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Manuel Liebeke

@manuelliebeke.bsky.social
1.1K followers 364 following 34 posts

Professor for Metabolomics, Kiel University and Head of Metabolic Interactions group, Max Planck Inst. for Marine Microbiology #spatialMetabolomics #host-microbe #metabolomics #massspec #hostmicrobe #spatialbiology #coffeelover

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Reposted by Manuel Liebeke
BioMassSpec @realbiomassspec.bsky.social · 29/12/2025
Filtration-Based Rapid ECM-Hydrogel Elimination Enables Robust MALDI MSI of Intestinal Organoids #AC pubs.acs.org/doi/10.1021/...
pubs.acs.org
Filtration-Based Rapid ECM-Hydrogel Elimination Enables Robust MALDI MSI of Intestinal Organoids
The rapid development of matrix-assisted laser desorption/ionization mass spectrometry imaging (MALDI MSI) offers a powerful approach for the 2D metabolic profiling of intestinal organoids. However, i...
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Reposted by Manuel Liebeke
PLOS Biology @plosbiology.org · 09/12/2025
How do animals with lifelong growth modulate cell #proliferation? @eudaldpascual.bsky.social @ktgarschall.bsky.social @prhsteinmetz.bsky.social show that starvation induces G1/G0 #CellCycle arrest in Vasa2+/Piwi1+ #SeaAnemone cells; cycle re-entry is TOR-dependent @plosbiology.org 🧪 plos.io/48J2o6P
Top:  The phylogenetic position of Nematostella and localization of Vasa2 +/Piwi1+ cells within the juvenile polyp body plan. (A) Simplified phylogenetic tree highlighting the phylogenetic position of the sea anemone Nematostella vectensis and other animal taxa relevant for this study. All animal silhouettes are licensed under CC0,1.0 Universal Public domain and taken from https://www.phylopic.org. (B–D) Schematics showing the localization of Vasa2+/Piwi1+ cells in a juvenile polyp, depicted in longitudinal (B) or cross-section (C, D). (E) Schematic representation of the multipotent, Vasa2+/Piwi1+ stem/progenitor cell population and a simplified summary of their germinal and somatic progeny. (F) Schematics of cell cycle phases, highlighting the incorporation of EdU during S-phase (black line) and the phosphorylation of Histone H3 (pH3+) during metaphase. Bottom: Confocal image of two Vasa+/Piwi+ stem-like cells in the inner epithelial folds of the sea anemone Nematostella vectensis. Immunolabelling of mOrange2-Piwi1 fusion protein (yellow) in a transgenic knock-in line combined with nuclear stain (white). Image credit: Paula Miramón-Puértolas.
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Manuel Liebeke @manuelliebeke.bsky.social · 25/11/2025
Full room for our #metabolomics day in @uni-kiel.de with @brukercorporation.bsky.social a goLocal event after ASMS - incl. guest from uni Copenhagen with Nanna Bjarnholt speaking about #spatialMetabolomics in plants
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Manuel Liebeke @manuelliebeke.bsky.social · 30/09/2025
Teamwork is dream work - a division of labor in our oceans helps to degrade a very complex sugar polymer by Andreas Sichert from the Sauer lab at ETH www.biorxiv.org/content/10.1...
biorxiv.org
A division of labor controls the degradation of fucoidans in the ocean
Fucoidans—complex polysaccharides produced by brown algae and diatoms—contribute to long-term carbon sequestration due to their resistance to microbial degradation[1][1],[2][2]. While individual micro...
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Reposted by Manuel Liebeke
West Coast Metabolomics Center UCDavis @metabolomics-wcmc.bsky.social · 29/09/2025
We are truly proud of our Bits & Bites # 06: "Using MetaboAnalyst for Metabolomics Statistics and Data Visualizations" October 9, 2025, from 9 am to 1 pm Instructor: Dr. Jeff Xia, McGill University, register and pay: na.eventscloud.com/ereg/index.p... #metabolomics @jjjvanderhooft.bsky.social
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Reposted by Manuel Liebeke
Alan Cartmell @acartmell47.bsky.social · 21/09/2025
Happy to have this collaborative work out on Biorxiv on how Akkermansia muciniphila deploys it’s carbohydrate sulfatases to metabolise colonic mucin, and that processed glycopeptides/proteins of colonic mucin are a favoured carbon source #glycotime. www.biorxiv.org/content/10.1...
biorxiv.org
The role of Akkermansia muciniphila sulfatases in colonic mucin utilisation
Akkermansia muciniphila , an obligate mucin degrader, is a major member of the human colonic microbiota and has been associated positive health outcomes. Mucins are complex glycoproteins that contain ...
