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U M Morgan

Publications and source records attributed to U M Morgan.

45 records · Page 3Linked to original sources

Differentiation between human and animal isolates of Cryptosporidium parvum using rDNA sequencing and direct PCR analysis.

Sequence analysis of a polymerase chain reaction (PCR)-amplified 298-bp region of the Cryptosporidium parvum 18S rRNA gene was carried out on 10 human and 9 animal isolates. Eight of the 9 animal isolates and 3 human isolates displayed the recognition sequence TATATTT, whereas 7/10 human isolates exhibited the recognition sequence TTTTTTTTTTT. Sequence analysis of the ninth animal isolate, which was recovered from a Koala, revealed this isolate to be different from both human and animal isolates. The AT richness of the rDNA recognition sequences rendered them unsuitable for primer design and therefore a diagnostic randomly amplified polymorphic DNA fragment previously developed in our laboratory was also sequenced. Analysis of 2 human and 2 animal isolates again revealed distinct differences between animal and human isolates. On the basis of this sequence information, diagnostic primers were designed that could directly differentiate between animal and human isolates on the basis of the size of the PCR product. The ability to differentiate directly between human and animal isolates has important implications for studies of the transmission and zoonotic potential of this organism. These results also raise further doubts about the uniformity of the species C. parvum.

Animals↗

Morphological and molecular characterization of Giardia isolated from the straw-necked ibis (Threskiornis spinicollis) in Western Australia.

Following the first report of avian Giardia infection in Australia, isolates of the parasite recovered from naturally infected straw-necked ibis (Theskiornis spinicollis) were characterized using median body morphology, scanning electron microscopy, multilocus enzyme electrophoresis, random amplified polymorphic DNA (RAPD), and small subunit ribosomal RNA (SSU-rRNA) analyses. Results were compared with Giardia from other birds and mammals, and the extent of genetic diversity between a range of ibis isolates collected in Western Australia was determined. The ibis isolates of Giardia were genetically relatively homogeneous, which is in contrast to the extensive genetic heterogeneity often displayed by mammalian Giardia isolates. Morphologically, Giardia from ibis were similar to Giardia ardeae although they differed genetically and by the fact that the ibis isolates could not be established in in vitro culture. Sequence data of the DNA coding for the SSU-rRNA found a 96% homology between the ibis isolates from Western Australia and G. ardeae, suggesting that they represent distinct strains of the same species. In contrast, the ibis isolates were genetically and morphologically very different than Giardia duodenalis and Giardia muris from mammals.

Animals↗

Molecular characterization of Cryptosporidium isolates from humans and other animals using random amplified polymorphic DNA analysis.

Genetic variation in 25 Cryptosporidium isolates was analyzed using the random amplified polymorphic DNA (RAPD) technique. Simple reproducible polymorphisms were generated (using five primers) from Cryptosporidium DNA that was free of contaminating bacterial DNA. The results generated by four of the five primers were statistically correlated (P < 0.001). The combined data from three primers were used to construct a phenogram using Jaccard's distance. Four groupings could be distinguished. Two C. serpentis isolates from snakes formed a distinct group of their own, whereas C. parvum isolates were divided into two main groups: one containing most human isolates and the other containing mostly domestic animals plus two remaining human isolates. Due to the sensitivity of the RAPD technique, isolates can now be analyzed genetically, directly from fecal samples without further biological amplification. This represents a significant advance on current techniques.

Animals↗

Further evidence for the occurrence of a distinct strain of Echinococcus granulosus in European pigs.

The morphology, adult development and genetic characteristics of Echinococcus granulosus isolated from pigs in Poland were examined and compared with those of other recognised strains of E. granulosus. The isolates were characterised by their distinct morphology, rapid maturation and unique DNA hybridisation profiles. The form of E. granulosus that occurs in European pigs may therefore be a distinct strain that can be separated morphologically and genetically from other strains and that exhibits features of epidemiological significance, including a rapid rate of development in dogs and an apparent low infectivity to humans and domestic ungulates.

Animals↗

Activities of several benzimidazoles and tubulin inhibitors against Giardia spp. in vitro.

Previous studies in our laboratory have shown that albendazole is effective against Giardia spp. in vitro and in vivo, prompting an investigation of the effects of several related benzimidazoles (BZs) on the viability of this protozoan parasite. A range of BZs was tested, and their effects were compared with those of a number of microtubule inhibitors. The effects produced by the two types of drugs were markedly similar, namely, trophozoite detachment and distortion of morphology and general structure, indicating a potential antimicrotubule mode of action for BZs. Mebendazole, albendazole, and fenbendazole proved to be among the most effective BZs tested, exhibiting apparent irreversibility. Nocodazole, oxfendazole, and albendazole sulfoxide, among others, produced transient inhibitions only. Further studies are required to evaluate all available BZs and other antigiardial agents to ensure the development of the most effective and safest antigiardial agent possible.

Albendazole↗

RAPD (random amplified polymorphic DNA) analysis of Giardia DNA and correlation with isoenzyme data.

Fourteen Giardia duodenalis isolates were examined using the RAPD (random amplified polymorphic deoxyribonucleic acid) technique. Simple reproducible polymorphisms were generated using 3 different RAPD primers. The results generated by each primer were very similar and were significantly correlated with each other. These data were then compared to existing isoenzyme electrophoresis data on the same isolates. The RAPD data divided the isolates into 10 groupings or rapdemes while the isoenzyme data divided them into 10 similar zymodemes. Both methods grouped 4 isolates (BAH42, BAH44c9, BAH12c9 and BAH39c7), which comprised a phenotypically heterogeneous assemblage with respect to growth rate and metabolism, into similar groupings. The 2 methods were significantly correlated (P < 0.001). It will therefore be possible to use RAPD for the characterization of isolates of Giardia, and other parasites such as Cryptosporidium, which are refractory to cultivation in vitro.

Animals↗

Cryptosporidium andersoni n. sp. (Apicomplexa: Cryptosporiidae) from cattle, Bos taurus.

A new species of Cryptosporidium is described from the feces of domestic cattle, Bos taurus. Oocysts are structurally similar to those of Cryptosporidium muris described from mice but are larger than those of Cryptosporidium parvum. Oocysts of the new species are ellipsoidal, lack sporocysts, and measure 7.4 x 5.5 microm (range, 6.0-8.1 by 5.0-6.5 microm). The length to width ratio is 1.35 (range, 1.07-1.50). The colorless oocyst wall is < 1 microm thick, lacks a micropyle, and possesses a longitudinal suture at one pole. A polar granule is absent, whereas an oocyst residuum is present. Oocysts were passed fully sporulated and are not infectious to outbred, inbred immunocompetent or immunodeficient mice, chickens or goats. Recent molecular analyses of the rDNA 18S and ITS1 regions and heat-shock protein 70 (HSP-70) genes demonstrate this species to be distinct from C. muris infecting rodents. Based on transmission studies and molecular data, we consider the large form of Cryptosporidium infecting the abomasum of cattle to be a new species and have proposed the name Cryptosporidium andersoni n. sp. for this parasite.

Animals↗