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Anne Daebeler

@anne-daebeler.bsky.social
261 followers 224 following 28 posts

Microbes, their ecology, physiology, and genomes - especially nitrifiers and CH4 cyclers. Group leader at BC CAS, Czechia. Co-founder of PCI Microbiology. 🦠🐈🌱🏳️‍🌈 microbescancycle.wordpress.com

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Reposted by Anne Daebeler
Ian Marshall @ianpgm.bsky.social · 01/09/2026
Two PhD positions with me at Aarhus University in Denmark are now open for applicants: phd.nat.au.dk/for-applican... Deadline November 1. Thanks @carlsbergfondet.dk!
phd.nat.au.dk
Anaerobic growth of aerobic methane-oxidising bacteria
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Daniel Tamarit @danieltamarit.bsky.social · 22/05/2026
I'm looking for an enthusiastic student to join my team as a PhD candidate on archaeal genome evolution 🦠💻 Work in beautiful Utrecht, at @binfutrecht.bsky.social, an international group full of caring, amazing scientists, and with frequent cake breaks! www.uu.nl/en/organisat... Please share! 🙏
uu.nl
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Reinier Egas @raegas.bsky.social · 11/06/2026
Happy to share our latest article in Environmental Science & Technology! We show that the acidophilic sulfate-reducing bacterium Acididesulfobacillus acetoxydans remains metabolically active under AMD-like acidity through cation transport and membrane remodelling! doi.org/10.1021/acs....
doi.org
Proton Stress Adaptation in Acidophilic Sulfate-Reducing Bacteria: Insights from Acididesulfobacillus Acetoxydans for Acid Mine Drainage Bioremediation
Acid mine drainage (AMD) waters are a global environmental threat due to their extremely low pH (<3) and high metal loads. Acidophilic sulfate-reducing bacteria (aSRB) can mitigate AMD by reducing sulfate to sulfide, a proton-consuming process that also precipitates metals as metal sulfides. Although sulfate reduction has been observed in AMD waters, most characterized aSRB are only moderately acidophilic. Here, we examined the pH tolerance and proton stress adaptation of the complete organic acid-oxidizing aSRB Acididesulfobacillus acetoxydans. Continuous chemostat cultivations were operated across a pH gradient, reaching steady states from pH 5.0 (optimum) to pH 2.9. In subsequent batch incubations, biomass from a pH 2.9 chemostat remained metabolically active at pH 2.5. Transcriptomic profiles remained remarkably stable across conditions, except for the upregulation of the K+-transporting ATPase (kdpABC) at lower pH, suggesting an increased reliance on the chemiosmotic gradient to impede proton influx. Lipid analysis revealed increased core lipid saturation, midchain methylation, and a shift in priming precursors from leucine to valine at low pH, indicating reduced membrane permeability and more energy-efficient biosynthetic pathways. Together, these adaptations likely reduce proton entry, explaining how aSRB adapt to AMD-like acidity and unlock the pH bottleneck for AMD bioremediation and metal recovery.
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FEMS @femsmicro.org · 04/06/2026
🔬 New funding opportunity in aquatic microbiology The Symbiosis in Aquatic Systems Initiative (Gordon and Betty Moore Foundation) is inviting proposals for high-risk, high-impact research on microbial symbiosis in marine and freshwater environments. Find out more: buff.ly/vQowRoS
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Marie C. Schölmerich @mschoelmerich.bsky.social · 28/05/2026
Do microbes breathe peat? 🦠⚡🌿 New preprint: we sampled Swedish bogs to 7 m and found dominant, uncultured Acidobacteriota & Verrucomicrobiota encode conserved extracellular electron transfer (EET) machinery that was transcriptionally active all the way down.
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Ian Marshall @ianpgm.bsky.social · 11/05/2026
bio.au.dk/om-institutt...
bio.au.dk
Tenure-track Assistant/Associate Professor/Professor in Ecophysiology and Ecology Department of Biology, Faculty of Natural Sciences, Aarhus University, Denmark - Ledig stilling på Aarhus Universitet
Ledig stilling ved Institut for Biologi, Aarhus Universitet
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Anne Daebeler @anne-daebeler.bsky.social · 15/04/2026
Yes, we all can do better: as authors and reviewers!
