msobol.bsky.social · 05/11/2025
New lab milestone: our 1st aquifer sampling on the books 😎 Can’t wait to learn more about the interesting microbes residing deep below us, so stay tuned! Much thanks to @edwardsaquifer.bsky.social for letting us tag along this week!! Pictured: Amber Busboom and Ulises Rodriguez Cruz
Amber, Morgan, and Ulises take a selfie in front of the Edward Aquifer well to be sampled.
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Jose Luis Rolando @jlrolando.bsky.social · 15/10/2025
I am recruiting a PhD student in microbial ecology for my lab at the University of Florida at the Ft. Lauderdale REC. My lab investigates the role of soil and plant-associated microorganisms in ecosystem functions, with an emphasis on biogeochemical cycles.
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Brett Baker @archaeal.bsky.social · 11/10/2025
Metabolic capacity is maintained despite shifts in microbial diversity in estuary sediments academic.oup.com/ismecommun/a...
academic.oup.com
Metabolic capacity is maintained despite shifts in microbial diversity in estuary sediments
Abstract. Estuaries are highly productive ecosystems where microbial communities drive nutrient and carbon cycling, supporting complex food webs. With inte
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Holly Rucker @hollyrucker.bsky.social · 10/10/2025
I had a great time being interviewed for this!
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Brett Baker @archaeal.bsky.social · 25/09/2025
The 1st annual Southern Geobiology Symposium will be hosted at UTMSI in fall 2026 Please fill out this interest form (forms.gle/znTuXQuxh9D2...) Questions may be directed to co-chairs, Penny Demetriades (pdemetriades@disl.org) and John Hinkle (john.hinkle@utexas.edu)
forms.gle
Southern Geobiology Symposium Interest Form
Please fill out this form to indicate interest in attending the Southern Geobiology Symposium, to be held at the University of Texas Marine Science Institute (Port Aransas, TX) in October/November of ...
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Dr. Lauren E. Fuess @laurenfuess.bsky.social · 12/08/2025
🚨🚨We’re hiring a postdoc!🚨🚨 Min two year contract; start in 2026 (flexible) & contribute to this project focused on understanding the link between bleaching recovery and disease in cnidarians!! Opportunities to work on side projects too! Deadline Nov 1! Info here: tinyurl.com/y2abjsem
fuesslab.wp.txstate.edu
opportunities – Symbiommunity Lab
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Martina Dal Bello @martinadalbello.bsky.social · 23/07/2025
📢 We're seeking a postdoc to work on a project funded by HFSP @hfspo.bsky.social at the intersection of bacterial physiology, ecology and evolution. You can find more details about the project, the position, and how to apply here www.dalbellolab.com/hfsp-project! #bacteria #ecosky #MevoSky #microSky
dalbellolab.com
HFSP project — dal bello lab
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Morgan Sobol @msobol.bsky.social · 23/07/2025
My postdoc position is open again! If you’re interested and did not get your application in last time, please send one by end of this week! Start date asap, latest by end of Fall. ‼️
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Kaçar Lab at UW-Madison @kacarlab.bsky.social · 07/07/2025
New preprint on ancient oceans! We challenge the idea of early Earth as major N2O source; reshaping views on climate & biosignatures. Led by S. Buessecker @annedekas.bsky.social lab! ➡️ Microbial N2O reduction in sulfidic waters: Implications for Proterozoic oceans www.biorxiv.org/content/10.1...
biorxiv.org
Microbial N2O reduction in sulfidic waters: Implications for Proterozoic oceans
Throughout Earth’s history, shifts in ocean redox influenced the bioavailability of trace metals, shaping the activity of microorganisms. In Proterozoic oceans, the precipitation of copper (Cu) with sulfide was hypothesized to limit the bioavailability of Cu. This limitation may have suppressed microbial reduction of nitrous oxide (N2O), due to the Cu dependency of nitrous oxide reductase (Nos). It is thought that without this critical microbial sink, Proterozoic oceans were a significant net source of N2O. Here, we revisit this paradigm in light of recently derived ∼20-fold lower estimates for sulfide in Proterozoic seawater and an empirical evaluation of the potential for microbial N2O reduction under sulfidic conditions. Leveraging publicly available environmental metatranscriptomes, we infer active N2O reduction from the detection of nosZ transcripts in multiple marine and lacustrine systems in which sulfide and Cu concentrations are analogous to those of the Proterozoic. In controlled culture experiments, we demonstrate that the purple non-sulfur bacterium Rhodopseudomonas palustris can reduce N2O at sulfide concentrations up to 100 µM, well above levels predicted for Proterozoic oceans. Based on trace metal speciation modeling, we suggest that Cu remains bioavailable under Proterozoic-like conditions as a dissolved CuHS complex. Using phylogenetics, we infer that early N2O reducers were probably anoxygenic phototrophs and performed N2O reduction as dark metabolism. Collectively, these observations suggest microbial N2O reduction occurs under euxinic conditions, implying that Proterozoic marine N2O emissions were substantially lower than previously proposed. Our conclusions inform our understanding of the microbial ecology in sulfidic waters, the early climate, and the search for extraterrestrial life. ### Competing Interest Statement The authors have declared no competing interest. National Aeronautics and Space Administration, https://ror.org/027ka1x80, 80NSSC17K0296
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Kaçar Lab at UW-Madison @kacarlab.bsky.social · 16/06/2025
How did life begin, and why does it matter today? Proud to be one of the organizers of a new @asm.org report supported by the Moore Foundation, exploring the origins of microbes & how understanding it can shape breakthroughs in biotech, climate, and the search for life. ➡️ asm.org/reports/earl...
asm.org
Early Microbial Life: Our Past, Present, and Future
The Academy report, funded by a grant from the Gordon and Betty Moore Foundation, examines the origins and trajectory of early microbial life to inform and inspire future research.
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Morgan Sobol @msobol.bsky.social · 12/06/2025
Welcome to the department Raúl! 😊
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