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1 July 2001 On Core Jakobids and Excavate Taxa: The Ultrastructure of Jakoba incarcerata
ALASTAIR G. B. SIMPSON, DAVID J. PATTERSON
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Abstract

The cellular organisation of the ‘excavate’ flagellate Jakoba incarcerata Bernard, Simpson and Patterson 2000 is described. Cells have one nucleus and dictyosome. The putative mitochondria lack cristae. Two flagella (anterior and posterior) insert anterior to the feeding groove. The posterior flagellum bears a dorsal vane. An ‘anterior’ microtubular root arises against the anterior basal body. Two main microtubular roots, left and right, and a singlet ‘root’ arise around the posterior basal body and support the groove. Non-microtubular fibres termed ‘A’, ‘B’, ‘I’, and ‘composite’ associate with the right root. A multilaminar ‘C’ fibre associates with the left root. The cytoskeleton of J. incarcerata indicates a common ancestry with other excavate taxa (i.e. diplomonads, retortamonads, heteroloboseids, ‘core jakobids’, Malawimonas, Carpediemonas, and Trimastix). Overall, J. incarcerata is most similar to (other) core jakobids, namely Jakoba libera, Reclinomonas, and Histiona. We regard J. incarcerata as a core jakobid and identify the group by the synapomorphy ‘vanes restricted to dorsal side of the posterior flagellum’. The anterior root and position of the B fibre (and presence of dense inclusions in the cartwheels and a conscpicuous singlet root-associated fibre) in J. incarcerata are novel for core jakobids and argue for close relationships with Trimastix and/or Heterolobosea. The C fibre is similar in substructure to the costal fibre of parabasalids and it is possible that the structures are homologous.

ALASTAIR G. B. SIMPSON and DAVID J. PATTERSON "On Core Jakobids and Excavate Taxa: The Ultrastructure of Jakoba incarcerata," The Journal of Eukaryotic Microbiology 48(4), 480-492, (1 July 2001). https://doi.org/10.1111/j.1550-7408.2001.tb00183.x
Received: 19 September 2000; Accepted: 5 April 2001; Published: 1 July 2001
JOURNAL ARTICLE
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KEYWORDS
cytoskeleton
diplomonads
eukaryotes
evolution
flagellates
Giardia
Jakobidae
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