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Time of Death Revealed by Hydrocarbons of Empty Puparia of Chrysomya megacephala (Fabricius) (Diptera: Calliphoridae): A Field Experiment

机译:巨大的Chrysomya megacephala(Fabricius)(双翅目:Calliphoridae)的空P的碳氢化合物显示的死亡时间:一项田间试验

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摘要

Determination of the postmortem interval (PMI) is crucial for investigating homicide. However, there are currently only limited methods available. Especially, once the PMI exceeds the duration of pre-adult development of the flies with the adult emergence, its determination is very approximate. Herein, we report the regular changes in hydrocarbon composition during the weathering process of the puparia in the field in Chrysomya megacephala (Fabricius) (Diptera: Calliphoridae), one of the common species of necrophagous flies. Correlation analysis showed that the relative abundance of nearly all of the branched alkanes and alkenes decreased significantly with the weathering time. Especially, for 9 of the peaks, over 88% of the variance in their abundance was explained by weathering time. Further analysis indicated that the regular changes caused mainly by the different weathering rates of various hydrocarbons. Additionally, the weathering rates were found to depend on the chemical structure and molecular weight of the hydrocarbons. These results indicate strongly that hydrocarbon analysis is a powerful tool for determining the weathering time of the necrophagous fly puparia, and is expected to markedly improve the determination of the late PMI.
机译:确定死后时间间隔(PMI)对于调查凶杀案至关重要。但是,当前只有有限的方法可用。尤其是,一旦PMI超过了成年果蝇成年前发育的持续时间,其确定就非常近似了。在此,我们报告了Ch虫风化过程中hydrocarbon头风化过程中碳氢化合物组成的规律性变化,该病是食虫蝇的常见物种之一。相关分析表明,几乎所有支链烷烃和烯烃的相对丰度均随风化时间而显着降低。特别是,对于9个峰,其丰度变化的88%以上是由风化时间解释的。进一步的分析表明,规律的变化主要是由于各种碳氢化合物的不同风化率引起的。另外,发现风化速率取决于烃的化学结构和分子量。这些结果强烈表明,碳氢化合物分析是确定食虫性fly的风化时间的有力工具,并且有望显着改善晚期PMI的确定。

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