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The Banfield Lab

@banfieldlab.bsky.social
576 followers 69 following 16 posts

Located at the University of California-Berkeley at the Innovative Genomics Institute. Purveyors of Microbial Ecology, Bioinformatics, & Nanogeoscience. Reposts or likes≠endorsements. www.banfieldlab.com

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The Banfield Lab @banfieldlab.bsky.social · 29/07/2026
🧬👨‍💻🧪 In a new pre-print from Colin Robinson, computational evidence for eukaryotic lanthanide-dependent proteins is presented, suggesting that lanthanide-dependence may be a widespread feature of life, rather than a specialized function in a few methylotrophic bacteria. doi.org/10.64898/202...
doi.org
Evidence for lanthanide and PQQ dependent dehydrogenases in Eukarya
Lanthanides function as enzyme cofactors in bacteria, where they are widely distributed in pyrroloquinoline quinone-dependent 8-bladed beta-propeller dehydrogenases. No lanthanide-dependent enzymes, however, have been described outside prokaryotes. Here, we combined structural bioinformatics, phylogenetics, AlphaFold3 co-folding, coordination-sphere comparison, and quantum-mechanical cluster modeling to search for and rank putative lanthanide-coordinating 8-bladed beta-propeller enzymes in Eukarya. We identified candidate lanthanide-coordinating proteins in a diverse range of eukaryotes, predominantly plants and fungi, including species of clear industrial and agricultural relevance. A high-confidence subset matched validated bacterial Ln-binders based on both geometric similarity to canonical Ln-binding sites and on predicted Ln3+ versus Ca2+ selectivity. Our findings indicate that lanthanide biology likely extends beyond bacteria, with implications for plant, fungal, and broader eukaryotic metabolism, and warrant targeted biochemical investigation. ### Competing Interest Statement The authors have declared no competing interest. Japan Atomic Energy Agency, https://ror.org/05nf86y53, 63853--12998--44--//--PG1JL
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The Banfield Lab @banfieldlab.bsky.social · 15/06/2026
🌲🔥🧬 New pre-print from Elliot Weiss in the Banfield Lab! We tested whether inoculating burned forest soils with native microbes could aid recovery. A single inoculation accelerated the return of symbiotic fungi and nitrogen cycling! www.biorxiv.org/content/10.6...
biorxiv.org
Microbial inoculation accelerates post-fire soil recovery in a mixed conifer forest
High-severity wildfires of increasing size and frequency result in release of carbon dioxide and loss of timber resources, reduction in biodiversity, loss of soil, diminished water quality, and reduce...
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The Banfield Lab @banfieldlab.bsky.social · 06/06/2026
Big congrats to Susan Mullen and coauthors on this new preprint. 🎉 We're excited to share this work exploring microbial dispersal and establishment across river water, groundwater, soil, and hyporheic zone environments in the East River watershed. Read the preprint: www.biorxiv.org/content/10.6...
biorxiv.org
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The Banfield Lab @banfieldlab.bsky.social · 26/05/2026
Big congrats to @ameliarnelson.bsky.social and coauthors on this new preprint. 🎉 We're excited to share this work on microbial CO2 fixation across diverse soil ecosystems, highlighting widespread carbon fixation potential and expanded RuBisCO diversity. Check it out: www.biorxiv.org/content/10.6...
biorxiv.org
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Reposted by The Banfield Lab
Ling-Dong Shi @lingdong-shi.bsky.social · 24/05/2026
Super excited to share the final project of my postdoc career! We found that Borgs and mini-Borgs are widespread across diverse ecosystems. They don't just exist in Banfield Lab — they are everywhere! 🌎
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Reposted by The Banfield Lab
Amelia Nelson Kuhn @ameliarnelson.bsky.social · 23/05/2026
Excited to share a preprint from my postdoc research at @ucberkeleyofficial.bsky.social in the @banfieldlab.bsky.social! We surveyed soil microbiomes for autotrophy - and found it nearly everywhere, but most abundant in deep, saturated soils. Check it out below! www.biorxiv.org/content/10.6...
biorxiv.org
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The Banfield Lab @banfieldlab.bsky.social · 24/05/2026
🧬 New preprint out from @lingdong-shi.bsky.social et al. on the origin and evolution of archaeal Borg extrachromosomal elements across different environments. Congratulations Ling-Dong and co-authors! 📄 doi.org/10.64898/202...
doi.org
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The Banfield Lab @banfieldlab.bsky.social · 30/03/2026
Congratulations @wshuai.bsky.social and co-authors! We’re excited to introduce MODIFI, our new scalable method for detecting DNA modifications in PacBio metagenomic data and estimating ECE-host linkage. Check out the preprint: www.biorxiv.org/content/10.6...
biorxiv.org
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Reposted by The Banfield Lab
Luca Troman @lucatroman.bsky.social · 06/02/2026
🌀 We solved the structure for T. denticola periplasmic flagella! I'm very happy to finally showcase this work. A huge collaborative effort between myself, @bindusmitapaul.bsky.social, @debnathghosal.bsky.social, Jack Kim, @banfieldlab.bsky.social, Eric Reynolds and the Chris Fenno lab. 🦠 Enjoy!
