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Microscopic recognition and identification of fish meal in compound feeds

机译:配合饲料中鱼粉的微观识别和鉴定

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摘要

Fish meal is an accepted ingredient in compound feed. Unauthorised application is primarily enforced by visual inspection, i.e., microscopy. In order to document the visually available diversity, fragments of bones and scales of 17 teleost fish species belonging to seven different orders were investigated for their diversity in the presence of structural elements: lacunae and canaliculae in bone fragments and type of growth rings and teeth of scale fragments. Despite the classical division into cellular bones and acellular bones of teleost fish, i.e., whether or not possessing osteocytes, the current examinations revealed patterns of lacunae, in some types accompanied with canaliculae, in all 17 species investigated. In total seven types of bone structures were defined, and six types of scale structures. Profiles with the relative frequency of each bone type per species were established. The share of acellular bone fragments appeared to be related to the evolutionary position of the species. Results of proficiency tests for the detection of fish meal reveal that in most cases the sensitivity and specificity for the detection of fish meal ranges from sufficient to perfect. Only some specified circumstances can hamper proper recognition and identification, most notably salmon bone fragments mimicking bone fragments from terrestrial animals, and pieces of hydrolysed proteins or minerals mimicking acellular fish bone fragments. The expertise gained in this study would help to improve the distinction between fish meal and terrestrial animal material in compound feed, and it supports the application of the species-to-species ban with respect to the valorisation of by-products from fish farms in aquafeed. In a broader perspective, the current expertise might be helpful to detect fraud throughout the feed/food production chain. The matrix of characteristics versus species is implemented in a data model running in the expert system ‘Determinator’ for facilitating identification.
机译:鱼粉是复合饲料中可接受的成分。未经授权的申请主要是通过肉眼检查(即显微镜检查)来执行的。为了记录视觉上可用的多样性,研究了属于七个不同阶的17种硬骨鱼种类的骨骼和鳞片的多样性,发现它们存在以下结构性元素:骨骼片段中的凹腔和小管,以及年轮和牙齿的类型鳞片碎片。尽管对硬骨鱼的细胞骨头和无细胞骨头进行了经典的划分,即是否具有骨细胞,但目前的检查显示,在所调查的全部17个物种中,有些类型的孔雀鱼伴有小管的形态。总共定义了七种骨骼结构和六种鳞片结构。建立了每个物种每种骨类型的相对频率分布图。无细胞骨骼碎片的份额似乎与该物种的进化位置有关。鱼粉检测能力测试的结果表明,在大多数情况下,鱼粉检测的灵敏度和特异性范围从充分到完美。只有某些特定情况会妨碍正确识别和识别,最明显的是模仿陆地动物骨骼碎片的鲑鱼骨碎片,以及模仿无细胞鱼骨碎片的水解蛋白或矿物质。这项研究中获得的专业知识将有助于改善混合饲料中鱼粉和陆生动物材料之间的区别,并且支持针对水产饲料中鱼类养殖场副产品的增值实行物种间禁令。从更广泛的角度来看,当前的专业知识可能有助于检测整个饲料/食品生产链中的欺诈行为。在专家系统“ Determinator”中运行的数据模型中实现了特征与物种的矩阵,以方便识别。

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