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Giant multicellular magnetotactic prokaryotes in marine sediments
#microbiology #prokaryotes #MicroSky
@isme-microbes.bsky.social
doi.org/10.1093/isme...

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Prokaryotic defense systems: Diversity and evolutionary adaptation
#microbiology #virology #prokaryotes #archaea #bacteria #virus #phage
@mlifejournal.bsky.social
doi.org/10.1002/mlf2...

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Discovery and cultivation of prokaryotic taxa in the age of metagenomics and artificial intelligence Abstract. Despite advances in sequencing, microbial genomics, and cultivation techniques, the vast majority of prokaryotic species remain uncultured, which

Discovery and cultivation of prokaryotic taxa in the age of metagenomics and artificial intelligence
#microbiology #prokaryotes #archaea #bacteria
@isme-microbes.bsky.social
doi.org/10.1093/isme...

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Figure 3 Zagatto (2026): Microbial co-occurrence networks for hedgerows and fields and environmental correlations of network modules. (A) Microbial co-occurrence network from hedgerow soils. (B) Weighted R² contribution of environmental variables in explaining the structure of microbial co-occurrence modules in hedgerow network. The X-axis represents the weighted R² contribution of the significant variables. (C) Microbial co-occurrence network from field soils. (D) Weighted R² contribution of environmental variables in explaining the structure of microbial co-occurrence modules in field network. The X-axis represents the weighted R² contribution of the significant variables. Networks in (A) and (C) were constructed using SpiecEasi inference from ASVs of both fungi and prokaryotes. Nodes are represented by circles and indicate microbial taxa. Edges are represented by lines and indicated significant associations. Different node sizes represent the betweenness centrality.

Figure 3 Zagatto (2026): Microbial co-occurrence networks for hedgerows and fields and environmental correlations of network modules. (A) Microbial co-occurrence network from hedgerow soils. (B) Weighted R² contribution of environmental variables in explaining the structure of microbial co-occurrence modules in hedgerow network. The X-axis represents the weighted R² contribution of the significant variables. (C) Microbial co-occurrence network from field soils. (D) Weighted R² contribution of environmental variables in explaining the structure of microbial co-occurrence modules in field network. The X-axis represents the weighted R² contribution of the significant variables. Networks in (A) and (C) were constructed using SpiecEasi inference from ASVs of both fungi and prokaryotes. Nodes are represented by circles and indicate microbial taxa. Edges are represented by lines and indicated significant associations. Different node sizes represent the betweenness centrality.

New publication: Land use influences #prokaryotes more than #fungi in adjacent #hedgerow soils, by @kjfverhoeven.bsky.social and others. #landuse #hedgerowsoils
doi.org/10.1016/j.ag...

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Ecological determinants of altruism in prokaryote antivirus defense - Biology Direct Prokaryote evolution is driven in large part by the incessant arms race with viruses. Genomic investments in antivirus defense can be coarsely classified into two categories, immune systems that abrog...

Ecological determinants of altruism in prokaryote antivirus defense
#microbiology #prokaryotes #viruses #MicroSky
link.springer.com/article/10.1...

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LPSN continues to be an essential authority on the #taxonomy of #prokaryotes. The depth of information regarding effective/valid publications and type strains is truly unmatched.
A well-deserved achievement on becoming an ELIXIR Core Data Resource 👏
#Archaea #Bacteria #OpenScience #MicroSky

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We are hiring! If you're interested in exploring the #biogeography of #prokaryotes using #genomics and #metagenomics, are interested in biology and geographic information systems, and are passionate about #OpenScience, this is for you! New PhD and PostDoc positions in my lab at Aalborg University

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Figure 3 in Huang et al. (2025): "Co-occurrence network graphs of microbial taxa (at the genus level) at sampling sites with different vegetation types along an elevation gradient. Each node signifies a genus, colors of the nodes indicate different phyla, while phyla with relative abundance < 1 % are merged as “others” and are shown in grey. The size of each node is proportional to the number of edges (degree). A red edge indicates a positive interaction between two individual nodes, while a blue edge indicates a negative interaction."