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Ella Sieradzki @sieravirus.bsky.social · 09/04/2026
Deadline is April 20th! Let’s get those viruses
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Beate Kraft @beatekraft.bsky.social · 07/04/2026
📣We have 5 PhD positions in hadal biogeochemistry and microbial ecology at the Danish Center for Hadal Research: lnkd.in/eJ6rp_Rk. 📣 Deadline: 4 May 2026 Please share widely! fa-eosd-saasfaprod1.fa.ocs.oraclecloud.com/hcmUI/Candid...
fa-eosd-saasfaprod1.fa.ocs.oraclecloud.com
PhD positions in hadal biogeochemistry & microbial ecology
Application deadline: 4 May 2026 at 23:59 hours local Danish time
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Emanuel Maiberg @emanuelmaiberg.bsky.social · 26/03/2026
after much deliberation and giving AI the benefit of the doubt, Wikipedia editors have had enough of AI slop. New policy bans LLM generated content, periodt www.404media.co/wikipedia-ba...
404media.co
Wikipedia Bans AI-Generated Content
“In recent months, more and more administrative reports centered on LLM-related issues, and editors were being overwhelmed.”
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Tillmann Lueders @luederslab.bsky.social · 27/03/2026
Microbiology Postdocs from all over Europe and the globe, do not miss this next splendid opportunity for career building and networking! 🦠🧑‍🔬🧑‍🎓💯🇵🇹
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Daan Speth @daanspeth.bsky.social · 25/03/2026
We now provide environmental metadata for the GlobDB genomes! 🖥️🧬🦠 More info here: globdb.org/news 🧵
Marker gene phylogeny of ammonia oxidizing archaea genomes in the GlobDB annotated with their prevailing environmental categories
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Heidi Aronson, PhD @heidi-aronson.bsky.social · 11/03/2026
How do you make methane from phosphite? Through interspecies H2 transfer! Our paper on lithosyntrophy is finally published - read about how we resolved the metabolic interactions in this phosphite oxidizing, methanogenic enrichment culture! #phosphorus #methanogenesis www.pnas.org/doi/10.1073/...
pnas.org
Lithosyntrophy: Obligate syntrophy in a phosphite-oxidizing, methanogenic culture | PNAS
The anaerobic conversion of organic matter to methane and carbon dioxide typically relies on obligate syntrophic interactions between bacteria and ...
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FEMS @femsmicro.org · 10/03/2026
Methane is the second most abundant greenhouse gas with a high heat-trapping capacity but a short lifespan in the atmosphere. So-called “microbial methane munchers” can lower methane emissions from diverse ecosystems, as explored on the new #FEMSmicroBlog. #FascinatingMicrobes
buff.ly
#FEMSmicroBlog: Exploring the metabolic activities of microbial methane munchers
#FEMSmicroBlog: So-called “microbial methane munchers” have the unique abilities to lower methane emissions from various ecosystems.
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Ella Sieradzki @sieravirus.bsky.social · 09/03/2026
I'm hiring my first postdoc! Apply by 20/4/26, position #20443. Seeking an environmental microbiologist with experience in metagenomics (preferably viromics) and molecular biology. Experience with targeted metabolomics is a plus. international.au.dk/about/profil...
