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Characterization of microsatellite loci in Phormia regina towards expanding molecular applications in forensic entomology

机译:体积卫生素位点在法医学中扩张分子应用的微卫星基因岩

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摘要

Forensic entomology involves the use of insects and arthropods to assist a spectrum of medico-criminal investigations that range from identifying cases of abuse, corpse movements, and most commonly, post mortem interval estimates. Many of these applications focus on the use of blowflies given their predicable life history characteristics in their larval stages. Molecular tools have become increasingly important in the unambiguous identification of larval blowfly species, however, these same tools have the potential to broaden the array of molecular applications in forensic entomology to include individual identifications and population assignments. Herein, we establish a microsatellite profiling system for the blowfly, Phormia regina (Diptera: Calliphoridae). The goal being to create a system to identify the population genetic structure of this species and subsequently establish if these data are amenable to identifying corpse movements based on the geographic distribution of specific genetic clusters of blowflies. Using next generation sequencing technology, we screened a partial genomic DNA sequence library of P. regina, searching for di-, tetra-, and penta-nucleotide microsatellite loci. We identified and developed primers for 84 highly repetitive segments of DNA, of which 14 revealed consistent genotypes and reasonable levels of genetic variation (4-26 alleles/locus; heterozygosity ranged from 0.385 to 0.909). This study provides the first step in assessing the utility of microsatellite markers to track the movements and sources of corpses via blowflies.
机译:法医昆虫学涉及使用昆虫和节肢动物,以协助一系列医疗刑事调查,这些调查范围从识别滥用,尸体运动和最常见的验尸间隔估计。许多这些应用程序侧重于在幼虫阶段的预期生命历史特征给出呼吸的使用。分子工具在幼虫絮凝物种的明确识别中越来越重要,然而,这些相同的工具具有促进法医学中的分子应用阵列,包括个人识别和人口分配。在此,我们建立了一股微卫星分析系统,用于絮浆,阴茎(Diptera:Calliphoridae)。目标是创建一个系统,以确定该物种的群体遗传结构,并随后建立这些数据是否可以根据特定遗传群的地理分布来识别尸体运动。使用下一代测序技术,我们筛选了P. Regina的部分基因组DNA序列文库,寻找二,四 - 和五核苷酸微卫星基因座。我们鉴定并开发了84个高度重复的DNA的引物,其中14揭示了一致的基因型和合理的遗传变异水平(4-26等位基因/基因座;杂合子范围为0.385至0.909)。本研究提供了评估微卫星标记的效用的第一步,通过呼吸跟踪尸体的运动和来源。

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