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Fluorescence Imaging of Posterior Spiracles from Second and Third Instars of Forensically Important Chrysomya rufifacies (Diptera: Calliphoridae),
Authors:Danielle Flores MS  Amy L Miller MS  Angelique Showman MS  Caitlyn Tobita  Lori M N Shimoda BS  Carl Sung BS  Alexander J Stokes PhD  Jeffrey K Tomberlin PhD  David O Carter PhD  Helen Turner PhD
Affiliation:1. Laboratory of Immunology and Signal Transduction, Division of Natural Sciences and Mathematics, Chaminade University, Honolulu, HI;2. Graduate Program in Molecular Biosciences and Bioengineering, University of Hawaii at Mānoa, Honolulu, HI;3. Laboratory of Forensic Taphonomy, Division of Natural Sciences and Mathematics, Chaminade University, Honolulu, HI;4. Laboratory of Experimental Medicine, John A. Burns School of Medicine, University of Hawaìi, Honolulu, HI;5. Department of Entomology, Texas A&M University, TX
Abstract:Entomological protocols for aging blowfly (Diptera: Calliphoridae) larvae to estimate the time of colonization (TOC) are commonly used to assist in death investigations. While the methodologies for analyzing fly larvae differ, most rely on light microscopy, genetic analysis, or, more rarely, electron microscopy. This pilot study sought to improve resolution of larval stage in the forensically important blowfly Chrysomya rufifacies using high‐content fluorescence microscopy and biochemical measures of developmental marker proteins. We established fixation and mounting protocols, defined a set of measurable morphometric criteria and captured developmental transitions of 2nd instar to 3rd instar using both fluorescence microscopy and anti‐ecdysone receptor Western blot analysis. The data show that these instars can be distinguished on the basis of robust, nonbleaching, autofluorescence of larval posterior spiracles. High‐content imaging techniques using confocal microscopy, combined with morphometric and biochemical techniques, may therefore aid forensic entomologists in estimating TOC.
Keywords:forensic science  forensic entomology  postmortem interval  calliphoridae  fluorescence microscopy
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