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Manuel Liebeke @manuelliebeke.bsky.social · 09/09/2025
Clever way to use high res mass spec data for #metabolite networks in spatial #metabolomics data pubs.acs.org/doi/10.1021/...
pubs.acs.org
Relational Graph Convolutional Network for Robust Mass Spectrum Classification
Supervised machine learning methods have shown impressive performance in interpreting mass signals and automatically segmenting spatially meaningful regions in Mass Spectrometry Imaging (MSI). Such se...
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Reposted by Manuel Liebeke
Michael Galperin @mygalperin.bsky.social · 02/09/2025
Some thoughts on metabolism and metabolic pathway holes (PMID: 40892933) pnas.org/doi/10.1073/....
pnas.org
Using bioinformatics for identifying and plugging metabolic pathway holes | PNAS
Using bioinformatics for identifying and plugging metabolic pathway holes
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Reposted by Manuel Liebeke
Irene Miguel-Aliaga @irenemiguel-aliaga.bsky.social · 19/03/2025
Lab’s latest: (mouse) mums grow their guts during pregnancy and lactation: www.cell.com/cell/fulltex...
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Reposted by Manuel Liebeke
Emmanuele Severi @emmseveri.bsky.social · 22/08/2025
www.nature.com/articles/s41... #microsky
nature.com
Discovery of a widespread chemical signalling pathway in the Bacteroidota - Nature
The N-acyl-cyclolysine system regulates the expression of co-localized operons encoding diverse secreted molecules in Bacteroidota.
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Reposted by Manuel Liebeke
Nature Metabolism @natmetabolism.nature.com · 08/08/2025
#Throwback 🧪 REVIEW | Futile lipid cycling: from biochemistry to physiology C Wolfrum et al.
bit.ly
Futile lipid cycling: from biochemistry to physiology - Nature Metabolism
Sharma et al. review the regulation and biological functions of apparently ‘futile’ dynamic lipid cycle in regulating whole-body metabolic homeostasis.
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Reposted by Manuel Liebeke
Daniel Drucker @danieljdrucker.bsky.social · 31/07/2025
Here the authors propose that gut #microbiota derived peptides exhibit potential for prevention and treatment of human metabolic disorders www.nature.com/articles/s41...
nature.com
Polypeptides synthesized by common bacteria in the human gut improve rodent metabolism - Nature Microbiology
Two polypeptides synthesized by common bacterial strains in human gut microbiota lower body fat and blood glucose and increase bone density, improving the metabolism of rodents.
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Reposted by Manuel Liebeke
Ke Yu @keyu01.bsky.social · 03/08/2025
Now online. This work summarizes plant immunity triggered by cell wall–derived molecules from both sides. Happy to be back in immunity and grateful to be involved. Enjoy! www.cell.com/plant-commun...
cell.com
Oligosaccharide Elicitors in Plant Immunity: Molecular Mechanisms and Disease Resistance Strategies
Short Summary: This review examines how oligosaccharide elicitors from pathogens and plants activate immune responses through membrane receptors, detailing their types, functions, and signaling pathwa...
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Reposted by Manuel Liebeke
Sean Gibbons 🦠💩 @gibbological.bsky.social · 24/07/2025
Interesting work on characterizing steroid-modifying enzymes in commensal gut bacteria: "Identification of gut bacteria reductases that biotransform steroid hormones" www.nature.com/articles/s41...
nature.com
Identification of gut bacteria reductases that biotransform steroid hormones - Nature Communications
Here, the authors identify and characterize three gut bacterial enzyme families that metabolize endogenous and synthetic steroid hormones, showing to act on diverse substrates, to exhibit gene fusions...
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Reposted by Manuel Liebeke
Groussin & Poyet Labs @mmmicrobiomelab.bsky.social · 14/07/2025
And don’t miss Ana’s Session talk on Thursday, July 17: "Evolution of microbiomes and host-bacteria interactions in humans" 🧬 Catch it at 13:10 in Room Brown 3 #FEMS2025 @globalmicrobiome.bsky.social microbiomeconservancy.org
microbiomeconservancy.org
Frontpage - Global Microbiome Conservancy
Advancing Microbiome Science Equitably and Ethically Exploring the Microbiome We aim to advance our knowledge of the human microbiome and boost global research capacity. By curating and sharing a high...