Figure 3 in Huang et al. (2025): "Co-occurrence network graphs of microbial taxa (at the genus level) at sampling sites with different vegetation types along an elevation gradient. Each node signifies a genus, colors of the nodes indicate different phyla, while phyla with relative abundance < 1 % are merged as “others” and are shown in grey. The size of each node is proportional to the number of edges (degree). A red edge indicates a positive interaction between two individual nodes, while a blue edge indicates a negative interaction."

New publication: Greater influence of #eukaryotes on #carbondegradation potentials than #prokaryotes along an elevation gradient. #climatechange #soil
doi.org/10.1016/j.pe...

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Characterization of vaginal prokaryotes and eukaryotes microbiota and its link to sexually transmitted infections - Scientific Reports Scientific Reports - Characterization of vaginal prokaryotes and eukaryotes microbiota and its link to sexually transmitted infections

Characterization of #vaginal #prokaryotes and #eukaryotes #microbiota and its link to sexually transmitted #infections ...

| #STI | #SexuallyTransmittedInfections | #STD | #Lactobacillus | #vagina | Via @nature.com

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Imagine a prokaryotic thought oozing out of his head into the podium. Like snot
#prokaryotes #sciencememes #trump #gopisfascist

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Exciting NEW MODEL! Evolution of Eukaryotic Cells!
Covers how the nucleus formed & how aerobic #prokaryotes & #cyanobacteria were ingested to become the #mitochondria & #chloroplasts. Learn more here: buff.ly/3finULA

#EduSky #iteachbio #evolution #cells #cellbiology #endosymbiosis

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''..Microbes that can form such a mass — and many can, as biofilms are one of the planet’s most common life forms, encompassing 40% to 80% of all prokaryotic life..'' www.quantamagazine.org/how-a-biofil... #Complexity #MulticellularLife #Prokaryotes #Life 🦠

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Life on Mars? It probably looks like something you’d find in your stomach | The-14 Life on Mars may resemble extremophiles like H. pylori, thriving in harsh conditions. Scientists search for life on Mars, icy moons, and distant exoplanets.

Life on Mars? It probably looks like something you’d find in your stomach
#Bacteria #LifeOnMars #Astrobiology #Extremophiles #Prokaryotes #SpaceExploration #Mars #Exoplanets #ScienceNews #Mars #Life #Stomach #ExtraterrestrialLife
the-14.com/life-on-mars...

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🦠 #Prokaryotes vs. #Eukaryotes 🧬

🔹 #Prokaryote – Simple, no nucleus, DNA floats in the cytoplasm. 🏞️ Small, unicellular (bacteria & archaea).

🔹 #Eukaryote – Complex, nucleus, membrane-bound organelles. 🏛️ Found in plants, animals, fungi, & protists.

Life’s 2 blueprints! 🧪

#Biology #Cells #Science

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CRINGE FAILURE! EUCARYOTE cells LACK a periplasmic space‼️

How do they form proton gradients for metabolism⁉️⁉️ We may never know…🤔🤔🤔🤔

They don’t even have peptidoglycan🤣🤣🤣🤣 IDIOTIC STUPID eucaryotes! Who knows how they made it past the Paleoproterozoic.

#prokaryotes #microbiology #shitposting

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Writer Fuel: Earth’s Oceans Hide a Climate Change Accelerant he world's oceans are home to microscopic organisms invisible to the human eye. The tiny creatures, known as "prokaryotes", comprise 30% of life in the world's oceans. These organisms play an importan...

WRITER FUEL: Creatures that existed billions of years before plants and animals poised to become dangerous climate change winners.

www.limfic.com/2024/11/18/w...

#LimFic #LiminalFiction #WriterFuel #Writers #Authors #StoryIdeas #Prokaryotes #ClimateChange

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I'm fairly certain that I straight-wrecked #MolecularBio Exam3: #Translation #TranscriptionalRegulation #Prokaryotes #Eukaryotes, CI: 95%

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