#archaeal — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #archaeal, aggregated by home.social.
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Announcement of #BactoGre 27 May - #bacteriology in #Grenoble meeting of #microbiologists focusing on #bacterial and #archaeal organisms and communities.
Registration is free but mandatory
https://forms.gle/nDi25ogQbdBP3yvQ7submissions close 25 April,
registration 16 MayInvited speakers:
#CatherineLarose, "Institut des Géosciences de l’Environnement", Grenoble
#SamMeyer, "Microbiologie, Adaptation et Pathogénie", LyonOrganisers: Sylvie Elsen, Pierre Marcoux and Sophie Abby
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Announcement of #BactoGre 27 May - #bacteriology in #Grenoble meeting of #microbiologists focusing on #bacterial and #archaeal organisms and communities.
Registration is free but mandatory
https://forms.gle/nDi25ogQbdBP3yvQ7submissions close 25 April,
registration 16 MayInvited speakers:
#CatherineLarose, "Institut des Géosciences de l’Environnement", Grenoble
#SamMeyer, "Microbiologie, Adaptation et Pathogénie", LyonOrganisers: Sylvie Elsen, Pierre Marcoux and Sophie Abby
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Contrary to current orthodoxy, #archaeal #membrane mimics are more permeable to core metabolites than #bacterial #lipid membrane mimics, informing some of the earliest transitions in cell evolution @Ula_Lapinska @AncestralState @PagliaraExeter #PLOSBiology https://plos.io/3Kxa15c
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Contrary to current orthodoxy, #archaeal #membrane mimics are more permeable to core metabolites than #bacterial #lipid membrane mimics, informing some of the earliest transitions in cell evolution @Ula_Lapinska @AncestralState @PagliaraExeter #PLOSBiology https://plos.io/3Kxa15c
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Contrary to current orthodoxy, #archaeal #membrane mimics are more permeable to core metabolites than #bacterial #lipid membrane mimics, informing some of the earliest transitions in cell evolution @Ula_Lapinska @AncestralState @PagliaraExeter #PLOSBiology https://plos.io/3Kxa15c
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Contrary to current orthodoxy, #archaeal #membrane mimics are more permeable to core metabolites than #bacterial #lipid membrane mimics, informing some of the earliest transitions in cell evolution @Ula_Lapinska @AncestralState @PagliaraExeter #PLOSBiology https://plos.io/3Kxa15c
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Contrary to current orthodoxy, #archaeal #membrane mimics are more permeable to core metabolites than #bacterial #lipid membrane mimics, informing some of the earliest transitions in cell evolution @Ula_Lapinska @AncestralState @PagliaraExeter #PLOSBiology https://plos.io/3Kxa15c
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Contrary to current orthodoxy, #archaeal #membrane mimics are more permeable to core metabolites than #bacterial #lipid membrane mimics, informing some of the earliest transitions in cell evolution @Ula_Lapinska @AncestralState @PagliaraExeter #PLOSBiology https://plos.io/3Kxa15c
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#eukaryotes Story of its #Archaeal Ancestry |. The traditional grouping of life forms into #prokaryotes and eukaryotes was revised in 1977 when rRNA sequence characterisation revealed that #archaea (then called ‘archaebacteria’) are ‘‘as distantly related to #bacteria as bacteria are to eukaryotes.‘’ T....
https://www.scientificeuropean.co.uk/sciences/biology/eukaryotes-story-of-its-archaeal-ancestry/
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#eukaryotes Story of its #Archaeal Ancestry |. The traditional grouping of life forms into #prokaryotes and eukaryotes was revised in 1977 when rRNA sequence characterisation revealed that #archaea (then called ‘archaebacteria’) are ‘‘as distantly related to #bacteria as bacteria are to eukaryotes.‘’ T....
https://www.scientificeuropean.co.uk/sciences/biology/eukaryotes-story-of-its-archaeal-ancestry/
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#Metagenomics exploration of the diversity of #archaeal #viruses in the human gut.
New research in Nature Communication on:
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#Metagenomics exploration of the diversity of #archaeal #viruses in the human gut.
New research in Nature Communication on:
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New #cryoET structure from LSI Exeter colleagues Matthew Gaines et al. Bertram Daum lab, this time of the enigmatic #archaeal filament called 'thread'.
What I find cool about this work is that first they had the structure, then found the sequence based on glycosylation sites and bulky residues.
This #protein was also so ultra-stable, that resisted trypsinisation, so mass spec was not an option to identify it.
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9715654/