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首页> 外文期刊>PLOS Neglected Tropical Diseases >Effects of Cu/Zn Superoxide Dismutase (sod1) Genotype and Genetic Background on Growth, Reproduction and Defense in Biomphalaria glabrata
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Effects of Cu/Zn Superoxide Dismutase (sod1) Genotype and Genetic Background on Growth, Reproduction and Defense in Biomphalaria glabrata

机译:Cu / Zn超氧化物歧化酶(sod1)基因型和遗传背景对光滑小球藻生长,繁殖和防御的影响

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摘要

Resistance of the snail Biomphalaria glabrata to the trematode Schistosoma mansoni is correlated with allelic variation at copper-zinc superoxide dismutase (sod1). We tested whether there is a fitness cost associated with carrying the most resistant allele in three outbred laboratory populations of snails. These three populations were derived from the same base population, but differed in average resistance. Under controlled laboratory conditions we found no cost of carrying the most resistant allele in terms of fecundity, and a possible advantage in terms of growth and mortality. These results suggest that it might be possible to drive resistant alleles of sod1 into natural populations of the snail vector for the purpose of controlling transmission of S. mansoni. However, we did observe a strong effect of genetic background on the association between sod1 genotype and resistance. sod1 genotype explained substantial variance in resistance among individuals in the most resistant genetic background, but had little effect in the least resistant genetic background. Thus, epistatic interactions with other loci may be as important a consideration as costs of resistance in the use of sod1 for vector manipulation.
机译:蜗牛对草吸虫对曼氏血吸虫的抗性与铜锌超氧化物歧化酶(sod1)上的等位基因变异有关。我们测试了在三个杂交的蜗牛实验室种群中携带最抗性的等位基因是否带来健身成本。这三个种群来自相同的基本种群,但平均抗性不同。在受控的实验室条件下,我们发现携带力最强的等位基因在生育力方面没有成本,在生长和死亡率方面也可能具有优势。这些结果表明,可能有可能将sod1的抗性等位基因驱动到蜗牛载体的自然种群中,以控制曼氏链球菌的传播。但是,我们确实观察到遗传背景对sod1基因型和抗性之间的关联具有强烈影响。 sod1基因型解释了在抵抗力最强的遗传背景下个体间抗药性的显着差异,但在抵抗力最差的遗传背景下影响很小。因此,与其他基因座的上位性相互作用与使用sod1进行载体操纵时的抗性成本一样重要。

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