Agrochemical contaminants in six species of edible insects from Uganda and Kenya

IF 2.2 Q1 ENTOMOLOGY
Simon Labu , Sevgan Subramanian , Xavier Cheseto , Perpetra Akite , Patrice Kasangaki , Moses Chemurot , Chrysantus M. Tanga , Daisy Salifu , James P. Egonyu
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引用次数: 4

Abstract

Edible insects are currently promoted worldwide as an alternative animal protein source, but they are mostly still harvested from the wild where they are predisposed to contamination with agrochemicals. This study analysed six species of edible insects (Ruspolia differens, Rhynchophorus phoenicis, Schistocerca gregaria, Oryctes sp, Pachnoda ephippiata and Acanthoplus sp) collected from different habitats and/or reared in the laboratory in Kenya and Uganda for safety from agrochemical contaminants using liquid chromatography tandem mass spectrometry. The residue levels were statistically compared with the Codex Alimentarius Commission maximum residue limits (MRLs). Residues of only nine agrochemicals were detected in the insects out of 374 chemicals which were screened. The detected agrochemicals include two insecticides (aminocarb and pymetrozine), three herbicides (atraton, methabenzthiazuron and metazachlor) and four fungicides (carboxin, fenpropimorph, fludioxonil and metalaxyl). Ruspolia differens and adult Oryctes sp were free from detectable levels of any agrochemical. Whereas the pesticides residue levels in most insect samples were within maximum residue limits, some of them notably P. ephippiata from black soldier fly larval frass, R. phoenicis from oil palm and P. ephippiata from plant compost contained 2-, 8- and 49-fold higher levels of atraton, methabenzthiazuron and metazachlor, respectively, than MRLs. These findings demonstrate that edible insects may accumulate harmful residues of agrochemicals from the environment where they breed or forage, rendering them unsafe for human consumption or feeding animals. The mechanisms for possible bioaccumulation of these agrochemicals in the insects remains to be investigated. Development of methods for farming edible insects under regulated indoor conditions to ensure their safety as sources of food or feed is recommended.

Abstract Image

乌干达和肯尼亚六种食用昆虫的农药污染物
食用昆虫目前在世界范围内被推广为一种替代的动物蛋白质来源,但它们大多仍然是从野外收获的,在那里它们容易受到农用化学品的污染。本研究利用液相色谱串联质谱分析了在肯尼亚和乌干达不同生境采集和/或在实验室饲养的6种食用昆虫(Ruspolia differens、Rhynchophorus phoenicis、Schistocerca gregaria、Oryctes sp、Pachnoda ephippiata和Acanthoplus sp)对农药污染物的安全性。残留水平与食品法典委员会最大残留限量(MRLs)进行了统计比较。在筛选的374种农药中,仅检出9种农药残留。检测到的农用化学品包括两种杀虫剂(氨威和吡虫嗪)、三种除草剂(莠去津、甲基苄噻脲和甲虫胺)和四种杀菌剂(carboxin、fenproimorph、fludioxonil和甲螨灵)。Ruspolia differes和成年orytes sp未检测到任何农用化学品的水平。大部分昆虫样品的农药残留量均在最大残留限量范围内,但部分昆虫样品中黑虻幼虫草、油棕和植物堆肥中褐飞虱、甲苯并噻唑啉和杀虫灵的残留量分别是最大残留限量的2倍、8倍和49倍。这些发现表明,食用昆虫可能从它们繁殖或觅食的环境中积累有害的农用化学品残留物,使它们对人类食用或喂养动物不安全。这些农药在昆虫体内可能的生物积累机制仍有待研究。建议发展在受管制的室内条件下养殖食用昆虫的方法,以确保它们作为食物或饲料来源的安全。
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来源期刊
Current Research in Insect Science
Current Research in Insect Science Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
3.20
自引率
0.00%
发文量
22
审稿时长
36 days
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