ASM(@ASMicrobiology) 's Twitter Profileg
ASM

@ASMicrobiology

Official account of the American Society for Microbiology. With over 36,000 members, ASM's mission is to promote & advance the microbial sciences.

ID:285165232

linkhttps://linktr.ee/asmicrobiology calendar_today20-04-2011 17:04:39

31,3K Tweets

90,2K Followers

302 Following

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Interested in bridging the worlds of science and society through policy and advocacy? The Fenwick Fellowship is designed to recognize and support early career scientists and connect civic engagement and science. Don’t wait—applications close April 28: asm.social/1Pg

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Don't forget to register! Tomorrow at 2 p.m. ET, join moderator Robert Bonomo, M.D., & a panel of experts in antimicrobial agents & resistance (AAR), to discuss antibiotics, lysins & antibodies as combined therapies for MDROs. Register at: asm.social/1Pf

Don't forget to register! Tomorrow at 2 p.m. ET, join moderator Robert Bonomo, M.D., & a panel of experts in antimicrobial agents & resistance (AAR), to discuss antibiotics, lysins & antibodies as combined therapies for MDROs. Register at: asm.social/1Pf #ASMClinMicro
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Does your microbiology teaching lab project need a breathe of fresh air? Try isolating nicotine-degrading bacteria from tobacco plants and products It's easy and students will uncover some interesting microbes. Learn more in : asm.social/1Pc Ben Koestler

Does your microbiology teaching lab project need a breathe of fresh air? Try isolating nicotine-degrading bacteria from tobacco plants and products It's easy and students will uncover some interesting microbes. Learn more in #JMBE: asm.social/1Pc @BenKoestler
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Can P. aeruginosa adopt an intracellular lifestyle? In , researchers review studies that observe intracellular P. aeruginosa in vitro, as well as contextualize these findings with the few studies that report similar observations in vivo. asm.social/1P7

Can P. aeruginosa adopt an intracellular lifestyle? In #JBacteriology, researchers review studies that observe intracellular P. aeruginosa in vitro, as well as contextualize these findings with the few studies that report similar observations in vivo. asm.social/1P7
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The answer to this past weekend’s question is 🥁… C. Burkholderia cepacia complex! Get the details and learn more when you watch the video on the Case Study page: asm.social/1P4

The answer to this past weekend’s #CaseStudySaturday question is 🥁… C. Burkholderia cepacia complex! Get the details and learn more when you watch the video on the #ASMClinMicro Case Study page: asm.social/1P4
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Do you want to be featured in the next ASM membership video? Send us footage of you & your colleagues doing cool things in the microbial sciences! iPhone or similar video clips are just fine. Send your 30 second clip to [email protected] by May 3 to be considered!

Do you want to be featured in the next ASM membership video? Send us footage of you & your colleagues doing cool things in the microbial sciences! iPhone or similar video clips are just fine. Send your 30 second clip to communications@asmusa.org by May 3 to be considered!
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Climate change is an imminent global threat. To address it, the American Academy of Microbiology created a 5-year scientific portfolio to increase understanding about and microbes, inform policies and drive market innovations. asm.social/1P2

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Have you read our 2021-2022 Progress Report? Check it out to learn about key achievements, metrics of progress and opportunities for continued growth as ASM works to elevate and embody in ! asm.social/1P1

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What's new in the world of antifungals? This article provides an overview of antifungal agents—including those with improved known mechanisms of actions and novel antifungal classes—currently in clinical development. asm.social/1OZ

What's new in the world of antifungals? This #ClinMicroRev article provides an overview of antifungal agents—including those with improved known mechanisms of actions and novel antifungal classes—currently in clinical development. asm.social/1OZ
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Methane is a key driver of . This , explore ASM's roadmap outlining priority microbial research opportunities to reduce methane emissions from enteric fermentation in ruminants, manure management, rice production & landfills. asm.social/1OX

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: Insights into mechanisms regulating development of long-lived U cells & stressed L cells in aging yeast colonies inform understanding of organized yeast structures, which in many ways resemble multicellular organisms. mBio: asm.social/1OW

#MicrobiologyMonday: Insights into mechanisms regulating development of long-lived U cells & stressed L cells in aging yeast colonies inform understanding of organized yeast structures, which in many ways resemble multicellular organisms. @mbiojournal: asm.social/1OW
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This , we thank all the ASM volunteers who play a pivotal role in promoting & advancing the microbial sciences—we wouldn't be here without YOU! Want to get involved? Explore our volunteer opportunities to find the right one for you! asm.social/1OT

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The answer is…a cart stored in front of the eye wash station and no dust covers! The pathway to the eyewash station should be clear of obstructions (6-inch clearance around an eyewash). Thanks for playing spot the hazards!

The answer is…a cart stored in front of the eye wash station and no dust covers! The pathway to the eyewash station should be clear of obstructions (6-inch clearance around an eyewash). Thanks for playing #LabWeek spot the hazards! #ASMClinMicro #Lab4Life
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Let’s close out this with a new case study! Can you guess the diagnosis? Stay tuned for the answer on Tues., April 23! asm.social/1OR

Let’s close out this #LabWeek with a new case study! Can you guess the diagnosis? Stay tuned for the answer on Tues., April 23! asm.social/1OR #ASMClinMicro #CaseStudySaturday #Lab4Life
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Fact of the Day: A strain of Penicillium chrysogenum (NRRL 1951), reclassified as P. rubens, was discovered by chance growing on the fruit. This fungus has been used for industrial production of penicillin since the 1940s.

#LabWeek Fact of the Day: A strain of Penicillium chrysogenum (NRRL 1951), reclassified as P. rubens, was discovered by chance growing on the fruit. This fungus has been used for industrial production of penicillin since the 1940s. #ASMClinMicro #Lab4Life
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So many problems, so little time. Can you spot the lab hazard in today's picture? Let us know what you think and check back later today to learn the answer!

So many problems, so little time. Can you spot the lab hazard in today's picture? Let us know what you think and check back later today to learn the answer! #ASMClinMicro #LabWeek #Lab4Life
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The answer is…a full sharp container box! There is even a pipette sticking out. This poses a safety risk. The container must be locked up for disposal when it's ¾ full. Check in tomorrow at 9 a.m. ET for a new picture!

The answer is…a full sharp container box! There is even a pipette sticking out. This poses a safety risk. The container must be locked up for disposal when it's ¾ full. Check in tomorrow at 9 a.m. ET for a new picture! #ASMClinMicro #LabWeek #Lab4Life
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Protein phosphorylation on a single site can alter the fate of the entire cell. This review highlights that phosphosignaling in bacteria is all but certain to hold answers to many questions about bacterial physiology & pathogenicity. asm.social/1OQ

Protein phosphorylation on a single site can alter the fate of the entire cell. This #mSystems review highlights that phosphosignaling in bacteria is all but certain to hold answers to many questions about bacterial physiology & pathogenicity. asm.social/1OQ
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Researchers present data that explain the recognition & transport of ferric catecholates & other siderophores in Klebsiella pneumoniae, thus advancing understanding of iron transport activities in the bacterium. Learn more in : asm.social/1ON

Researchers present data that explain the recognition & transport of ferric catecholates & other siderophores in Klebsiella pneumoniae, thus advancing understanding of iron transport activities in the bacterium. Learn more in #JBacteriology: asm.social/1ON
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