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@microbesinfo.bsky.socialOct 6, 2026, 1:30 AM

🦠💊 Scientists uncovered new vulnerabilities in #drug-resistant #bacteria—including #energy production, defenses against #Phages and #toxin-delivery systems—that could provide targets for future treatments.

#AMR #Antimicrobial #Bacteria #Microsky via @sciencex.bsky.social

phys.org/news/2026-09...

@microbesinfo.bsky.socialSep 28, 2026, 4:30 PM

🦠📚 Scientists have created a large library pairing #bacteria with the #viruses that infect them, providing a resource for exploring #Phages and their potential #biotechnology applications.

#Microbes #Bacteria #Phage #Biotech #Microsky via @sciencex.bsky.social

phys.org/news/2026-09...

@microbesinfo.bsky.socialSep 24, 2026, 10:30 PM

🔬🦠 Common standards for the use of #phages against hard-to-treat #infections ...

#virus #Biomed #MolBio #Microsky via @eurekalert.bsky.social

www.eurekalert.org/news-release...

@phagepasteur.bsky.socialSep 23, 2026, 9:43 AM

This review was performed by Devon Conti and Caroline Henrot, the two latest alumni from the BBH lab

We're happy to see their effort come to fruition and we hope you find it informative and enjoyable

#gut #phages

@infect-net.bsky.socialSep 22, 2026, 11:15 AM

First up, our keynote speaker Katharina Höfer, wo recently moved to the Leibniz Institute for Immunotherapy in Regensburg. She talks about covalent RNA-Protein networks and their role in phage infection

#Infect-Net #RNA #NAD-RNA #Phages

@microbesinfo.bsky.socialSep 19, 2026, 1:30 AM

🦠🧬 Some #bacteria have repurposed ancient #viruses into #gene transfer agents that shuttle #DNA between cells—including genes that can contribute to #AntibioticResistance.

#Microbes #Bacteria #Phages #AMR #Microsky via @theconversation.com

theconversation.com/how-bacteria...

@proseandpassion.mastodon.social.ap.brid.gySep 18, 2026, 3:47 PM

16-Sep-2026
First-of-its-kind preventative #phageTherapy provides promising results

https://www.eurekalert.org/news-releases/1143694

#science #phages #microbiology #medicine

@plosbiology.orgSep 18, 2026, 12:55 PM

#Phages can evade #bacterial #immunity by disrupting #antiviral signals like cA3, triggering Panoptes defense systems. @mfwhite2.bsky.social &co show that Type II Panoptes detects cA3 loss and activates a CARF-TM effector to disrupt membranes & stop infection @plosbiology.org 🧪 buff.ly/1ixwg9v

Left: Organisation and mechanism of the Panoptes System. In type I Panoptes systems, mCpol is constitutively active, generating signalling molecules that inactivate the cognate effector, 2TMβ. When an infecting phage expresses a sponge protein, the cyclic oligonucleotide pool is depleted. The Panoptes effector oligomerises, leading to membrane disruption and growth arrest or cell death. Right: CARF-TM model structure and cA3 binding. Alphafold3 model of CARF-TM in complex with cA3, including POPG molecules to simulate the membrane bilayer. The position mutated to generate the truncated CARF protein is shown by black arrows.
@archanand.bsky.socialSep 17, 2026, 7:03 PM

Really excited to host Dr Jonelle Basso this afternoon to talk about #phages and plant-host interactions! @jgi.doe.gov @berkeleylab.lbl.gov @sfstatebio.bsky.social

@ykuzyakov.bsky.socialSep 17, 2026, 4:52 PM

NEW in The ISME Journal
Soil amelioration impacts viral ecology in saline-alkali lands
doi.org/10.1093/isme...

Lead by Junxi Liu

#soil #microbialbiomass #soilbacteria #phages #virus #carbon #landuse #isotopes

@plosbiology.orgSep 17, 2026, 8:00 AM

#Phages can evade #bacterial #immunity by disrupting #antiviral signals like cA3, triggering Panoptes defense systems. @mfwhite2.bsky.social &co show that Type II Panoptes detects cA3 loss and activates a CARF-TM effector to disrupt membranes & stop infection @plosbiology.org 🧪 buff.ly/1ixwg9v

Left: Organisation and mechanism of the Panoptes System. In type I Panoptes systems, mCpol is constitutively active, generating signalling molecules that inactivate the cognate effector, 2TMβ. When an infecting phage expresses a sponge protein, the cyclic oligonucleotide pool is depleted. The Panoptes effector oligomerises, leading to membrane disruption and growth arrest or cell death. Right: CARF-TM model structure and cA3 binding. Alphafold3 model of CARF-TM in complex with cA3, including POPG molecules to simulate the membrane bilayer. The position mutated to generate the truncated CARF protein is shown by black arrows.
@plosbiology.orgSep 16, 2026, 4:40 PM

#Phages can evade #bacterial #immunity by disrupting #antiviral signals like cA3, triggering the Panoptes defense systems. @mfwhite2.bsky.social &co show that Type II Panoptes detects cA3 loss and activates a CARF-TM effector to disrupt membranes & stop infection @plosbiology.org 🧪 buff.ly/1ixwg9v

Left: Organisation and mechanism of the Panoptes System. In type I Panoptes systems, mCpol is constitutively active, generating signalling molecules that inactivate the cognate effector, 2TMβ. When an infecting phage expresses a sponge protein, the cyclic oligonucleotide pool is depleted. The Panoptes effector oligomerises, leading to membrane disruption and growth arrest or cell death. Right: CARF-TM model structure and cA3 binding. Alphafold3 model of CARF-TM in complex with cA3, including POPG molecules to simulate the membrane bilayer. The position mutated to generate the truncated CARF protein is shown by black arrows.
@f-scott-f.bsky.socialSep 14, 2026, 1:56 PM

Escherichia-Phage T4
Das Bild hatte ich ca. in 2020 an der #uni-hohenheim erstellt
#ecoli #bacteriophage
#phages #t4-phage
#atomicforcemicroscopy #afm
#microscopy #microbiology
#eastcoastkin

@evgenii-protasov.bsky.socialSep 12, 2026, 10:56 AM

A satellite in the phage universe: Isolation and characterization of six novel Streptomyces phages AndoPrime, Ando, Arkania, Jaresh, Tatooine, and Galidraan
#microbiology #Streptomyces #Actinobacteria #phages #MicroSky
@femsjournals.bsky.social @femsmicro.org
doi.org/10.1093/fems...

@evbc.bsky.socialSep 8, 2026, 3:42 PM

#Phages reprogramme infected cells through more than auxiliary metabolic genes. Review highlights phage-encoded transcription and sigma factors as powerful, understudied tools shaping host physiology and ecosystem processes. 🦠🔬
📄 https://doi.org/10.1016/j.tim.2026.05.019
👤 EVBC: Matthew B. Sullivan