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Genetic Variation betweenBiomphalaria alexandrinaSnails Susceptible and Resistant toSchistosoma mansoniInfection

机译:Biomphalaria alexandrinasnails敏感和抗性Toschistosoma的遗传变异

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摘要

Much effort has been made to control schistosomiasis infection in Egypt. However, enduring effects from such strategies have not yet been achieved. In this study, we sought to determine the genetic variability related to the interaction between Biomphalaria alexandrina snails and Schistosoma mansoni. Using RAPD-PCR with eight (10 mers) random primers, we were able to determine the polymorphic markers that differed between snails susceptible and resistant to Schistosoma mansoni infection using five primers out of the eight. Our results suggest that the RAPD-PCR technique is an efficient means by which to compare genomes and to detect genetic variations between schistosomiasis intermediate hosts. The RAPD technique with the above-noted primers can identify genomic markers that are specifically related to the Biomphalaria alexandrina/Schistosoma mansoni relationship in the absence of specific nucleotide sequence information. This approach could be used in epidemiologic surveys to investigate genetic diversity among Biomphalaria alexandrina snails. The ability to determine resistant markers in Biomphalaria alexandrina snails could potentially lead to further studies that use refractory snails as agents to control the spread of schistosomiasis.
机译:已经努力控制埃及的血吸虫病感染。但是,尚未实现这些策略的持久影响。在这项研究中,我们试图确定与生物骨盆亚历山大蜗牛和血吸虫曼逊之间相互作用相关的遗传变异。使用RapD-PCR与八(10mer)随机引物,我们能够确定使用八个引物的五个引物对血吸虫曼逊感染不同的多态性标记。我们的研究结果表明,RAPD-PCR技术是一种有效的方法,可以通过它比较基因组和检测血吸虫病中间体宿主之间的遗传变异。具有上述引物的RAPD技术可以鉴定与在没有特定核苷酸序列信息的情况下与生物骨髓亚历山大/血吸虫瘤关系特异性相关的基因组标记。这种方法可用于流行病学调查,以调查生物骨盆亚历山大蜗牛的遗传多样性。确定生物骨盆亚历山大氏蜗牛中抗性标记的能力可能导致进一步的研究,这些进一步的研究用耐火蜗牛作为药剂以控制血吸虫病的传播。

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