international.au.dk
Postdoc in Soil viral ecology - Vacancy at Aarhus University
Vacancy at Department of Agroecology - Plant Pathology and Microbiology, Aarhus University
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Daan Speth @daanspeth.bsky.social · 02/03/2026
Interested in microbial proteins and their diversity? 🖥️🧬🦠 We have recently released the Amino Acid Sequence Toolkit (AASTK). AASTK is designed to work with the GlobDB to create and work with datasets of protein sequences. AASTK currently consists of 4 tools: - CASM - PASR - CUGO - Meta 1/
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Cameron Thrash @jcamthrash.bsky.social · 19/02/2026
Depth-resolved carbon dioxide and methane concentrations in 522 lakes, ponds, and reservoirs worldwide www.nature.com/articles/s41... #jcampubs
nature.com
Depth-resolved carbon dioxide and methane concentrations in 522 lakes, ponds, and reservoirs worldwide - Scientific Data
Scientific Data - Depth-resolved carbon dioxide and methane concentrations in 522 lakes, ponds, and reservoirs worldwide
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Soil Ecology Group @bes-soilecogroup.bsky.social · 18/02/2026
Introducing.... The Soil Ecology Seminar Series 2026! Join us on Wednesday the 25th of February at 1 pm GMT for the first installment. We will delve into microbial ecology with exciting talks from Dr Ashish Malik and Josh Thurston: Register your interest here: urldefense.com/v3/__https:/...
urldefense.com
Welcome! You are invited to join a meeting: The Soil Ecology Seminar Series - Microbial ecology. After registering, you will receive a confirmation email about joining the meeting.
Welcome! You are invited to join a meeting: The Soil Ecology Seminar Series - Microbial ecology. After registering, you will receive a confirmation email about joining the meeting.
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Tillmann Lueders @luederslab.bsky.social · 18/02/2026
♨️ Final version now published! 🥳 Explore our provocative new proposal on how to interpret the morphologies of archaean microfossils! 🌋🦠 Thanks to former colleague #DheerajKanaparthi for pulling this all the way through and to @elife.bsky.social for the like! 👍
doi.org
On the nature of the earliest known lifeforms
Microfossils reported from Archaean BIFs most likely were liposome-like protocells, which had evolved intracellular mechanisms for energy conservation but not for regulating cell morphology and replic...
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Amelia Rotaru @ameliarotaru.bsky.social · 04/02/2026
In addition to the 2 postdoc jobs posted yesterday, we’re recruiting 2 PhD students (environmental microbiology/ molecular ecology) to join us from April. The projects will map microbial populations across niches in bioelectrochemical systems relevant to biomethanation & link them to performance.
fa-eosd-saasfaprod1.fa.ocs.oraclecloud.com
Two fully funded PhD candidate positions in Electromicrobiology (3 years)
Application deadline: 4 March 2026 at 23:59 hours local Danish time
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Amelia Rotaru @ameliarotaru.bsky.social · 03/02/2026
I’m looking for two postdoctoral scientists in experimental evolution to join my team from April 2026 (or soon after). Please share! fa-eosd-saasfaprod1.fa.ocs.oraclecloud.com/hcmUI/Candid...
fa-eosd-saasfaprod1.fa.ocs.oraclecloud.com
Two postdoctoral positions (3-year) in Experimental Evolution of Methanogenic Microbiomes in Bioelectrochemical Systems
Application deadline: 4 March 2026 at 23:59 hours local Danish time
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bioRxiv Microbiology @biorxiv-microbiol.bsky.social · 03/02/2026
A national baseline for methane sink habitats and methanotroph diversity www.biorxiv.org/content/10.64898/20…
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Krzysztof T Jurdzinski @ktjurdzinski.eurosky.social · 26/01/2026
New preprint with @emma-bell.bsky.social, @doubleanders.bsky.social, Karin Garefelt et al. We assessed the use of 16S and 18S rRNA gene metabarcoding as input for machine learning models predicting abiotic and biotic factors. www.biorxiv.org/content/10.6...
biorxiv.org
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Anne Daebeler @anne-daebeler.bsky.social · 22/01/2026
Finally a satisfying answer to why some microbes just 'hate' organics. Amazing work!
