ArticleScientific reports2021
First finding of free-living representatives of Prokinetoplastina and their nuclear and mitochondrial genomes.
Article in Scientific reports, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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Who cites it
12 citing papers in PubMed.
- Identification of feeding apparatus components in a heterotrophic marine flagellate.Journal of cell science · 2026Article
- Article
- Comprehensive analysis of the Kinetoplastea intron landscape reveals a novel intron-containing gene and the first exclusively trans-splicing eukaryote.BMC biology · 2024Article
- Kinetoplastid kinetochore proteins KKT14-KKT15 are divergent Bub1/BubR1-Bub3 proteins.Open biology · 2024Article
- Old Methods, New Insights: Reviewing Concepts on the Ecology of Trypanosomatids andPathogens (Basel, Switzerland) · 2023Article
- Divergent polo boxes in KKT2 bind KKT1 to initiate the kinetochore assembly cascade inMolecular biology of the cell · 2022Article
- Typical structure of rRNA coding genes in diplonemids points to two independent origins of the bizarre rDNA structures of euglenozoans.BMC ecology and evolution · 2022Article
- Mitochondrial RNA editing inComputational and structural biotechnology journal · 2022Article
- Kinetoplastid kinetochore proteins KKT2 and KKT3 have unique centromere localization domains.The Journal of cell biology · 2021Article
- Article
- Euglenozoa: taxonomy, diversity and ecology, symbioses and viruses.Open biology · 2021Review
- Characterization of Allobodo yubaba sp. nov. and Novijibodo darinka gen. et sp. nov., cultivable free-living species of the phylogenetically enigmatic kinetoplastid taxon Allobodonidae.The Journal of eukaryotic microbiologyArticle
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4 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Kinetoplastids are heterotrophic flagellated protists, including important parasites of humans and animals (trypanosomatids), and ecologically important free-living bacterial consumers (bodonids). Phylogenies have shown that the earliest-branching kinetoplastids are all parasites or obligate endosymbionts, whose highly-derived state makes reconstructing the ancestral state of the group challenging. We have isolated new strains of unusual free-living flagellates that molecular phylogeny shows to be most closely related to endosymbiotic and parasitic Perkinsela and Ichthyobodo species that, together with unidentified environmental sequences, form the clade at the base of kinetoplastids. These strains are therefore the first described free-living prokinetoplastids, and potentially very informative in understanding the evolution and ancestral states of morphological and molecular characteristics described in other kinetoplastids. Overall, we find that these organisms morphologically and ultrastructurally resemble some free-living bodonids and diplonemids, and possess nuclear genomes with few introns, polycistronic mRNA expression, high coding density, and derived traits shared with other kinetoplastids. Their genetic repertoires are more diverse than the best-studied free-living kinetoplastids, which is likely a reflection of their higher metabolic potential. Mitochondrial RNAs of these new species undergo the most extensive U insertion/deletion editing reported so far, and limited deaminative C-to-U and A-to-I editing, but we find no evidence for mitochondrial trans-splicing.
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