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Rapid Seafood Species Identification Using Chip-Based Capillary Electrophoresis and Protein Pattern Matching

机译:快速海鲜物种鉴定使用基于芯片的毛细管电泳和蛋白质图案匹配

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摘要

Authenticity is crucial to the seafood industry, as substitution and mislabeling have important economic, environmental, and food safety consequences. To address this problem, protein profiling and software algorithm techniques were developed to classify fish muscle samples by species. The method uses water-based protein extraction, chip-based microfluidic electrophoresis (Agilent 2100 Bioanalyzer) for the analysis of high abundance fish muscle proteins, and a novel data analysis method for species-specific protein pattern recognition. The method's performance in distinguishing commercially important fish from commonly reported substitutions was evaluated using sensitivity, specificity, and accuracy determinations with all three performance measures at >98% for common substitutions. This study demonstrates that uncooked seafood products of commercially important species of catfish, snapper, and grouper can be rapidly distinguished from commonly substituted species with a high level of confidence. A tiered testing approach to seafood species verification by sequentially applying a rapid screening method and DNA testing is proposed to more effectively ensure accurate product labeling.
机译:真实性对海鲜行业至关重要,因为替代和误标表具有重要的经济,环境和食品安全后果。为了解决这个问题,开发了蛋白质分析和软件算法技术以通过物种对鱼肌样品进行分类。该方法采用水性蛋白质提取,基于芯片的微流体电泳(Agilent 2100 Bioanalyzer)用于分析高丰度鱼肌蛋白,以及物种特异性蛋白质模式识别的新型数据分析方法。使用敏感性,特异性和准确性测定评估从常见报告的取代区分商业上重要的鱼类来区分商业上重要的鱼类的性能。本研究表明,商业上重要的鲶鱼,鲷鱼和石斑鱼的未煮过的海鲜产品可以迅速区分,具有高度置信度的普通替代物种。提出了一种通过顺序应用快速筛选方法和DNA测试来验证的分层测试方法,以更有效地确保准确的产品标记。

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