368
Cavalier-Smith, 2013a.
369
Keeling P. J. Diversity and evolutionary history of plastids and their hosts // American Journal of Botany, 2004, V. 91, № 10, 1481–1493.
370
Burki F. The eukaryotic tree of life from a global phylogenomic perspective // Cold Spring Harbor. Perspectives in Biology, 2014, V. 6, № 5, a016147.
371
Adl et al., 2012.
372
Burki F., Shalchian-Tabrizi K., Pawlowski J. Phylogenomics reveals a new ‘megagroup’ including most photosynthetic eukaryotes // Biology Letters, 2008, V. 4, № 4, 366–369.
373
Hampl et al., 2009.
374
Adl et al., 2012.
375
Germot A., Philippe H. Critical analysis of eukaryotic phylogeny: a case study based on the HSP70 family // Journal of Eukaryotic Microbiology, 1999, V. 46, № 2, 116–124.
376
Germot, Philippe, 1999.
377
Philippe H., Germot A., Moreira D. The new phylogeny of eukaryotes // Current Opinion in Genetics & Development, 2000, V. 10, № 6, 596–601.
378
Philippe H. Early — branching or fast — evolving eukaryotes? An answer based on slowly evolving positions // Proceedings of the Royal Society of London, B: Biological Sciences, 2000, V. 267, № 1449, 1213–1221.
379
Philippe, 2000.
380
Philippe et al., 2000. «Примитивность» — двусмысленный термин. В данном случае Эрве Филипп называет примитивностью раннее отхождение группы от общего ствола (а не простоту организации или сходство с общим предком — такие значения термина «примитивность» тоже существуют, но здесь они неактуальны).
381
Baldauf, 2003.
382
Завадский К. М., Колчинский Э. И. Эволюция эволюции. — Л.: Наука, 1977.
383
Simpson G. G. Periodicity in vertebrate evolution // Journal of Paleontology, 1952, V. 26, № 3, 359–370.
384
Colbert E. H. Explosive evolution // Evolution, 1953, V. 7, № 1, 89–90.
385
Chaline J. Rodents, evolution, and prehistory // Endeavour, 1977, V. 1, № 2, 44–51.
386
Rokas A., Carroll S. B. Bushes in the tree of life // PLoS Biology, 2006, V. 4, № 11, e352.
387
Pawlowski J. The new micro-kingdoms of eukaryotes // BMC Biology, 2013, V. 11, № 1, 40.
388
Walker G., Dacks J. B., Martin Embley T. Ultrastructural description of Breviata anathema, n. gen., n. sp., the organism previously studied as «Mastigamoeba invertens» // Journal of Eukaryotic Microbiology, 2006, V. 53, № 2, 65–78.
389
Heiss A. A., Walker G., Simpson A. G. B. The flagellar apparatus of Breviata anathema, a eukaryote without a clear supergroup affinity // European Journal of Protistology, 2013, V. 49, № 3, 354–372.
390
Minge M. A. et al. Evolutionary position of breviate amoebae and the primary eukaryote divergence // Proceedings of the Royal Society of London, B: Biological Sciences, 2009, V. 276, № 1657, 597–604.
391
Burki, 2014.
392
Brown M. W. et al. Phylogenomics demonstrates that breviate flagellates are related to opisthokonts and apusomonads // Proceedings of the Royal Society of London, B: Biological Sciences, 2013, V. 280, № 1769, 20131755.
393
Cavalier-Smith, 2009.
394
Cavalier-Smith T., Chao E. E. Phylogeny and evolution of apusomonadida (protozoa: apusozoa): new genera and species // Protist, 2010, V. 161, № 4, 549–576.
395
Torruella G., Moreira D., Lopez-Garcia P. Phylogenetic and ecological diversity of apusomonads, a lineage of deep-branching eukaryotes // Environmental Microbiology Reports, 2017, V. 9, № 2, 113–119.
396
Brown et al., 2013.
397
Paps J. et al. Molecular phylogeny of unikonts: new insights into the position of apusomonads and ancyromonads and the internal relationships of opisthokonts // Protist, 2013, V. 164, № 1, 2–12.
398
Cavalier-Smith et al., 2014.
399
Atkins M. S., McArthur A. G., Teske A. P. Ancyromonadida: a new phylogenetic lineage among the protozoa closely related to the common ancestor of metazoans, fungi, and choanoflagellates (Opisthokonta) // Journal of Molecular Evolution, 2000, V. 51, № 3, 278–285.
400
Carter H. J. XXXII. — On the fresh-and salt-water Rhizopoda of England and India // Journal of Natural History, 1865, V. 15, № 88, 277–293.
401
Brugerolle G. et al. Collodictyon triciliatum and Diphylleia rotans (= Aulacomonas submarina) form a new family of flagellates (Collodictyonidae) with tubular mitochondrial cristae that is phylogenetically distant from other flagellate groups // Protist, 2002, V. 153, № 1, 59–70.
402