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Amoeboflagellate

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The heterolobosean human pathogen Naegleria fowleri can behave as an amoeba (center) or as a flagellate (right).

An amoeboflagellate is any eukaryotic organism capable of behaving as an amoeba and as a flagellate at some point during their life cycle. Amoeboflagellates present pseudopodia and at least one flagellum, often in separate life stages (as in Naegleria fowleri, a human pathogen)[1] or in the same stage simultaneously (as in Cercomonas).[2]

Occurrence

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The amoeboflagellate cell type has been acquired numerous independent times across the evolution of protists (i.e. primarily unicellular eukaryotes that are not plants, fungi or animals).[3] Some examples of protist phyla with amoeboflagellate body types are:

  • Percolozoa contains amoeboflagellates with lobose pseudopods, but are differentiated by their flat mitochondrial cristae, not tubular as in Amoebozoa.[7][15] A popular example is the genus Naegleria, whose members can change shape between an amoeba and a flagellate.[1]
The choanoflagellate Salpingoeca rosetta can switch between a swimming (flagellate) stage and a crawling (amoeboid) stage when subjected to a confined space.[3]

The amoeboflagellate phenotype is present in numerous protists that have a crucial phylogenetic position near the origin of animals and fungi, within the vast clade known as Opisthokonta. It has been described in choanoflagellates such as Salpingoeca, filastereans such as Pigoraptor, and even some early-branching fungi such as Sanchytrium,[16] but it is absent in animals.[3] The two species of Pluriformea have a wide range of cell types, from cellular aggregations to amoeboflagellates.[17]

Notes

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  1. ↑ This class belongs to a paraphyletic phylum that is in disuse, known as Apusozoa.[12] Although not a phylum itself, it is listed here with other phyla due to comprising an independent clade of organisms.

