The taxonomic situation in the genus Tritrichomonas is the subject of controversial discussion: potentially T. foetus and T. suis, the tritrichomonads from cattle and swine, respectively, could belong to the same species. In order to shed some light on this question, a molecular biological analysis was performed. The 5.8S rRNA gene and the flanking internal transcribed spacer regions (ITS1 and ITS2) of 12 different isolates of 3 Tritrichomonas species T. foetus, T. suis and T. mobilensis were enzymatically amplified by PCR and subcloned. Also, the corresponding regions of the trichomonads Trichomonas vaginalis, T. tenax, T. gallinae and Pentatrichomonas hominis were included in this study. Sequence analysis of cloned fragments was used to compare the parasite isolates. The genus Tritrichomonas exhibited an extremely high degree of homogeneity. All T. foetus and T. suis isolates had identical sequences, and only 1 substitution was found in the ITS2 region of T. mobilensis. In contrast, the genus Trichomonas shared more diversity. The results obtained in this study support a possible future revision of the taxonomic classification of tritrichomonads.
Tritrichomonas foetus is the causative agent of bovine tritrichomonosis, a sexually transmitted disease leading to infertility and abortion. Diagnosis is hampered by putative contamination of samples with intestinal or coprophilic trichomonadid protozoa which might be mistaken for T. foetus. Therefore, we developed a PCR test optimized for applicability in routine diagnosis. Amplification is based upon primers TFR3 and TFR4 directed to the rRNA gene units of T. foetus. In order to avoid potential carryover contamination by products of previous amplification reactions, conditions were adapted to the use of the uracil DNA glycosylase system. Furthermore, documentation and interpretation of results were facilitated by including a DNA enzyme immunoassay for the detection of amplification products. Specificity was confirmed with genomic material from different related trichomonadid protozoa. The high sensitivity of the test allowed the detection of a single T. foetus organism in diagnostic culture medium or about 50 parasites per ml of preputial washing fluid. The present methods are thus proposed as (i) confirmatory tests for microscopic diagnosis following diagnostic in vitro cultivation and (ii) a direct T. foetus screening test with diagnostic samples.
intermedia, and Y. rohdei strains from Y. enterocolitica, which could not be differentiated by the API 20E test system. The probability for correct biotype identification of Y. enterocolitica isolates was 98.3% (41 externally validated strains). For correct serotype identification, the probability was 92.5% (42 externally validated strains). In addition, the presence or absence of the ail gene, one of the main pathogenicity markers, was demonstrated using FT-IR. The probability for correct identification of isolates concerning the ail gene was 98.5% (51 externally validated strains). This indicates that it is possible to obtain information about genus, species, and in the case of Y. enterocolitica also subspecies type with a single measurement. Furthermore, this is the first example of the identification of specific pathogenicity using FT-IR.
scite is a Brooklyn-based organization that helps researchers better discover and understand research articles through Smart Citations–citations that display the context of the citation and describe whether the article provides supporting or contrasting evidence. scite is used by students and researchers from around the world and is funded in part by the National Science Foundation and the National Institute on Drug Abuse of the National Institutes of Health.