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Alex Loy @loyteam.bsky.social · 16/12/2025
📢 20 postdoctoral positions (full-time, 4 years) for outstanding female scientists 👩‍🔬 🔬 @univie.ac.at The E-STEEM programme call opens January 7th, 2026 and closes March 3rd, 2026. careers.univie.ac.at/en/postdoc/e... I participate as a host...
careers.univie.ac.at
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Anne Daebeler @anne-daebeler.bsky.social · 15/12/2025
🚨 New paper out: Ecogenomics of Methylobacter 🦠 - three different MMOs to oxidize CH4 in single species - machinery for nitrogen, sulfur, iron, and hydrogen metabolisms - adaptations to low O2 conditions ... led by @wutkowska.bsky.social tinyurl.com/pmntwuk6 #MicrobeSky #pangenome
academic.oup.com
Uncovering hidden phylo: and ecogenomic diversity of the widespread methanotrophic genus Methylobacter
Abstract. The globally distributed genus Methylobacter plays a crucial role in mitigating methane emissions from diverse ecosystems, including freshwater a
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Qiyun Zhu @zhuqiyun.bsky.social · 11/12/2025
The scikit-bio paper in online in Nature Methods! Many thanks to our collaborators, community contributors and reviewers! We couldn’t have done it without you. www.nature.com/articles/s41... #Bioinformatics #OpenSource
nature.com
Scikit-bio: a fundamental Python library for biological omic data analysis - Nature Methods
Nature Methods - Scikit-bio: a fundamental Python library for biological omic data analysis
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Anne Daebeler @anne-daebeler.bsky.social · 10/12/2025
😍 It was wonderfully rewarding yesterday to see my first PhDs' student impressive performance defending his work on methanotrophs of 4 years. Congratulations Justus! Thanks to the two opponents @matehg.bsky.social and Antti Rissanen and to all our collaborators!!!
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CNRS @cnrs.fr · 01/12/2025
From January 1st 2026, the CNRS will cut access to one of the largest commercial bibliometric databases, Clarivate Analytics' Web of Science, along with the Core Collection and Journal Citation Reports.
cnrs.fr
The CNRS is breaking free from the Web of Science
From January 1st 2026, the CNRS will cut access to one of the largest commercial bibliometric databases, Clarivate Analytics'
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Anne Daebeler @anne-daebeler.bsky.social · 19/11/2025
📢 Extra, extra: our collaborative study on trace gas oxidizers in a warmer soil is out as a preprint www.biorxiv.org/content/10.1... Big thanks to @thanh0109.bsky.social @bobpmleung.bsky.social @wutkowska.bsky.social @andreasrichter.bsky.social @mathildebio.bsky.social @greening.bsky.social ...
biorxiv.org
Soil trace gas oxidizers divergently respond to short- and long-term warming
The upland soil microbiome is dominated by aerobic bacteria that oxidize atmospheric trace gases, including CO, H2, and CH4. As a result, soils are the largest biological sink for these climate-active...
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Daniela Barillà @danielabarilla.bsky.social · 09/11/2025
📢 Interested in #chromosomes 🧬 & #archaea thriving at the edge of life? PhD project in York,UK on how archaea pass on their genome to daughter cells.Friendly supervisors: me, @steve-quinn-lab.bsky.social & @georgerheath.bsky.social www.findaphd.com/phds/project... 📅 January 7, 2026 Please RP🙏thx!
Archaeal cells whose DNA has been stained with a blue dye. Zoomed-in images of mutant cells that display chromosome segregation defects.High-resolution images of DNA-protein complexes obtained with atomic force microscopy. Upon binding, the protein bridges distant sites, forming loops.
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Stephan Köstlbacher @stephkoe.bsky.social · 31/10/2025
🧙‍♀️ Something is brewing in the WitChi cauldron… After some excellent peer review feedback, a new update of WitChi is taking shape, refining how we detect and prune compositional bias in phylogenomic alignments. Stay tuned for the next release! 🧙‍♀️ Can’t model it? Prune it! github.com/stephkoest/w...
