#Asgard,#phylogeny
But in 2010, we discovered the Asgard Archeota (or, now, Promethearchaeti): a group of Archaea, clearly embedded in the existing phylogeny of Archaea, that have *most of the things we thought were unique to Eukaryotes.*

They have cytoskeletons, histones, vesicles!

en.wikipedia.org/wiki/Asgard_...
Asgard archaea - Wikipedia
en.wikipedia.org
August 28, 2026 at 2:11 PM
Phylogeny-guided curation reveals widespread misannotation of Asgard archaeal 16S rRNA gene sequences in public databases
#microbiology #archaea #Asgard #MicroSky
@isme-microbes.bsky.social
doi.org/10.1093/isme...
Phylogeny-guided curation reveals widespread misannotation of Asgard archaeal 16S rRNA gene sequences in public databases
Abstract. Accurate taxonomic assignment of 16S rRNA gene sequences is essential for the reliable interpretation of microbial community studies based on amp
doi.org
September 14, 2026 at 7:25 AM
More goings on in eukaryotic ancestors, this time from @phil-donoghue.bsky.social and friends. The data is coming thick and fast! #actin #nucleus #LECA #asgard #mitochondria #phylogeny
December 4, 2025 at 9:25 PM
#Asgard,#phylogeny
1/ 🧵 Does MAGs contamination affect the placement of Njord as suggested by Zhang et al, 2025? www.nature.com/articles/s41...
Our updated analysis suggests instead... www.biorxiv.org/content/10.1...
Phylogenomic analyses reveal that Panguiarchaeum is a clade of genome-reduced Asgard archaea within the Njordarchaeia
The Asgard archaea are a diverse archaeal phylum important for our understanding of cellular evolution because they include the lineage that gave rise to eukaryotes. Recent phylogenomic work has focus...
www.biorxiv.org
May 23, 2025 at 10:19 AM
Since my background is in protein structure, one facet of this project that I find extremely interesting is that Asgard archaea contain weird and wonderful proteins that have never been seen before.

We used AlphaFold to predict and explore the structures of these Asgard proteins
February 19, 2026 at 12:45 AM
Our work is published today: ‘Oxygen metabolism in descendants of the archaeal-eukaryotic ancestor’. This was a huge effort lead by @katyappler.bsky.social. Extremely grateful to have been a part of this amazing project! 😊🦠🧬