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Manuel Liebeke @manuelliebeke.bsky.social · 04/07/2025
Congrats to @margotbligh.bsky.social 🎉 terrific work on a complex problem in mass spectrometry - See her new GlycoAnnotateR tool for De Novo #Glycan Annotation of Mass Spectrometry Data // it works for all, #LCMS #MSI pubs.acs.org/doi/10.1021/... @mpimarinemicrobio.bsky.social
pubs.acs.org
De Novo Glycan Annotation of Mass Spectrometry Data
Carbohydrates are fundamental molecules of life that are involved in virtually all biological processes. The chemical diversity of glycans─carbohydrate chains─enables diverse functions but also challe...
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Reposted by Manuel Liebeke
Jean-Michel Ané @jeanmichelane.bsky.social · 27/06/2025
Deciphering microbial spatial organization: insights from synthetic and engineered communities | ISME Communications | Oxford Academic
academic.oup.com
Deciphering microbial spatial organization: insights from synthetic and engineered communities
Microbial communities are frequently organized into complex spatial structures, shaped by intrinsic cellular traits, interactions between community members, initial growth condition or environmental factors. Under- standing the mechanisms that drive these spatial patterns is essential for uncovering fundamental principles of microbial ecology and for developing applications. Using genetic engineering and synthetic microbial communities allows us to decipher how specific parameters influence spatial organization. In this review, we highlight recent studies that leverage synthetic microbial communities to deepen our understanding of microbial spatial ecology. We begin by exploring how initial conditions, such as cell density and relative species abundance, influence spatial organization. We then focus on studies that examine the role of individ- ual microbial traits, such as cell shape and motility. Next, we discuss the impact of contact-dependent and long-range interactions, including metabolite exchange and toxin release. Furthermore, we highlight the in- fluence of environmental factors on spatial dynamics. Finally, we address the current limitations of synthetic approaches and propose future directions to bridge the gap between engineered and natural systems.
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Manuel Liebeke @manuelliebeke.bsky.social · 27/06/2025
Happy to share our new comment on How #spatial #metabolomics is transforming #microbiology and gives insights into #microbe-microbe and #host-microbe interactions. #OpenAccess in @molsystbiol.org @crc1182.bsky.social @uni-kiel.de @mpimarinemicrobio.bsky.social doi.org/10.1038/s443...
doi.org
From microbes to molecules: unveiling host-microbe interactions with spatial metabolomics | Molecular Systems Biology
EMBO Press is an editorially independent publishing platform for the development of EMBO scientific publications.
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Reposted by Manuel Liebeke
Trends in Plant Science @cp-trendsplantsci.bsky.social · 04/06/2025
Coexistence ecology of pathogen-inhibiting microbes in the phytobiome #plantscience
dlvr.it
Coexistence ecology of pathogen-inhibiting microbes in the phytobiome
Certain microbes have considerable potential as biocontrol agents against various pathogens, but they coexist with other microbial species in complex networks of interactions that influence their function in a host-dependent manner. These interactions and underlying mechanisms are still largely unknown. In this review we focus on Pseudomonas, a versatile genus of bacteria with adaptable physiological and metabolic traits, functioning as both symbionts and pathogens. We review the direct antagonism pathways Pseudomonas uses to inhibit different pathotypes and its role in indirectly inducing systemic defense responses in plants. We provide insights into bacterial coexistence and interactions in host plant–microbe and microbe–microbe relationships, considering pairwise and community dynamics. Understanding these interactions will help optimize synthetic communities and improve practices for sustainable agriculture.
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Reposted by Manuel Liebeke
Schulenburg Lab Kiel @schulenburglab.bsky.social · 04/06/2025
See our new paper, headed by Katja Dierking and her team, esp. Lena Peters, on microbiota protection against pathogens @crc1182.bsky.social @uni-kiel.de @manuelliebeke.bsky.social @kaletalab.bsky.social doi.org/10.1038/s414...
doi.org
Polyketide synthase-derived sphingolipids mediate microbiota protection against a bacterial pathogen in C. elegans - Nature Communications
Here, Peters et al. report that Pseudomonas fluorescens protects Caenorhabditis elegans against pathogen infection via polyketide synthase-derived sphingolipids, uncovering a non-canonical bacterial s...