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Anne Daebeler @anne-daebeler.bsky.social · 29/10/2025
🚨 Come and work with us 🦠🧪🖥️ Postdoc position with lots of freedom available in my group - 1.5 years with options to extend - work on ecogenomics and physiology of N/CH4-cyclers - remote work possible 🤓 more info here: isme-microbes.org/postdoc-ecog... #microbesky
isme-microbes.org
Postdoc in ecogenomics and physiology of nitrifiers/methane-cyclers – ISME
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Anne Daebeler @anne-daebeler.bsky.social · 29/09/2025
🚨 Recent analyses out on ecogenomics of #Methylobacter led by Magda from our group! There sure is more to the genus than we tend(ed) to think 🤩 #microsky
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Magda(lena) Wutkowska @wutkowska.bsky.social · 29/09/2025
🦠 Among #Methylococcales, the genus #Methylobacter has the most genomes and MAGs deposited in the dbs. We found interesting stuff, e.g., some M. spp. encode all three MMOs: pMMO, pXMO, sMMO! Have a look at our ms: doi.org/10.1101/2025... with @anne-daebeler.bsky.social, Vojta, Justus&Julius
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cemess_vienna @cemess.bsky.social · 23/09/2025
Who fixes carbon in the dark ocean? A new study in @nature.com, led by @barbarabayer.bsky.social @univie.ac.at shows that ammonia‐oxidizing microbes contribute much less to dark carbon fixation than previously thought – leaving room for unknown players. Read more: 🔗 dome.univie.ac.at/news-events/...
dome.univie.ac.at
Who fixes carbon in the dark ocean?
A new study led by Barbara Bayer (CeMESS, University of Vienna) discovered that ammonia-oxidizing microorganisms contribute much less to carbon fixation in the ocean than previously assumed. The study...
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Roey Angel @roeyangel.bsky.social · 23/09/2025
📢 🦠 🏜️ Meet the first cultured methanogens from oxic soils! Using cultivation and comparative genomics, we descirbe Methanobacterium limanense sp. nov., Methanocella ebodanensis sp. nov., and a strain of Methanosarcina mazei as dwellers of desert biocrusts. With @anne-daebeler.bsky.social and other
SEM images of the three newly cultured methanogens
from desert biocrusts. Methanobacterium sp. (A) with a long rod shape, Methanosarcina sp. (B)
with aggregated, coccoid cell clusters, and likely Methanocella sp.
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Anne Daebeler @anne-daebeler.bsky.social · 22/09/2025
It was wonderful to take some time to think and develop new ideas ideas together on our annual retreat. And: great vegetarian food, amazing weather, and cats! @roeyangel.bsky.social, @wutkowska.bsky.social
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Kyle Mason-Jones @kylemojo.bsky.social · 17/09/2025
We are hiring! On the search for an ambitious post-doc with hot skills in metagenomics, metatranscriptomics and bioinformatics to join our EcoEnergeticS project with @michaeladippold.bsky.social Find the ad here: uni-tuebingen.de/zh/266340
uni-tuebingen.de
Opportunities
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DOME - Microbial Ecology 🧫🔬🦠🧬 @dome-vienna.bsky.social · 10/09/2025
Application deadline: 17 September 2025 Apply now to join us at CeMESS! ter.univie.ac.at/news-talks/n...
ter.univie.ac.at
We are hiring: Full Professor of Soil Ecosystems and Global Change
Soil ecosystems form the foundation of planetary health and play a critical role in climate feedback mechanisms. However, they are also vulnerable to the impacts of global change.
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PCI Microbiol @pci-microbiol.bsky.social · 01/09/2025
🤩New recommendation out: DNA capture for sequencing genes in N&C cycling microbiol.peercommunityin.org/articles/rec... by Siljanen et al. Thanks to W. Orsi, @kennethwasmund.bsky.social, and C. Wurzbacher for their review and Lizzy Wilbanks & Craig Herbold for handling. #microbesky #microbiomesky
microbiol.peercommunityin.org
A DNA capture approach for enrichment of nitrogen and methane cy...
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Anne Daebeler @anne-daebeler.bsky.social · 01/09/2025
📢 🦠 A new methanotroph from Czech peat! Through an effort led by PhD student in my group Justus Nweze we isolated and describe a new CH4-muncher. Potential for a flexible (annaerobic) metabolisms and cool pH adaptations. www.biorxiv.org/content/10.1... #microbesky #microbiomesky
biorxiv.org
Genomic and physiological characterization of 'Candidatus Methylocystis sumavensis', a novel acid-tolerant methanotroph from peatland
Methanotrophic bacteria in peatlands mitigate emissions of methane (CH4), a potent greenhouse gas. Yet, the identity, physiology, and adaptive traits of methanotrophs inhabiting acidic peatlands are s...
