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P W Sattler

Publications and source records attributed to P W Sattler.

7 recordsLinked to original sources

Electrophoretically detectable protein variation in natural populations of the lone star tick, Amblyomma americanum (Acari: Ixodidae).

Nine populations of Amblyomma americanum (L.) were examined electrophoretically for variation of 21 enzymes. Only three enzymes were not polymorphic and the average heterozygosity per individual (h) for the species was 0.085 with a range of 0.077 to 0.110, comparing well with values in other arthropods. The average Nei identity value for pairwise comparisons among the nine populations was high, 0.994 +/- 0.004 (I +/- SD). These high identity values and the absence of geographic structuring of the protein variation suggest that this species is genetically homogeneous. Normal levels of genic variability within and a lack of divergence between populations were not predicted by models developed to describe these genetic characteristics on the basis of the heterogeneities encountered by parasites in their environment. An analysis of data from several different species of ticks suggests host mobility and abundance, as well as tick abundance and selectivity in choosing a host, are important parameters in determining genetic variation in these ectoparasites.

Animals↗

Are tick populations really less variable and should they be?

Empirical evidence from electrophoretic examinations of Metastriate ticks does not support the prediction that these ectoparasites necessarily have low levels of genetic variability within populations and large interpopulation differences. In part, the failure of the theory to produce a parsimonious prediction seems to stem from the use of an inappropriate model based on spatial environmental heterogeneity. The experimental data are better explained in terms of host mobility, tick population size, and the degree of host specificity of the tick.

Animals↗

Genetic similarity and variability between natural populations and laboratory colonies of North American Boophilus (Acari: Ixodidae).

Four natural populations and 4 laboratory colonies of Boophilus microplus (Canestrini) and a laboratory colony of Boophilus annulatus (Say) were subjected to electrophoretic analysis to determine levels of genetic similarity and genetic variability. Populations of B. microplus exhibited high genetic similarity (I = 0.984 +/- 0.012) indicating that all populations share a relatively undifferentiated gene pool. Host vagility is proposed as an important mechanism promoting gene flow in ectoparasites. Levels of genetic variability for B. microplus (h = 0.092 +/- 0.008; P = 0.330 +/- 0.050) were within levels reported for other arthropods. The average genetic identity of 0.716 +/- 0.013 between B. microplus and B. annulatus is of a level characteristic of sibling species. Diagnostic isozymes between laboratory colonies will facilitate identification of these morphologically similar species.

Alleles↗

Gene duplication at an isocitrate dehydrogenase locus in Scaphiopus.

Spadefoot toads of the subgenus Scaphiopus have two isocitrate dehydrogenase loci, with no intergenic interaction between them. Toads of the subgenus Spea have three Idh loci, with intergenic enzymes formed between two of them, providing strong evidence for their homology and the origin of one through a duplication process. The Idh phenotype of interspecific hybrids is consistent with the theory of a gene duplication.

Animals↗

Linkage relationships among 12 enzyme loci in cattle fever ticks of the genus Boophilus.

Electrophoretic variation at 12 enzyme loci in cattle fever ticks were examined for mode of inheritance and linkage relationships. All variants exhibited codominant Mendelian inheritance, and PGI and GOT were sex-linked. Four pairs of enzyme loci were linked (PGI and GOT, ACON-A and alpha GPD, MDH-1 and LDH, and EST-3 and EST-4). Four additional enzyme loci (ACON-C, MDH-2, PEP, and PP) did not show linkage to any other locus tested, giving eight presumptive linkage groups that have enzyme markers in the genus Boophilus.

Animals↗