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Comparative analysis of detection limits and specificity of molecular diagnostic markers for three pathogens (Microsporidia, Nosema spp.) in the key pollinators Apis mellifera and Bombus terrestris

机译:关键授粉媒介Apis mellifera和Bombus terrestris中三种病原体(微孢子虫,Nosema spp。)的检测限和分子诊断标记的特异性的比较分析

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摘要

Global pollinator decline has recently been discussed in the context of honey and bumble bee infections from various pathogens including viruses, bacteria, microsporidia and mites. The microsporidian pathogens Nosema apis, Nosema ceranae and Nosema bombi may in fact be major candidates contributing to this decline. Different molecular and non-molecular detection methods have been developed; however, a comparison, especially of the highly sensitive PCR based methods, is currently lacking. Here, we present the first comparative quantitative real-time PCR study of nine Nosema spp. primers within the framework of primer specificity and sensitivity. With the help of dilution series of defined numbers of spores, we reveal six primer pairs amplifying N. apis, six for N. bombi and four for N. ceranae. All appropriate primer pairs detected an amount of at least 104 spores, the majority of which were even as sensitive to detect such low amounts as 103 to ten spores. Species specificity of primers was observed for N. apis and N. bombi, but not for N. ceranae. Additionally, we did not find any significant correlation for the amplified fragments with PCR efficiency or the limit of detection. We discuss our findings on the background of false positive and negative results using quantitative real-time PCR. On the basis of these results, future research might be based on appropriate primer selection depending on the experimental needs. Primers may be selected on the basis of specificity or sensitivity. Pathogen species and load may be determined with higher precision enhancing all kinds of diagnostic studies.
机译:全球传粉媒介的减少最近已在各种病原体(包括病毒,细菌,微孢子虫和螨)的蜂蜜和大黄蜂感染的背景下进行了讨论。实际上,微孢子虫病原体Nosema apis,cerase ceranae和Nosema bombi可能是造成这种下降的主要候选者。已经开发了不同的分子和非分子检测方法。然而,目前缺乏比较,尤其是基于高灵敏度PCR的方法。在这里,我们介绍了九个Nosema spp的第一个比较定量实时PCR研究。引物在引物特异性和敏感性框架内。借助限定数目的孢子的稀释系列,我们揭示了六对引物可扩增api猪笼草,六对引子猪笼草和四对ceranae ceranae。所有合适的引物对都能检测到至少104 的孢子,其中大多数甚至对检测10到103这样低的孢子同样敏感。对于apis和N. bombi,没有观察到引物的物种特异性,但是对于cerenae。此外,我们没有发现扩增片段与PCR效率或检测限之间有任何显着相关性。我们讨论使用定量实时PCR的假阳性和阴性结果背景的发现。根据这些结果,未来的研究可能基于实验需要,根据适当的引物选择进行。可以基于特异性或敏感性来选择引物。可以以更高的精度确定病原体的种类和负荷,从而加强各种诊断研究。

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  • 来源
    《Parasitology Research》 |2012年第4期|p.1403-1410|共8页
  • 作者单位

    Institut für Biologie, Molekulare Ökologie, Martin-Luther-Universität Halle-Wittenberg, Hoher Weg 4, 06099, Halle (Saale), Germany;

    Institut für Biologie, Molekulare Ökologie, Martin-Luther-Universität Halle-Wittenberg, Hoher Weg 4, 06099, Halle (Saale), Germany;

    Institut für Biologie, Molekulare Ökologie, Martin-Luther-Universität Halle-Wittenberg, Hoher Weg 4, 06099, Halle (Saale), Germany;

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