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PCI Microbiol @pci-microbiol.bsky.social · 11/08/2025
📢 A new tool for the Identification of Viral Elements in Microbial Dark Matter PCI Microbiol recommendation by C. Herbold on the #preprint by R. Pérez-Bucio, F. Enault, and C. Galiez Check it out here: microbiol.peercommunityin.org/PCIMicrobiol...
microbiol.peercommunityin.org
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Alex Loy @loyteam.bsky.social · 07/08/2025
Our recent paper by @julkras.bsky.social provides further insights into the metabolism of sulfoquinovose in humans and lab mice, and its prebiotic potential. 🦠🧫 #microbesky #microbiomesky microbiomejournal.biomedcentral.com/articles/10....
microbiomejournal.biomedcentral.com
Sulfoquinovose is exclusively metabolized by the gut microbiota and degraded differently in mice and humans - Microbiome
Background Sulfoquinovose (SQ) is a green-diet-derived sulfonated glucose and a selective substrate for a limited number of human gut bacteria. Complete anaerobic SQ degradation via interspecies metab...
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Alex Loy @loyteam.bsky.social · 07/08/2025
You know sulfoquinovose (SQ)? No?! You should if you are interested in diet-gut microbiome 🦠🧫interactions 😉 SQ is a sulfosugar that this part of a ubiquitous sulfonolipid in photosynthetic organisms and thus part of your diet - if you like leafy greens and algae 🥬 www.nature.com/articles/s41...
nature.com
Sulfoquinovose is a select nutrient of prominent bacteria and a source of hydrogen sulfide in the human gut - The ISME Journal
The ISME Journal - Sulfoquinovose is a select nutrient of prominent bacteria and a source of hydrogen sulfide in the human gut
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Nature @nature.com · 01/08/2025
Two vaccine candidates using mRNA technology elicit a potent immune response against HIV go.nature.com/4ov7WZI
go.nature.com
mRNA vaccines for HIV trigger strong immune response in people
Results from early-stage trial show that 80% of participants who received one of two HIV vaccine candidates produced antibodies against viral proteins.
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Hiro Imachi @hiro-imachi.bsky.social · 01/08/2025
“Isolation of a new methanotroph belonging to Mycobacterium” is now out! Awesome work by my former postdoc Hiromi Kambara, who led this project all the way. journals.asm.org/doi/10.1128/...
journals.asm.org
First isolation of a methanotrophic Mycobacterium reveals ammonia- and pH-tolerant methane oxidation | Applied and Environmental Microbiology
Methane is a significant contributor to climate change (27 times more potent as a greenhouse gas than carbon dioxide), and the largest biological sink is methane-oxidizing bacteria: methanotrophs. Alt...
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Peer Community In @peercommunityin.bsky.social · 20/06/2025
We're pleased to announce the University of Cambridge as a new supporter of PCI! We greatly appreciate their endorsement of our open, transparent, and community-driven peer review model.
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PCI Archaeology @pciarchaeology.bsky.social · 16/06/2025
Welcome to the team Univ. Mlebourne! @rachel.popelka.filcoff.com , @touremily.bsky.social @arcas.org.au
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Mark A. Hanson @hansonmark.bsky.social · 10/06/2025
New from The Strain Team: 🎊 Springer Nature Discovers MDPI 🎊 Springer Nature has spawned a copycat journal series called "Discover" mimicking #MDPI journal titles and citation behaviours. We even made a browser game to prove it (see 🔗). Gross! 😀 1/n #ResearchIntegrity #SciPub #AcademicSky
the-strain-on-scientific-publishing.github.io
Spinger Nature Discovers MDPI – The Strain on Scientific Publishing
Home page for the paper ‘The Strain on Scientific Publishing’ by Mark A Hanson, Dan Brockington, Paolo Crosetto and Pablo Gomez Barreiro
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