用于保存昆虫、细菌和宿主宿主DNA分子检测的滤纸。

Iranian Journal of Arthropod-borne Diseases Pub Date : 2011-01-01 Epub Date: 2011-12-31
F Karimian, Mm Sedaghat, Ma Oshaghi, F Mohtarami, A Sanei Dehkordi, M Koosha, S Akbari, Ss Hashemi-Aghdam
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引用次数: 0

摘要

背景:对于涉及昆虫、细菌和宿主的遗传分析以及媒介和宿主携带的病原体的分子诊断的研究,适当的生物材料储存、DNA提取和DNA保存方法至关重要。在这里,我们试图评估一种简单的滤纸为基础的储存昆虫,细菌,啮齿动物和人的dna使用PCR测定的效用。方法:分别将蚊、沙蝇、蜚蠊个体的全身或血淋巴压扁或放在纸上。将提取的五种不同细菌的DNA以及人类和大沙鼠的血液样本直接移液到滤纸上。从2009年到2011年,这些论文在室温下保存了12个月。每隔一个月,用浸渍过滤纸的1毫米圆盘作为靶DNA进行PCR。对蚊虫的ITS2-rDNA、沙蝇和蟑螂的mtDNA-COI、细菌的16SrRNA基因、脊椎动物的mtDNA-CytB等不同的靶基因进行PCR扩增。结果:无论基因座、分类单元或保存时间如何,所有标本均成功扩增。扩增范围在462 ~ 1500bp之间,对指定的靶基因/s扩增效果良好。贮藏时间对扩增效果的影响不超过一年。结论:滤纸法是一种简便、经济的DNA标本保存和分发方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Utility of filter paper for preserving insects, bacteria, and host reservoir DNA for molecular testing.

Utility of filter paper for preserving insects, bacteria, and host reservoir DNA for molecular testing.

Utility of filter paper for preserving insects, bacteria, and host reservoir DNA for molecular testing.

Background: Appropriate methodology for storage biological materials, extraction of DNA, and proper DNA preservation is vital for studies involving genetic analysis of insects, bacteria, and reservoir hosts as well as for molecular diagnostics of pathogens carried by vectors and reservoirs. Here we tried to evaluate the utility of a simple filter paper-based for storage of insects, bacteria, rodent, and human DNAs using PCR assays.

Methods: Total body or haemolymph of individual mosquitoes, sand flies or cockroaches squashed or placed on the paper respectively. Extracted DNA of five different bacteria species as well as blood specimens of human and great gerbil Rhombomys opimus was pipetted directly onto filter paper. The papers were stored in room temperature up to 12 months during 2009 until 2011. At monthly intervals, PCR was conducted using a 1-mm disk from the DNA impregnated filter paper as target DNA. PCR amplification was performed against different target genes of the organisms including the ITS2-rDNA of mosquitoes, mtDNA-COI of the sand flies and cockroaches, 16SrRNA gene of the bacteria, and the mtDNA-CytB of the vertebrates.

Results: Successful PCR amplification was observed for all of the specimens regardless of the loci, taxon, or time of storage. The PCR amplification were ranged from 462 to 1500 bp and worked well for the specified target gene/s. Time of storage did not affect the amplification up to one year.

Conclusion: The filter paper method is a simple and economical way to store, to preserve, and to distribute DNA samples for PCR analysis.

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来源期刊
Iranian Journal of Arthropod-borne Diseases
Iranian Journal of Arthropod-borne Diseases 医学-公共卫生、环境卫生与职业卫生
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