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Trypanosoma congolense: genetic control of resistance to infection in mice
Abstract:
Primary isolates of Trypanosoma congolense show a range of virulence in NMRI mice. Stabiliates derived from an isolate (Dinderesso/80/CRTA/3) which showed moderate virulence in most NMRI mice (moderate parasitemia and survival) were used in inbred mice. C57Bl/6 were resistant with low parasitemia and survival. Parasitemias were higher in males than females. BALB/c were the most sensitive of the strains tested and died with fulminating parasitemia. Inheritance of resistance, defined as low parasitemia, was studied using these two strains. Male F1 showed high parasitemia; the backcrosses of F1 to the resistant parent had a ratio of one susceptible to one resistant product; the product of F1 to susceptible parent were all susceptible; and the F2 crosses showed a ratio of three susceptible to one resistant product. The results obtained with female F1, backcrosses, and F2 mice showed similar segregation to that found using males, but the range of parasitemia was always 1-2 log10 lower, except for the F1 backcrossed to BALB/c, where female and male parasitemia were undistinguishable. The segregation ratios were identical whether resistant females were crossed with sensitive males or vice-versa. The results obtained are compatible with resistance being a recessive trait controlled by a single autosomal gene (or gene cluster). In addition, sex-associated factors appear to confer higher resistance in females.
Insights
Genetic resistance to Trypanosoma congolense, a parasite causing significant livestock disease, was investigated. Findings suggest a single recessive gene controls resistance, with females exhibiting enhanced protection.
Area of Science:
- Immunology
- Genetics
- Parasitology
Background:
- Trypanosoma congolense is a significant veterinary pathogen.
- Virulence varies among T. congolense isolates.
- Inbred mouse strains exhibit differential susceptibility.
Purpose of the Study:
- To investigate the genetic basis of resistance to Trypanosoma congolense.
- To determine the inheritance pattern of resistance in mice.
Main Methods:
- Used T. congolense isolate (Dinderesso/80/CRTA/3) in NMRI, C57Bl/6, and BALB/c mice.
- Studied inheritance of resistance through F1, backcross, and F2 generations.
- Analyzed parasitemia and survival rates.
Main Results:
- C57Bl/6 mice were resistant; BALB/c mice were sensitive.
- Males generally showed higher parasitemia than females.
- Segregation ratios in crosses indicated resistance is a recessive trait controlled by a single gene (or gene cluster).
Conclusions:
- Resistance to T. congolense in this model is likely controlled by a single autosomal recessive gene.
- Sex-associated factors contribute to increased resistance in female mice.