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Reposted by Manuel Liebeke
Allan Konopka @hamatsa50.bsky.social · 31/05/2025
Think Like a Microbe is back!! 🧪🧫 #philsci open.substack.com/pub/thinkmic...
open.substack.com
Microbial Interactions – an alternative taxonomy
Is it mostly Darwin or Marx: ‘survival of the fittest’ vs ‘socialist cooperation’
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Reposted by Manuel Liebeke
Jean-Michel Ané @jeanmichelane.bsky.social · 30/05/2025
Plant Root Exudates: Advances in belowground signaling networks, resilience, and ecosystem functioning for sustainable agriculture - ScienceDirect
sciencedirect.com
Plant Root Exudates: Advances in belowground signaling networks, resilience, and ecosystem functioning for sustainable agriculture
• Plant root exudates characteristically orchestrate diverse ecological interactions on a multi-kingdom scale ranging from microbes to neighboring plants • RE-induced direct and indirect biogeochemical cycling of belowground resources offers a robust tool to promote sustainable cultivation with limited dependence on chemical inputs • Root exudates-mediated interactions exhibit critical implications in modern agricultural settings to design cropping patterns and combinations, diagnostics, plant health monitoring, and highly precise decision making • Despite several benefits of REs, and strong agro-ecological implications, dearth areas exist concerning the composition, mechanistic interactions, and environmental influence; addressing the same will allow leveraging positive societal impacts
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Manuel Liebeke @manuelliebeke.bsky.social · 27/05/2025
We are hiring in Kiel (Germany) #Postdoc in #Metabolomics (LC-MS) with a focus on intestinal metabolomics in #health and #disease. Together with my colleague Konrad Aden we are looking for a new team member #ECR. PM or email us for questions (see details www.arbeitsagentur.de/jobsuche/job...
arbeitsagentur.de
PostDoc position (m/f/d) in intestinal metabolomics in health and disease bei Universitätsklinikum Schleswig-Holstein
Jobsuche der Bundesagentur für Arbeit. Hier Stellensuche nach neusten Jobs oder Ausbildungsplätzen starten in einer der größten Jobbörsen Deutschlands.
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Reposted by Manuel Liebeke
Universität Kiel (CAU) @uni-kiel.de · 22/05/2025
Double success for Kiel University: The Clusters of Excellence 'Precision Medicine in Chronic Inflammation' (PMI) and 'ROOTS – Social, Environmental, and Cultural Connectivity in Past Societies' @clusterroots.bsky.social will be funded for another seven years!
uni-kiel.de
Kiel University in the Excellence Strategy: Success for the two Kiel clusters PMI and ROOTS
The German Research Foundation announced which collaborative research projects will receive funding for the next seven years as Clusters of Excellence.
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Ákos T Kovács @evolvedbiofilm.bsky.social · 19/05/2025
Spatially structured bacterial interactions alter algal carbon flow to bacteria -in #ISMEJournal academic.oup.com/ismej/advanc...
academic.oup.com
Spatially structured bacterial interactions alter algal carbon flow to bacteria
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Manuel Liebeke @manuelliebeke.bsky.social · 15/05/2025
The 1st talks of our #metaorganism symposium in Kiel have been eye opening and fascinating! Microbes interacting with worms, squid, plants and jellyfish - so much novel cross talk shown. #symbiosis @crc1182.bsky.social
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Thilo Gross @thilogross.bsky.social · 07/05/2025
Hey, new paper by @cleggtom.bsky.social and me is just out in @pnas.org. This combines a lot of things that start with B: Biodiversity, Bipartite Networks, Bifurcations, Bacteria, ... www.pnas.org/doi/10.1073/... And yes, I know, Fig 1 looks like one of 'those' papers but please read on ...
pnas.org
Cross-feeding creates tipping points in microbiome diversity | PNAS
A key unresolved question in microbial ecology is how the extraordinary diversity of microbiomes emerges from the interactions among their many fun...
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Reposted by Manuel Liebeke
Ute Hentschel @utehentschel.bsky.social · 12/05/2025
Looking forward to an exciting CRC 1182 Metaorganism symposium on host-microbe crosstalk. @crc1182.bsky.social @cpogoreutz.bsky.social @spencernyholm.bsky.social @manuelliebeke.bsky.social oliviaroth.bsky.social @tylerjcarrier.bsky.social @geomarkiel.bsky.social @daganlab.bsky.social
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Manuel Liebeke @manuelliebeke.bsky.social · 12/05/2025
Asking #naturalproduct #metabolite people - Is there a tool to predict MS/MS spectra of macrolides? I guess Sirius can be used to predict structure from MS/MS ...any directions would be helpful #massspec #secondarymetabolites @pieterdorrestein.bsky.social @gnps2.bsky.social @kateduncan.bsky.social
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DaganLab @daganlab.bsky.social · 26/04/2025
An awesome position in a super enabling institute. Join us in Kiel!
