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Impact of the age of Biomphalaria alexandrina snails onSchistosoma mansoni transmission: modulation of the geneticoutcome and the internal defence system of the snail

机译:亚历山大Biomphalaria蜗牛的年龄对曼氏血吸虫传播:遗传调控结果与蜗牛的内部防御系统

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摘要

Of the approximately 34 identified Biomphalaria species,Biomphalaria alexandrina represents the intermediate host of Schistosoma mansoni in Egypt. Using parasitological and SOD1 enzyme assay, this study aimed to elucidate the impact of the age of B. alexandrina snails on their genetic variability and internal defence against S. mansoni infection. Susceptible and resistant snails were reared individually for self-reproduction; four subgroups of their progeny were used in experiment. The young susceptible subgroup showed the highest infection rate, the shortest pre-patent period, the highest total cercarial production, the highest mortality rate and the lowest SOD1 activity. Among the young and adult susceptible subgroups, 8% and 26% were found to be resistant, indicating the inheritance of resistance alleles from parents. The adult resistant subgroup, however, contained only resistant snails and showed the highest enzyme activity. The complex interaction between snail age, genetic background and internal defence resulted in great variability in compatibility patterns, with the highest significant difference between young susceptible and adult resistant snails. The results demonstrate that resistance alleles function to a greater degree in adults, withhigher SOD1 activity and provide potential implications for Biomphalariacontrol. The identification of the most susceptible snail age enablesdetermination of the best timing for applying molluscicides. Moreover, adultresistant snails could be beneficial in biological snail control.
机译:在大约34种已鉴定的Biomphalaria物种中,Alexandrina Biomphalaria代表了埃及曼氏血吸虫的中间宿主。本研究使用寄生虫学和SOD1酶分析​​方法,旨在阐明亚历山大港双歧杆菌年龄对其遗传变异和对曼氏沙门氏菌感染的内部防御的影响。单独饲养易感和抗性的蜗牛以自我繁殖。实验中使用了四个子代。年轻易感亚组的感染率最高,专利期最短,子宫颈总产量最高,死亡率最高,SOD1活性最低。在年轻和成年易感亚组中,发现8%和26%具有抗性,表明抗性等位基因来自父母。然而,成年抗性亚组仅包含抗性蜗牛,并显示出最高的酶活性。蜗牛年龄,遗传背景和内部防御之间的复杂相互作用导致相容性模式存在很大差异,其中年轻易感性蜗牛和成年抗性蜗牛之间的差异最大。结果表明,抗性等位基因在成年人中发挥更大的作用,更高的SOD1活性,并可能对生物淋病产生影响控制。识别最易受感染的蜗牛年龄有助于确定施用杀软体动物剂的最佳时机。而且,成人抗性蜗牛可能会有益于生物蜗牛的控制。

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