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丝光绿蝇(双翅目:丽蝇科)蛹期的差异基因表达,用于改进最短死后间隔时间估计

Differential gene expression during intra-puparial period of Lucilia sericata (Diptera: Calliphoridae) for improving minimum postmortem interval estimation.

作者信息

Pereira Ana Julia, Sonzogni Silvina V, Centeno Néstor D, Guiñazú Natalia L

机构信息

Centro de Investigaciones en Toxicología Ambiental y Agrobiotecnología del Comahue, CITAAC (CONICET, UNCo), Buenos Aires 1400, 8300, Neuquén, Argentina.

Departamento de Ciencias Del Ambiente, Facultad de Ciencias Del Ambiente y la Salud, Universidad Nacional Del Comahue, Buenos Aires 1400, 8300, Neuquén, Argentina.

出版信息

Int J Legal Med. 2025 Jun 11. doi: 10.1007/s00414-025-03537-8.

DOI:10.1007/s00414-025-03537-8
PMID:40498089
Abstract

One of the main objectives of forensic entomology is to estimate the minimum postmortem interval (PMImin) by analyzing the size and duration of the immature stages of insects colonizing a cadaver. However, this estimation becomes difficult during the intra-puparial period due to the absence of significant visible morphological changes. This study explores the differential gene expression of Lucilia sericata (Calliphoridae) pupae as a molecular tool for PMImin estimation. Pupae were collected daily under controlled conditions at 23 °C, and RNA was extracted for gene expression analysis. Six target genes (ecdysone receptor, Hsp90, actin, regucalcin, wingless, and fat body protein 1) were identified and correlated with distinct different stages of intra-puparial development. Our results suggests that the combination of the expression levels of at least three genes, such as ecdysone receptor, regucalcin and wingless, is sufficient to infer the percentage of development throughout the entire intra-puparial period. Additionally, graphical tools were developed to facilitate the use of individual and grouped genes as markers for L. sericata age estimation. Since the intra-puparial period comprises approximately half of the Calliphoridae developmental cycle, these findings are particularly valuable when these stages represent the most advanced evidence recovered from a crime scene or autopsy.

摘要

法医昆虫学的主要目标之一是通过分析在尸体上定殖的昆虫未成熟阶段的大小和持续时间来估计最短死后间隔时间(PMImin)。然而,在蛹期内,由于没有明显的可见形态变化,这种估计变得困难。本研究探索了丝光绿蝇(丽蝇科)蛹的差异基因表达,作为一种估计PMImin的分子工具。在23°C的受控条件下每天收集蛹,并提取RNA用于基因表达分析。鉴定了六个靶基因(蜕皮激素受体、热休克蛋白90、肌动蛋白、调钙蛋白、无翅基因和脂肪体蛋白1),并将它们与蛹期内不同的发育阶段相关联。我们的结果表明,至少三个基因(如蜕皮激素受体、调钙蛋白和无翅基因)的表达水平组合足以推断整个蛹期的发育百分比。此外,还开发了图形工具,以方便将单个和分组基因用作丝光绿蝇年龄估计的标记。由于蛹期约占丽蝇科发育周期的一半,当这些阶段代表从犯罪现场或尸检中获得的最先进证据时,这些发现特别有价值。

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