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T De Meeûs

Publications and source records attributed to T De Meeûs.

5 recordsLinked to original sources

Clonality structure in Candida dubliniensis.

Multilocus enzyme electrophoresis was performed on 76 European strains of Candida dubliniensis. Ten of the 20 enzyme-encoding loci were polymorphic, giving rise to 10 electrophoretic types within the sample studied. Investigation of the population genetics of a subset of 36 strains from HIV-infected patients in London showed the existence of strong heterozygote deficits and excesses associated with significant linkage disequilibria between pairs of loci. These findings, together with the predominance of multilocus genotypes, strongly suggest that C. dubliniensis is mainly (if not totally) clonal. Analysis of genotypes of a larger number of strains should confirm this conclusion and improve our understanding of the epidemiology of this pathogen.

AIDS-Related Opportunistic Infections↗

Sex-specific genetic structure in Schistosoma mansoni: evolutionary and epidemiological implications.

We studied the population genetic structure of 360 and 1247 adult Schistosoma mansoni using seven microsatellite and seven random amplified polymorphic DNA (RAPD) markers, respectively. Parasites were collected from their natural definitive host Rattus rattus in Guadeloupe (West Indies). We found a sex-specific genetic structure, a pattern never before reported in a parasitic organism. Male genotypes were more randomly distributed among rats than female genotypes. This interpretation was consistent with a lower differentiation between hosts for males relative to females, the higher genetic similarity between females in the same host and the observed local (i.e. within-individual-host) differences in allele frequencies between the two sexes. We discuss our results using ecological and immunological perspectives on host-parasite relationships. These results change our view on the epidemiology of schistosomiasis, a serious disease affecting humans in African and American intertropical zones.

Animals↗

Spatial and temporal distributions of parasites: can wild and domestic ungulates avoid African tick larvae?

Infestation of a new host is a crucial stage in the life-cycle of parasites, and the possibility that hosts avoid infesting contact depends, in part, on the predictability of infestation risk. Immature free stages of ticks (Acari, Ixodidae) have limited mobility and survival in the vegetation and strongly depend on host behaviours for their infestation. We studied spatial and temporal distributions of the larvae of 2 major groups of African risk species in a ranch in Zimbabwe. No difference in the abundance of Rhipicephalus evertsi evertsi larvae was found among vegetation types and during most of the seasonal cycle, and no reliable indicator of their presence on a given site was identified. Rhipicephalus appendiculatus/Rhipicephalus zambeziensis larvae are mainly found during the cool dry season, in vegetation types situated close to permanent water holes or dominated by Acacia trees, which provide key forage resources for ungulates; and several indicators of their presence were identified. For both tick groups, spatial and temporal distributions of the larvae result in an optimized contact with ungulate hosts: R. e. evertsi larvae are unpredictable and thus unavoidable by hosts, whereas R. appendiculatus/R. zambeziensis larvae are predictable but also unavoidable because they are associated with key-resources for ungulates.

Analysis of Variance↗

Parasites as host [corrected] evolutionary prints: insights into host evolution from parasitological data.

The close relationships which link parasitic organisms to their hosts have led to the use of parasites as biological tags. Most studies on this topic refer to parasites as host ecological tags. Recent development of molecular methods which give access to the genomic structures of populations have provided new information on the evolutionary biology of parasites. In this paper, we have attempted to review whether parasites can be considered as "host evolutionary prints", and focus our discussion on host biodiversity and biogeography.

Animals↗