Cellular components for Jakoba are not particularly unique. They contain a single nucleus found close to the flagellar bases, a single Golgi body, and the mitochondrialorganelles are flattened. Jakobamitochondria, however, are of particular interest evolutionarily due to their unique bacterial-like mitochondrial genomes. It has been found that their mitochondrial genomes contain considerably more functional genes than those of other eukaryotic groups and it appears they have retained the ancestral eubacterial RNA polymerase, which has been replaced by viral type polymerase in all other mitochondriate eukaryotes. Overall, jakobid mitochondrial genomes are primitively complex in that they resemble their proteobacterial ancestors more than any other mitochondria.
“The circular mitochondrial genome of Jakoba libera strain ATCC 50422 is 96.6 kbp in size. Sequencing is nearly completed. At present, 77 genes have been identified, none of them including an intron. Intergenic regions account for ~ 30% of the genome and contain clusters of tandem repeats whose unit length is ~20 bp. Transcribed genes are found on both DNA strands. The standard genetic code is used for translation. Encoded genes include those commonly found in mtDNA, including the protein-coding genes nad1,2,3,4,4L,5,6, cob, cox1,2,3, and atp6,8,9, as well as large subunit and small subunit rRNA genes and >22 tRNA genes. Also present are a number of protein genes typical of protist but not animal or fungal mtDNAs. These include nad7,9,11, atp1, rpl2,5,6,14,16, and rps2-4,11-14,19. A number of unique ORFs are also encoded by J. libera mtDNA.” “A number of J. liberamitochondrial genes are rare or absent in other mitochondrial genomes but are present in bacteria. Among these rare or unique mtDNA-encoded genes are dpo, rpoB,C, rrn5, rnpB, tufA, yejU-W, and several of the ribosomal protein genes.” “A comparison of gene order in the mtDNAs of J. libera…” show “clusters that are otherwise not found in bacteria but that evidently appeared during evolution of the mitochondrial genome after the divergence of the proto-mitochondrion from the bacterial lineage. Examples are the clusters sdh3 to nad5,, atp8--rps4-atp9 and nad11-nad1-cox11-cox3-tufA.”
Cultures
There are currently three strains of Jakoba libera available for culture. They can not be grown axenically, but are easily raised in minimal media with added bacteria