Chang KP. Ultrastructure of symbiotic bacteria in normal and antibiotic-treated Blastocrithidia culicis and Crithidia oncopelti. J. Protozool. 21: 699-707, 1974. PubMed: 4217371
Chang KP, et al. Effects of methylglyoxal bis(ganylhydrazone) on trypanosomatid flagellates: inhibition of growth and nucleoside incorporation in Trypanosoma brucei. J. Protozool. 25: 145-149, 1978. PubMed: 660567
. . Exp. Parasitol. 14: 129-142, 1963.
Schlaeppi K, et al. The major component of the paraflagellar rod of Trypanosoma brucei is a helical protein that is encoded by two identical, tandemly linked genes. J. Cell Biol. 109: 1695-1709, 1989. PubMed: 2793936
Clark CG. Riboprinting: A tool for the study of genetic diversity in microorganisms. J. Eukaryot. Microbiol. 44: 277-283, 1997. PubMed: 9225441
Goncanlves De Lima VM, et al. Comparison of six isoenzymes from 10 species of Crithidia. J. Protozool. 29: 397-401, 1982.
Fish WR, et al. The cyclopropane fatty acid of trypanosomatids. Mol. Biochem. Parasitol. 3: 103-115, 1981. PubMed: 7254247
Chang KP. Reduced growth of Blastocrithidia culicis and Crithidia oncopelti freed of intracellular symbiotes by chloramphenicol. J. Protozool. 22: 271-276, 1975. PubMed: 807721
Chang KP. Symbiote-free hemoflagellates, Blastocrithidia culicis and Crithidia oncopelti: their liver factor requirement and serologic identity. J. Protozool. 23: 241-244, 1976. PubMed: 933081
Cho J, Eichinger D. Crithidia fasciculata induces encystation of Entamoeba invadens in a galactose-dependent manner. J. Parasitol. 84: 705-710, 1998. PubMed: 9714198
Hollar J, et al. Monophyly of endosymbiont containing trypanosomatids: Phylogeny versus taxonomy. J. Eukaryot. Microbiol. 45: 293-297, 1998. PubMed: 9627990
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