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Innovative Genomics Institute @innovativegenomics.bsky.social · 26/01/2026
Today in Nature Communications, a team of IGI researchers from The Banfield Lab and Pam Ronald's labs uncover a new way to reduce methane emissions from rice by influencing the activity of rice paddy soil #microbes. Read more: ow.ly/45j150Y3WsI
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The Banfield Lab @banfieldlab.bsky.social · 23/01/2026
🚨 New pre-print alert! Jumbo circular extrachromosomal elements of methane-oxidizing archaea with variably extensive metabolic and defense gene repertoires www.biorxiv.org/content/10.6...
biorxiv.org
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Ling-Dong Shi @lingdong-shi.bsky.social · 23/01/2026
Excited to share our discovery of archaeal circular, jumbo extrachromosomal elements (up to ~535 kb genomes). One related, 409-kb genome is integrated in CH4-eating Methanoperedens, representing the largest integrative element in Archaea so far! Curious about what they are doing? See the paper
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Reposted by The Banfield Lab
Innovative Genomics Institute @innovativegenomics.bsky.social · 21/01/2026
A new preprint from The Banfield Lab looks at mobile genetic elements with single-cell precision. Read here: ow.ly/hFBX50Y0nQA #microbiology
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Reposted by The Banfield Lab
Innovative Genomics Institute @innovativegenomics.bsky.social · 15/01/2026
A new preprint on expanding the genetic code, from IGI's Jill Banfield, Peter Penev, and collaborators across the country: ow.ly/HiYO50XVNXR
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The Banfield Lab @banfieldlab.bsky.social · 07/01/2026
New preprint out: Revealing the pervasive landscape of MGE-host interactions in situ with single-cell genomics www.biorxiv.org/content/10.6... @mingyan-igi.bsky.social
biorxiv.org
Revealing the pervasive landscape of MGE-host interactions in situ with single-cell genomics
Mobile genetic elements (MGEs), including plasmids and viruses, drive microbial evolution and ecosystem dynamics, yet their distribution, host range, and functions remain poorly understood, especially...
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Reposted by The Banfield Lab
Diamond Lab @diamondlab.bsky.social · 05/01/2026
🚨 Our Lab is HIRING! If you are interested in characterizing model microbiomes using genome-resolved methods, statistical/metabolic modeling, and/or machine learning please submit an application here: aprecruit.berkeley.edu/JPF05234 #postdoc #sciencejobs #biology #microbiome
aprecruit.berkeley.edu
Postdoc - Microbiome - Innovative Genomics Institute
University of California, Berkeley is hiring. Apply now!
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Reposted by The Banfield Lab
Nature Biotechnology @natbiotech.nature.com · 02/01/2026
Troubleshooting common errors in assemblies of long-read metagenomes - @merenbey.bsky.social @banfieldlab.bsky.social go.nature.com/44P7nSm
go.nature.com
Troubleshooting common errors in assemblies of long-read metagenomes - Nature Biotechnology
Long-read sequence assemblies from metagenomes contain frequent errors.
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Reposted by The Banfield Lab
Doudna Lab @doudna-lab.bsky.social · 09/12/2025
✨New preprint! 🧵1/4 Excited to share our work on AI-guided design of minimal RNA-guided nucleases. Amazing work by @petrskopintsev.bsky.social @isabelesain.bsky.social @evandeturk.bsky.social et al! Multi-lab collaboration @banfieldlab.bsky.social @jhdcate.bsky.social @jacobsenucla.bsky.social🧬 🔗👇
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Innovative Genomics Institute @innovativegenomics.bsky.social · 08/12/2025
Out today in Science Magazine — First author Veronika Kivenson and PIs Jill Banfield (The Banfield Lab) and Alanna Schepartz team up to reveal a new genetic code in #archaea, with implications for #methane and #climate, and #bioengineering! Learn more: ow.ly/Kuem50Xurh0
illustration of petri dishes growing microbes
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The Banfield Lab @banfieldlab.bsky.social · 28/11/2025
Out now in Nature Communications: Convergent evolution of viral-like Borg archaeal extrachromosomal elements and giant eukaryotic viruses www.nature.com/articles/s41... @luisvalentin.bsky.social @lingdong-shi.bsky.social @martianmicrobe.bsky.social @mschoelmerich.bsky.social
nature.com
Convergent evolution of viral-like Borg archaeal extrachromosomal elements and giant eukaryotic viruses - Nature Communications
Borgs are large extrachromosomal elements of anaerobic methane-oxidizing archaea. Here, via in silico protein structure prediction of ~10,000 Borg proteins, the authors reveal that Borgs share numerou...