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Danve Castroverde @danvec.bsky.social · 17/04/2025
Bacterial pathogen deploys the iminosugar glycosyrin to manipulate plant glycobiology @science.org www.science.org/doi/10.1126/...
science.org
Bacterial pathogen deploys the iminosugar glycosyrin to manipulate plant glycobiology
The extracellular space (apoplast) in plants is a key battleground during microbial infections. To avoid recognition, the bacterial model phytopathogen Pseudomonas syringae pv. tomato DC3000 produces ...
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Reposted by Manuel Liebeke
Burak Avcı @bavci.bsky.social · 17/04/2025
Did a “bottle opener” open the door to eukaryotes? Meet the Hodarchaeales-related cells- yet another bizarre morphology from Asgard archaea! These curious structures sit at the prokaryote–eukaryote boundary and might offer fresh clues to the origins of complex life. journals.asm.org/doi/10.1128/...
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Nature Microbiology @natmicrobiol.nature.com · 14/04/2025
🚨 New Perspectives article where, Deiner, Gibbons and colleagues describe the current strengths and limitations of microbial community-scale metabolic models in microbiome research. 🦠🧮 #MicroSky @gibbological.bsky.social www.nature.com/articles/s41...
nature.com
Moving from genome-scale to community-scale metabolic models for the human gut microbiome - Nature Microbiology
In this Perspective, Deiner, Gibbons and colleagues describe the current strengths and limitations of microbial community-scale metabolic models in microbiome research.
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Reposted by Manuel Liebeke
Gene Chong @chongg.bsky.social · 14/04/2025
It’s #lipidtime. The authors capture oscillations in the abundance of different phospholipid species during the yeast cell cycle, suggesting regulation and interplay of phospholipid synthesis, membrane fluidity, and metabolic efficiency during cell division www.nature.com/articles/s41...
nature.com
Temporal oscillation of phospholipids promotes metabolic efficiency - Nature Chemical Biology
Temporal oscillations in the abundance of different phospholipid species during the yeast cell cycle are reported, suggesting regulation and interplay of phospholipid synthesis, membrane fluidity and ...
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Reposted by Manuel Liebeke
BioMassSpec @realbiomassspec.bsky.social · 05/04/2025
Development of a Single-Cell Spatial Metabolomics Method for the Characterization of Cell–Cell Metabolic Interactions #AC #MassSpec pubs.acs.org/doi/10.1021/...
pubs.acs.org
Development of a Single-Cell Spatial Metabolomics Method for the Characterization of Cell–Cell Metabolic Interactions
Tumor microenvironment (TME) is characterized by complex cellular composition and high molecular heterogeneity. Characterizing the metabolic interactions between different cells in the TME is importan...
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Reposted by Manuel Liebeke
Jeremy Baskin @jeremybaskin.bsky.social · 03/04/2025
Groundbreaking study in Cell from @leventallab.bsky.social: phospholipid asymmetry is a defining feature of the plasma membrane and cholesterol fills the holes — major implications for how this membrane works. A #lipidtime must-read! www.cell.com/cell/abstrac...
cell.com
Cell membranes sustain phospholipid imbalance via cholesterol asymmetry
This work challenges a major assumption in cell biology by showing that lipid bilayers can have drastically different phospholipid abundances between their two leaflets. This lipid abundance asymmetry...
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Reposted by Manuel Liebeke
Tatsuya Nobori @tatsuyanobori.bsky.social · 03/04/2025
Functional diversification of dietary plant small molecules by the gut microbiome www.cell.com/cell/fulltex...
cell.com
Functional diversification of dietary plant small molecules by the gut microbiome
Plants are composed of diverse secondary metabolites. Here, we discover members of the human gut microbiome that have evolved enzymes to metabolize specific dietary phenolic small molecules that activ...