References

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  1. 1 2 Johan F. De Jonckheere (2011). "Origin and evolution of the worldwide distributed pathogenic amoeboflagellate Naegleria fowleri". Infection, Genetics and Evolution. 11 (7): 1520–1528. doi:10.1016/j.meegid.2011.07.023. PMID 21843657. Wikidata Q37917917.
  2. 1 2 Mylnikov, Aleksandr Alexander; Serguei A. Karpov (2004). "Review of diversity and taxonomy of cercomonads" (PDF). Protistology. 3 (4): 201–217. ISSN 1680-0826. Wikidata Q124459772.
  3. 1 2 3 Thibaut Brunet; Marvin Albert; William Roman; Maxwell C Coyle; Danielle C Spitzer; Nicole King (2021). "A flagellate-to-amoeboid switch in the closest living relatives of animals". eLife. 10. doi:10.7554/elife.61037. PMC 7895527. PMID 33448265. Wikidata Q105870433.
  4. ↑ Sebastian Hess; Melkonian, Michael (2014). "Ultrastructure of the Algivorous Amoeboflagellate Viridiraptor invadens (Glissomonadida, Cercozoa)". Protist. 165 (5): 605–635. doi:10.1016/j.protis.2014.07.004. PMID 25150610. Wikidata Q42464422.
  5. ↑ Anna Maria Fiore-Donno; Tim Richter-Heitmann; Florine Degrune; et al. (2019). "Functional Traits and Spatio-Temporal Structure of a Major Group of Soil Protists (Rhizaria: Cercozoa) in a Temperate Grassland". Frontiers in Microbiology. 10: 1332. doi:10.3389/fmicb.2019.01332. PMC 6579879. PMID 31244819. Wikidata Q64891960.
  6. ↑ David Bass; Akinori Yabuki; Sébastien Santini; Sarah Romac; Berney, Cédric (2012). "Reticulamoeba is a long-branched Granofilosean (Cercozoa) that is missing from sequence databases". PLOS One. 7 (12) e49090. Bibcode:2012PLoSO...749090B. doi:10.1371/journal.pone.0049090. PMC 3514243. PMID 23226495. Wikidata Q34506390.
  7. 1 2 3 Cavalier-Smith, Thomas; Zhao, Ema; Brian Oates (2004). "Molecular phylogeny of Amoebozoa and the evolutionary significance of the unikont Phalansterium". European Journal of Protistology. 40 (1): 21–48. doi:10.1016/j.ejop.2003.10.001. Wikidata Q29399107.
  8. ↑ Emmo Hamann; Harald Gruber-Vodicka; Kleiner, Manuel; et al. (2016). "Environmental Breviatea harbour mutualistic Arcobacter epibionts". Nature. 534 (7606): 254–8. doi:10.1038/nature18297. PMC 4900452. PMID 27279223. Wikidata Q28828264.
  9. ↑ Jim Clark; Edward F. Haskins (2016). "Mycosphere Essays 3. Myxomycete spore and amoeboflagellate biology: a review". Mycosphere. 7 (2): 86–101. doi:10.5943/mycosphere/7/2/1. Wikidata Q117487619.
  10. ↑ Irina A. Milyutina; Vladimir V. Aleshin; Mikrjukov, Kirill; OIga S. Kedrova; Nikolai B. Petrov (2001). "The unusually long small subunit ribosomal RNA gene found in amitochondriate amoeboflagellate Pelomyxa palustris: its rRNA predicted secondary structure and phylogenetic implication". Gene. 272 (1–2): 131–139. doi:10.1016/s0378-1119(01)00556-x. PMID 11470518. Wikidata Q48352141.
  11. ↑ Koryu Kin; Schaap, Pauline (2021). "Evolution of Multicellular Complexity in The Dictyostelid Social Amoebas". Genes. 12 (4): 487. doi:10.3390/genes12040487. PMC 8067170. PMID 33801615. Wikidata Q124470705.
  12. ↑ Jordi Paps; Luis A Medina-Chacón; Wyth Marshall; Hiroshi Suga; Iñaki Ruiz-Trillo (2012). "Molecular phylogeny of unikonts: new insights into the position of apusomonads and ancyromonads and the internal relationships of opisthokonts". Protist. 164 (1): 2–12. doi:10.1016/j.protis.2012.09.002. PMC 4342546. PMID 23083534. Wikidata Q34307204.
  13. ↑ Marianne A Minge; Jeffrey D Silberman; Russell J S Orr; Cavalier-Smith, Thomas; Kamran Shalchian-Tabrizi; Burki, Fabien; Asmund Skjaeveland; Kjetill S Jakobsen (2009). "Evolutionary position of breviate amoebae and the primary eukaryote divergence". Proceedings of the Royal Society B. 276 (1657): 597–604. doi:10.1098/rspb.2008.1358. PMC 2660946. PMID 19004754. Wikidata Q24652846.
  14. ↑ Cavalier-Smith, Thomas; Ema E Chao; Elizabeth A Snell; Berney, Cédric; Anna Maria Fiore-Donno; Rhodri Lewis (2014). "Multigene eukaryote phylogeny reveals the likely protozoan ancestors of opisthokonts (animals, fungi, choanozoans) and Amoebozoa". Molecular Phylogenetics and Evolution. 81: 71–85. doi:10.1016/j.ympev.2014.08.012. PMID 25152275. Wikidata Q34434820.
  15. ↑ C. A. Broers; C. K. Stumm; G. D. Vogels; G. Brugerolle (1990). "Psalteriomonas lanterna gen. nov., sp. nov., a free-living amoeboflagellate isolated from freshwater anaerobic sediments". European Journal of Protistology. 25 (4): 369–380. doi:10.1016/s0932-4739(11)80130-6. PMID 23196051. Wikidata Q30579184.
  16. ↑ Luis Javier Galindo; Purificación López-García; Guifré Torruella; Sergey Karpov; David Moreira (2021). "Phylogenomics of a new fungal phylum reveals multiple waves of reductive evolution across Holomycota". Nature Communications. 12 (1). doi:10.1038/s41467-021-25308-w. PMC 8371127. PMID 34404788. Wikidata Q113186376.
  17. ↑ Hehenberger, Elisabeth; Denis Tikhonenkov; Martin Kolisko; del Campo, Javier; Anton S Esaulov; Alexander P Mylnikov; Keeling, Patrick (2017). "Novel Predators Reshape Holozoan Phylogeny and Reveal the Presence of a Two-Component Signaling System in the Ancestor of Animals". Current Biology. 27 (13): 2043-2050.e6. doi:10.1016/j.cub.2017.06.006. PMID 28648822. Wikidata Q40146126.