Links: www.nature.com/articles/s41...
www.nature.com/articles/s41...
February 19, 2026 at 12:02 AM
Phylogeny-guided curation reveals widespread misannotation of Asgard archaeal 16S rRNA gene sequences in public databases academic.oup.com/ismecommun/a... #jcampubs
September 4, 2026 at 4:32 PM
Nice phylogeny (Figure 1) showing that the rare Asgard tubulin (present in 1% of genome) branch within the diversity of Eukaryotic tubulin, indicating HGT from Proto-eukaryotes to Asgard, as we already suggested in Da Cunha et al. (mlife. 2022) and Forterre (mlife 2025) (not cited in this preprint.
Our latest preprint: Together with the team of Jan Löwe, @danieltamarit.bsky.social and many others we discovered and characterized several Asgard tubulin genes and propose that microtubule architecture and dynamics evolved in Asgard archaea prior to eukaryogenesis
www.biorxiv.org/content/10.6...
February 19, 2026 at 4:53 PM
One particular protein family we focussed on were the [NiFe]-hydrogenases, which are ancient metalloenzymes that let microbes metabolise hydrogen gas (H2). @katyappler.bsky.social noticed that the Asgard have a lot of diverse hydrogenase sequences that we hadn't seen before.
February 19, 2026 at 12:56 AM
The phylogeny of tubulin (present in 1% of Asgard) clearly shown that tubulin was transferred to a few Asgard from proto-eukaryote during the diversification of tubulin before LECA and not the other way around. Biologists should wake up, Asgard are not our ancestors !
August 4, 2026 at 5:18 AM
Phylogeny-guided curation reveals widespread misannotation of Asgard archaeal 16S rRNA gene sequences in public databases | ISME Communications | Oxford Academic
Phylogeny-guided curation reveals widespread misannotation of Asgard archaeal 16S rRNA gene sequences in public databases
Abstract. Accurate taxonomic assignment of 16S rRNA gene sequences is essential for the reliable interpretation of microbial community studies based on amp
dx.doi.org
September 5, 2026 at 3:21 AM
The phylogeny in figure S1 shows clearly that the rare rubulins in Asgard and Bacteria have been obtained from proto-eukaryotes. In my last mlife paper, I document extensive LGT between Asgard and proto-euka, even for univerdal proteins.
September 12, 2025 at 7:34 AM
Phylogenetic reconciliation supports a methanogenic ancestor of the Archaea and a derived origin for host-associated lineages | bioRxiv https://www.biorxiv.org/content/10.1101/2025.11.11.687807v1.abstract
Phylogenetic reconciliation supports a methanogenic ancestor of the Archaea and a derived origin for host-associated lineages
The phylogeny of the Archaea continues to be revisited and revised as new groups are discovered and phylogenetic methods improve, but key questions about their early evolution remain. It has been suggested that the root of the Archaea may lie on, or potentially within, any of three major groups - the Euryarchaeota, TACK+Asgard clade, and DPANN, the last of which includes many host-associated and genome-reduced lineages. These root hypotheses make starkly different predictions about the nature of early archaeal evolution: for example, a root on or within DPANN might suggest a small-genome and host-associated ancestor, with methanogenesis, the hallmark metabolism of the Archaea, evolving later. Here, we investigate the position of the archaeal root and the nature of the last archaeal common ancestor using a range of phylogenetic approaches, including the best available site- and branch-heterogeneous substitution models, and new gene tree-species tree reconciliation models that capture changes in rates of gene duplication, loss and transfer across the phylogeny. Our analyses converge on a narrow archaeal root region at/near the base of the Euryarchaeota, supporting hypotheses in which the Last Archaeal Common Ancestor (LACA) was a complex, free-living (hyper-)thermophilic methanogen. We recover DPANN as the sister group to TACK and Asgard archaea, and suggest that their genome evolution has been characterised by episodes of genome streamlining and expansion, driven by gene loss and transfer. ### Competing Interest Statement The authors have declared no competing interest. European Research Council, https://ror.org/0472cxd90, grant agreement No. 947317, ASymbEL to A.S., grant agreement No. 714774, GENECLOCKS to G.J.S. EU ERA Chair, HORIZON-WIDERA-2022-TALENTS-01: 2023-2028 John Templeton Foundation, 63451 to G.J.Sz., T.A.W. and A.Sp.
www.biorxiv.org
November 17, 2025 at 12:14 AM
Finally, I also did a phylogenetic analysis of the HSP70s (DnaK or others) present in the archaea and compared them with gram-positive or gram-negative bacteria. As shown by Gupta and colleagues in 1993, there is an INDEL of around 27 amino acids in the NBD of archaeal DnaKs, which
January 21, 2026 at 8:28 AM
doi.org/10.1093/isme...
Using ~ GTDB-derived 16S ~ sequences, we show ~ most of the affiliations of these ~ were consistent with phylogenomic placement of their corresponding MAGs, although a small fraction of them exhibited clear inconsistencies likely resulting from erroneous binning to MAGs."
Phylogeny-guided curation reveals widespread misannotation of Asgard archaeal 16S rRNA gene sequences in public databases
Abstract. Accurate taxonomic assignment of 16S rRNA gene sequences is essential for the reliable interpretation of microbial community studies based on amp
doi.org
September 5, 2026 at 4:56 AM
The phylogeny clearly shows that the rare tubulin in Asgard were transferred from proto-eukaryotes to Asgard during the diversification by duplication of eukaryotic tubulin paralogues.
July 24, 2026 at 4:05 PM
Promethearchaeum syntrophicum gen. nov., sp. nov., an anaerobic, obligately syntrophic archaeon, the first isolate of the lineage ‘Asgard’ archaea, and proposal of the new archaeal phylum Promethearchaeota phyl. nov. and kingdom Promethearchaeati regn. nov. | Microbiology Society
An anaerobic, mesophilic, syntrophic, archaeon strain MK-D1T, was isolated as a pure co-culture with Methanogenium sp. strain MK-MG from deep-sea methane seep sediment. This organism is, to our knowledge, the first cultured representative of ‘Asgard’ archaea, an archaeal group closely related to eukaryotes. Here, we describe the detailed physiology and phylogeny of MK-D1T and propose Promethearchaeum syntrophicum gen. nov., sp. nov. to accommodate this strain. Cells were non-motile, small cocci, approximately 300–750 nm in diameter and produced membrane vesicles, chains of blebs and membrane-based protrusions. MK-D1T grew at 4–30 °C with optimum growth at 20 °C. The strain grew chemoorganotrophically with amino acids, peptides and yeast extract with obligate dependence on syntrophy with H2-/formate-utilizing organisms. MK-D1T showed the fastest growth and highest maximum cell yield when grown with yeast extract as the substrate: approximately 3 months to full growth, reaching up to 6.7×106 16S rRNA gene copies ml−1. MK-D1T had a circular 4.32 Mb chromosome with a DNA G+C content of 31.1 mol%. The results of phylogenetic analyses of the 16S rRNA gene and conserved marker proteins indicated that the strain is affiliated with ‘Asgard’ archaea and more specifically DHVC1/DSAG/MBG-B and ‘Lokiarchaeota’/‘Lokiarchaeia’. On the basis of the results of 16S rRNA gene sequence analysis, the most closely related isolated relatives were Infirmifilum lucidum 3507LTT (76.09 %) and Methanothermobacter tenebrarum RMAST (77.45 %) and the closest relative in enrichment culture was Candidatus ‘Lokiarchaeum ossiferum’ (95.39 %). The type strain of the type species is MK-D1T (JCM 39240T and JAMSTEC no. 115508). We propose the associated family, order, class, phylum, and kingdom as Promethearchaeaceae fam. nov., Promethearchaeales ord. nov., Promethearchaeia class. nov., Promethearchaeota phyl. nov., and Promethearchaeati regn. nov., respectively. These are in accordance with ICNP Rules 8 and 22 for nomenclature, Rule 30(3)(b) for validation and maintenance of the type strain, and Rule 31a for description as a member of an unambiguous syntrophic association.
doi.org
July 6, 2024 at 4:58 AM
Interestingly, the phylogeny also suggests HGT from Asgard (Hodar) to bacteria, Odin to Loki, Loki to Hodar, possibly pro to-eukaryotes to Bathy.
February 19, 2026 at 4:53 PM