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首页> 外文期刊>Forensic science international >Fluorescent SSCP of overlapping fragments (FSSCP-OF): a highly sensitive method for the screening of mitochondrial DNA variation.
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Fluorescent SSCP of overlapping fragments (FSSCP-OF): a highly sensitive method for the screening of mitochondrial DNA variation.

机译:重叠片段的荧光SSCP(FSSCP-OF):一种用于筛选线粒体DNA变异的高灵敏度方法。

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The mtDNA analysis (mtDNA) is increasingly being demanded for forensic purposes due to the fact that many times the use of standard nuclear marker fails to analyze degraded samples (such as bones) and specially for the analysis of hair shafts (a common sample in the crime scene). However, analysis of mtDNA sequencing implies a great lab effort when a high number of samples must be analyzed.The present work introduces a novel and reliable method for the screening of mtDNA variation in the first and second hypervariables (HV1 and HV2) regions which we have denominated fluorescent single strand conformation polymorphism (SSCP) of overlapping fragments (FSSCP-OF). FSSCP-OF is based on the basic theory of SSCP analysis and combines two complementary strategies: the use of PCR amplified overlapping fragments and fluorescent detection technology. The overlap region contains a high percentage (50%) of the d-loop mtDNA variation and for this reason, the probability to detect a polymorphic position by SSCP analysis is clearly increased in comparison to conventional SSCP methods due to the fact that the same polymorphic position is usually placed in a different "relative" position in the two overlapped fragments. The use of multicolor fluorescent technology allows also the multiplex amplification of overlapping fragment and its subsequent analysis in an automatic sequencer. We have analyzed 50 samples of unrelated individuals through the FSSCP-OF technique and we have found that using this methodology the probability to distinguish two samples with different sequences is close to 100%. FSSCP-OF has other important advantages with respect to previous screening methods, such as the automation and standardization of the protocols, which is of special interest for the forensic routine.
机译:由于很多时候使用标准核标记物无法分析降解的样品(例如骨骼),尤其是用于分析毛干(在头发中的常见样品),法医需要越来越多的mtDNA分析(mtDNA)。犯罪现场)。然而,当必须分析大量样品时,对mtDNA测序的分析意味着需要大量的实验室工作。本工作介绍了一种新颖且可靠的方法来筛选第一和第二高变区(HV1和HV2)区域中的mtDNA变异,具有重叠片段的荧光单链构象多态性(SSCP)(FSSCP-OF)。 FSSCP-OF基于SSCP分析的基本理论,并结合了两种互补策略:使用PCR扩增的重叠片段和荧光检测技术。重叠区域包含高百分比(50%)的d环mtDNA变异,因此,与传统的SSCP方法相比,由于相同的多态性事实,通过SSCP分析检测多态性位置的可能性明显增加通常在两个重叠的片段中放置不同的“相对”位置。多色荧光技术的使用还允许重叠片段的多重扩增及其在自动测序仪中的后续分析。我们已经通过FSSCP-OF技术分析了50个无关个体的样本,并且发现使用这种方法区分两个具有不同序列的样本的可能性接近100%。相对于先前的筛选方法,FSSCP-OF具有其他重要优势,例如协议的自动化和标准化,这对于法医例行程序特别重要。

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