Editorial: Symbioses Between Protists and Bacteria/Archaea
Status PubMed-not-MEDLINE Jazyk angličtina Země Švýcarsko Médium electronic-ecollection
Typ dokumentu úvodníky
PubMed
34394058
PubMed Central
PMC8358401
DOI
10.3389/fmicb.2021.709184
Knihovny.cz E-zdroje
- Klíčová slova
- ecology, genomics, holobiont concept, metabolism, prokaryotic symbionts, protists,
- Publikační typ
- úvodníky MeSH
Department of Parasitology University of São Paulo São Paulo Brazil
Faculty of Science Life Science Research Centre University of Ostrava Ostrava Czechia
Martsinovsky Institute of Medical Parasitology Sechenov University Moscow Russia
Zoological Institute of the Russian Academy of Sciences St Petersburg Russia
Editorial on the Research Topic Symbioses Between Protists and Bacteria/Archaea PubMed
Zobrazit více v PubMed
Alves J. M., Klein C. C., da Silva F. M., Costa-Martins A. G., Serrano M. G., Buck G. A., et al. . (2013). Endosymbiosis in trypanosomatids: the genomic cooperation between bacterium and host in the synthesis of essential amino acids is heavily influenced by multiple horizontal gene transfers. BMC Evol. Biol. 13:190. 10.1186/1471-2148-13-190 PubMed DOI PMC
Douglas A. E. (2010). The Symbiotic Habit. Princeton, N.J.: Princeton University Press.
Fokin S. I., Görtz H.-D. (2009). Diversity of Holospora bacteria in Paramecium and their characterization, in Endosymbionts in Paramecium, 1st Edn., ed Fujishima M. (Berlin, Heidelberg: Springer; ), 161–199.
Guimaraes A. J., Gomes K. X., Cortines J. R., Peralta J. M., Peralta R. H. (2016). Acanthamoeba spp. as a universal host for pathogenic microorganisms: one bridge from environment to host virulence. Microbiol. Res. 193, 30–38. 10.1016/j.micres.2016.08.001 PubMed DOI
Gutiérrez G., Chistyakova L. V., Villalobo E., Kostygov A. Y., Frolov A. O. (2017). Identification of Pelomyxa palustris endosymbionts. Protist 168, 408–424. 10.1016/j.protis.2017.06.001 PubMed DOI
Husnik F., Tashyreva D., Boscaro V., George E. E., Lukeš J., Keeling P. J. (2021). Bacterial and archaeal symbioses with protists. Curr. Biol. 31, R862–R877. 10.1016/j.cub.2021.05.049 PubMed DOI
Keeling P. J., McCutcheon J. P., Doolittle W. F. (2015). Symbiosis becoming permanent: survival of the luckiest. Proc. Natl. Acad. Sci. U.S.A. 112, 10101–10103. 10.1073/pnas.1513346112 PubMed DOI PMC
Kostygov A. Y., Butenko A., Nenarokova A., Tashyreva D., Flegontov P., Lukeš J., et al. . (2017). Genome of Ca. Pandoraea novymonadis, an endosymbiotic bacterium of the trypanosomatid Novymonas esmeraldas. Front. Microbiol. 8:1940. 10.3389/fmicb.2017.01940 PubMed DOI PMC
Margulis L. (1991). Symbiogenesis and symbionticism, in Symbiosis as a Source of Evolutionary Innovation: Speciation and Morphogenesis, eds Margulis L., Fester R. (Cambridge, MA: MIT Press; ), 1–14. PubMed
Silva F. M., Kostygov A. Y., Spodareva V. V., Butenko A., Tossou R., Lukeš J., et al. . (2018). The reduced genome of Candidatus Kinetoplastibacterium sorsogonicusi, the endosymbiont of Kentomonas sorsogonicus (Trypanosomatidae): loss of the haem-synthesis pathway. Parasitology 145, 1287–1293. 10.1017/S003118201800046X PubMed DOI
Stephens M. E., Gage D. J. (2020). Single-cell amplicon sequencing reveals community structures and transmission trends of protist-associated bacteria in a termite host. PLoS ONE 15:e0233065. 10.1371/journal.pone.0233065 PubMed DOI PMC
Yurchenko T., Ševčiková T., Pribyl P., El Karkouri K., Klimeš V., Amaral R., et al. . (2018). A gene transfer event suggests a long-term partnership between eustigmatophyte algae and a novel lineage of endosymbiotic bacteria. ISME J. 12, 2163–2175. 10.1038/s41396-018-0177-y PubMed DOI PMC
Methanogenic symbionts of anaerobic ciliates are host and habitat specific