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Reposted by The Banfield Lab
Veronika Kivenson @kivenson.bsky.social · 23/11/2025
New paper out: An archaeal genetic code with all TAG codons as pyrrolysine: www.science.org/doi/10.1126/...
science.org
An archaeal genetic code with all TAG codons as pyrrolysine
Multiple genetic codes developed during the evolution of eukaryotes and bacteria, yet no alternative genetic code is known for archaea. We used proteomics to confirm our prediction that certain archae...
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The Banfield Lab @banfieldlab.bsky.social · 20/11/2025
Incredible science coming out from our lab. Congrats @kivenson.bsky.social 🎉
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The Banfield Lab @banfieldlab.bsky.social · 19/11/2025
Fresh from the press! Congrats @diamondlab.bsky.social
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The Banfield Lab @banfieldlab.bsky.social · 07/10/2025
Newest preprint from the group on megaplasmids in E. coli led by @assemblerag.bsky.social. In addition to our findings in metagenomic datasets, we identified an RNA-seq project from a giant panda gut sample with evidence of megaplasmids. We would like to include the data creators in our study.
doi.org
Megaplasmids associate with Escherichia coli and other Enterobacteriaceae
Humans and animals are ubiquitously colonized by Enterobacteriaceae , a bacterial family that contains both commensals and clinically significant pathogens. Here, we report Enterobacteriaceae megaplas...
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Reposted by The Banfield Lab
Ronda lab @rondalab.bsky.social · 01/05/2025
The 2025 Banfield Retreat was fantastic 🦠 so many talented scientists in one place is a sure way to come up with some great ideas! @banfieldlab.bsky.social
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Andreja Kust @andrejakust.bsky.social · 11/07/2025
🚨 Fresh from the press! We created and analyzed over 100 in vitro cyanobacterial consortia using well-characterized model cyanobacterial hosts to better understand how cyanobacteria recruit and interact with their microbiomes. Check it out: doi.org/10.1093/isme...
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Reposted by The Banfield Lab
Bethany Kolody, PhD @bethanykolody.bsky.social · 10/07/2025
manuscript here! www.science.org/doi/10.1126/...
science.org
Overturning circulation structures the microbial functional seascape of the South Pacific
Global overturning circulation partitions the deep ocean into regions, each with different physicochemical characteristics, but the extent to which these water masses represent distinct ecosystems rem...
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Bethany Kolody, PhD @bethanykolody.bsky.social · 10/07/2025
Many of you gave me so much encouragement when I posted here earlier about my 10 year long passion project to make a microbial map of the ocean. Pinch me because I can't believe I get to update you that today that research was published in the journal SCIENCE! @science.org
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Nature Microbiology @natmicrobiol.nature.com · 18/07/2025
Out now: Structure of an archaeal ribosome reveals a divergent active site and hibernation factor @jhdcate.bsky.social @banfieldlab.bsky.social @diptinayak.bsky.social & co #microsky www.nature.com/articles/s41...
nature.com
Structure of an archaeal ribosome reveals a divergent active site and hibernation factor - Nature Microbiology
Sequence and structural analyses reveal a divergent peptidyl transferase centre and a hibernation factor in archaea.
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Innovative Genomics Institute @innovativegenomics.bsky.social · 01/08/2025
In a recent paper, IGI's @jenniferdoudna.bsky.social @doudna-lab.bsky.social and Jill Banfield @banfieldlab.bsky.social collaborate with UCLA's @jacobsenucla.bsky.social to create a new, tiny #CRISPR tool for quicker, easier plant genome editing! Read more in this Q&A with Steve: ow.ly/6Szs50VGElf
ow.ly
Tiny CRISPR Tool Opens the Door to Faster, Simpler Plant Genome Editing
Tiny CRISPR Tool Opens the Door to Faster, Simpler Plant Genome Editing - Innovative Genomics Institute (IGI)
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Allison G @assemblerag.bsky.social · 01/10/2025
Most plasmids described in E. coli are small compared to the megaplasmids we identified here! Check out the preprint if you want to learn about these mysterious large elements and their potential functions 🧬. I’m very grateful to have had the opportunity to work on this in @banfieldlab.bsky.social
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The Banfield Lab @banfieldlab.bsky.social · 29/04/2025
Excited to share new research led by our very own @lingdong-shi.bsky.social showing that many archaeal 23S rRNAs are circularized in active ribosomes. Check out the preprint below.
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The Banfield Lab @banfieldlab.bsky.social · 28/04/2025
Genomes from long-read metagenomic assemblies contain rampant errors, highlighting the pressing need for stricter evaluation methods in long-read assembly algorithms. Read more in our paper with the Eren group. @floriantrigodet.bsky.social @merenbey.bsky.social
biorxiv.org
Assemblies of long-read metagenomes suffer from diverse errors
Genomes from metagenomes have revolutionised our understanding of microbial diversity, ecology, and evolution, propelling advances in basic science, biomedicine, and biotechnology. Assembly algorithms...
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