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Reposted by Manuel Liebeke
microbialcmmc.bsky.social @microbialcmmc.bsky.social · 19/03/2025
Happy March! While there’s so much to say about our friendly neighborhood Riboflavin, here we show some highlights. It’s amazing how we can engineer bacteria for commercial production! Check out more at cmmc.gnps2.org
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Reposted by Manuel Liebeke
bioRxiv Microbiology @biorxiv-microbiol.bsky.social · 10/03/2025
A glycan atlas of the mammalian intestine through ontogeny and inflammation www.biorxiv.org/content/10.1101/202…
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Reposted by Manuel Liebeke
FocalPlane @focalplane.bsky.social · 07/03/2025
📢Our latest #preprint list is up on FocalPlane. This week we focus on bioimage analysis tools and their application in biology. focalplane.biologists.com/2025/03/07/m...
focalplane.biologists.com
Microscopy preprints - bioimage analysis - FocalPlane
Microscopy preprints - bioimage analysis - News
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Reposted by Manuel Liebeke
Seth Bordenstein @symbionticism.bsky.social · 03/03/2025
Holobiont is an organizational unit in the hierarchy of life that can affect biological form and function. It also changes in time. In this study, microbiome parts of the seaweed holobiont divide into a core and pan that shifts seasonally enviromicro-journals.onlinelibrary.wiley.com/doi/10.1111/...
enviromicro-journals.onlinelibrary.wiley.com
Seasonal Cycles in a Seaweed Holobiont: A Multiyear Time Series Reveals Repetitive Microbial Shifts and Core Taxa
The red seaweed Gracilaria vermiculophylla holobiont exhibits strong seasonal succession. Its epibiotic microbial community shifts annually from winter to summer and back. The holobiont features a pe...
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Reposted by Manuel Liebeke
Nature Reviews Gastroenterology & Hepatology @natrevgastrohep.nature.com · 03/03/2025
#GastroEdPick Intestinal crypt microbiota modulates intestinal stem cell turnover and tumorigenesis via indole acetic acid @naturemicrobiol.bsky.social www.nature.com/articles/s41...
nature.com
Intestinal crypt microbiota modulates intestinal stem cell turnover and tumorigenesis via indole acetic acid - Nature Microbiology
Intestinal crypt-resident Acinetobacter radioresistens secretes indole acetic acid which activates an Ahr-Wnt-β-catenin-EphB2 signalling axis to promote intestinal stem cell homeostasis and prevent tu...
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William L King @drmicrowill.bsky.social · 28/02/2025
Interested in root exudates at early plant life stages? Have a look at our recent paper: doi.org/10.1016/j.plan… #Exudates decrease strongly during #plantdevelopment and #metabolome shifts from sugar-dominated to secondary exudates. Work led by Ben Hafner at TUM and Taryn Bauerle’s Cornell lab
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Metaorganism Research @crc1182.bsky.social · 26/02/2025
Hello, Bluesky! We are the #CollaborativeResearchCentre „Origin and Function of Metaorganisms“ funded by the German Research Foundation #DFG at #KielUniversity, around 80 researchers investigate the interactions of microbial communities with multicellular hosts. www.metaorganism-research.com
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microbialcmmc.bsky.social @microbialcmmc.bsky.social · 24/02/2025
got microbial metabolites? Add to the public knowledgebase available through GNPS2! cmmc.gnps2.org
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bioRxiv Microbiology @biorxiv-microbiol.bsky.social · 23/02/2025
Gut3Gel: A High Throughput Mucus Model for Culturing Human Intestinal Microbiota www.biorxiv.org/content/10.1101/202…
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Christian Frezza @frezzalab.bsky.social · 23/02/2025
and shout out to @carmofonlab.bsky.social for discovering that cancer cells eat oligopeptides www.nature.com/articles/s41...
nature.com
Cooperative nutrient scavenging is an evolutionary advantage in cancer - Nature
Nutrient-starved tumour cells cooperate by secreting aminopeptidases that digest oligopeptides in the microenvironment, creating a shared pool of free amino acids.
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Michael Witting @metabomichael.bsky.social · 20/02/2025
I'm happy to share my latest article published today. A nice collaboration with Aiko and Sven from Bruker Daltonics. #metabolomics #lipidomics #celegans doi.org/10.1007/s113...
doi.org
Phosphorylated glycosphingolipids are commonly detected in Caenorhabditis elegans lipidomes - Metabolomics
Introduction The identification of lipids is a cornerstone of lipidomics, and due to the specific characteristics of lipids, it requires dedicated analysis workflows. Identifying novel lipids and lipi...
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Antonino Asaro @antonino-asaro.bsky.social · 16/01/2025
If you’re looking to explore lipid cell heterogeneity and dynamics at single-cell level from a fresh perspective, we encourage you to check out this review on single-cell lipid biology!!!
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