#Nucleomorph
New #ISEPpapers! Nucleomorph phylogenomics suggests a deep and ancient origin of cryptophyte plastids within Rhodophyta nph.onlinelibrary.wiley.com/doi/10.1111/... by @animalculum.bsky.social, @deemteam.bsky.social

#Protist #Algae #Microbes #Evolution #Nucleomorph #Genomics #Rhodophyta #Plastids
April 4, 2026 at 3:47 PM
Nucleomorph Phylogenomics Suggests A Deep And Ancient Origin Of Cryptophyte Plastids Within Rhodophyta
astrobiology.com/2026/06/nucl... #astrobiology
Nucleomorph Phylogenomics Suggests A Deep And Ancient Origin Of Cryptophyte Plastids Within Rhodophyta - Astrobiology
The evolutionary origin of red algae‐derived complex plastids remains obscure.
astrobiology.com
June 16, 2026 at 6:59 PM
Nucleomorph #phylogenomics suggests a deep and ancient origin of cryptophyte #plastids within Rhodophyta
#microbiology #algae #eukaryotes #MicroSky
doi.org/10.1111/nph....
April 9, 2026 at 10:51 AM
#PhageSky #ProtistsOnSky

endosymbionts have "their" phages, too. cyanos of sponges (below), 𝘞𝘰𝘭𝘣𝘢𝘤𝘩𝘪𝘢 of insects, and then we have the piñata 👇

schaechter.asmblog.org/schaechter/2...
July 28, 2025 at 9:04 PM
Nucleomorph phylogenomics suggests a deep and ancient origin of cryptophyte plastids within Rhodophyta

Lukáš V. F. Novák, et al.

nph.onlinelibrary.wiley.com/doi/10.1111/...

#PlantScience
April 9, 2026 at 10:17 PM
Nucleomorph phylogenomics suggests a deep and ancient origin of cryptophyte plastids within Rhodophyta https://pubmed.ncbi.nlm.nih.gov/41933888/
April 5, 2026 at 9:25 AM
4) Secondary endosymbioses provide a striking example. Nucleomorph tRNAs still retain signatures of their ancestry, including red algal-like atypical introns and green algal-like permuted tRNA genes.
September 1, 2026 at 3:19 PM
Nucleomorph phylogenomics suggests a deep and ancient origin of cryptophyte plastids within Rhodophyta https://www.biorxiv.org/content/10.1101/2024.03.10.584144v1
Nucleomorph phylogenomics suggests a deep and ancient origin of cryptophyte plastids within Rhodophyta https://www.biorxiv.org/content/10.1101/2024.03.10.584144v1
The evolutionary origin of red algae-derived complex plastids remains obscure. Cryptophyta, one of f
www.biorxiv.org
March 11, 2024 at 9:17 AM
November 29, 2024 at 4:46 AM
Nucleomorph phylogenomics suggests a deep and ancient origin of cryptophyte plastids within Rhodophyta https://www.biorxiv.org/content/10.1101/2024.03.10.584144v1
Nucleomorph phylogenomics suggests a deep and ancient origin of cryptophyte plastids within Rhodophyta https://www.biorxiv.org/content/10.1101/2024.03.10.584144v1
The evolutionary origin of red algae-derived complex plastids remains obscure. Cryptophyta, one of f
www.biorxiv.org
March 11, 2024 at 9:17 AM
Nucleomorph phylogenomics suggests a deep and ancient origin of cryptophyte plastids within Rhodophyta https://pubmed.ncbi.nlm.nih.gov/41933888/
April 5, 2026 at 2:31 AM