By J.R. Baker (ed.), R. Muller (ed.)
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Additional info for Advances in Parasitology, Vol. 29
Evansi. Again, these last two taxa have idiosyncratic DNA characteristics. It is not possible to speculate on the time scale of the evolution described. Indeed, new genetic forms may be developing constantly, by whatever process, in every area, and selection pressures will continue to establish the successful forms in the particular circumstances encountered. In addition, phenotypes may be transferred from one zone to the other, especially in modern times, and be capable of survival. These conclusions will probably need to be modified whenever collections of trypanosomes from new areas are examined; for instance, few samples came from the southernmost parts of West Africa.
W. W. and Fantham, H. B. (1910). On the peculiar morphology of a trypanosome from a case of sleeping sickness and the possibility of its being a new species ( T . rhodesiense). Proceedings of the Royal Society, Series B 83, 28. , Wells, J. , LePage, R. W. , Schweizer, J. and Jenni, L. (1988). Gene exchange in African trypanosomes: characterization of a new hybrid genotype. Molecular and Biochemical Parasitology 27, 191-200. Stevens, J. , Nunes, V. L. , Lanham, S. M. and Oshiro, E. T. (1989). Isoenzyme characterization of Trypanosoma evansi isolated from capybaras and dogs in Brazil.
Although a precise comparison between the two studies is not easy, because the patterns for ALAT and PEPl do not entirely correspond, Boid’s finding of several forms of ALAT and ME indicates further genetic variation in T. evansi. This variation may not indicate another major form, since both enzymes are markedly polymorphic. Although diversity in T. evansi is restricted in comparison with other members of Trypanozoon, its extent will remain uncertain until the different collections are compared directly.
Advances in Parasitology, Vol. 29 by J.R. Baker (ed.), R. Muller (ed.)