在不同条件下接触吡虫啉会扰乱淡水非目标鱼类的肌肉脂肪酸谱:Labeo rohita。

IF 1.7 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Animal Biotechnology Pub Date : 2024-11-01 Epub Date: 2024-01-23 DOI:10.1080/10495398.2024.2307020
Shazia Qadir, Muhammad Latif, Wen-Feng Wu, Fengqin Feng, Wadi B Alonazi, Arwah Amjad, Chien-Chin Chen, Zia Ur Rehman, Adil Khan, Furhan Iqbal
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Pesticide untreated controls were also maintained for each treatment. Following the specific Imidacloprid exposure, fatty acid composition (%) was determined in the muscle of all experimental groups by using gas chromatography. Fish exposed to Imidacloprid for 8 days had reduced Palmitic acid (<i>p</i> = 0.02) and elevated muscle Arachidic acid (<i>p</i> < 0.001) than control group. <i>Labeo rohita</i> exposed to the pesticide for 32 days had elevated muscle Oleic (<i>p</i> = 0.02) and Linoleic acid (<i>p</i> = 0.02) while fish exposed to Imidacloprid to 64 days had reduced muscle Palmitic (<i>p</i> = 0.04) and Oleic acid (<i>p</i> = 0.03). In conclusion, we are reporting that the exposure to sub lethal concentration of Imidacloprid disturb the muscle fatty acid composition of <i>Labeo rohita</i> that may affect its food quality. 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引用次数: 0

摘要

巴基斯坦的经济严重依赖农业,为提高作物产量而大量使用杀虫剂的现象十分普遍。吡虫啉是巴基斯坦的首选杀虫剂之一,据报道,这种杀虫剂会随水流失,最终进入水体,对非目标水生动物造成影响。通过本次调查,我们报告了吡虫啉对非目标鱼类、具有重要商业价值的鲤鱼脂肪酸组成的影响:Labeo rohita。鱼类在亚致死浓度的吡虫啉(120 毫克/升1)下暴露 2、4 和 8 天(短期)以及 16、32 和 64 天(长期实验条件)。每种处理还保留了未经农药处理的对照组。在接触特定的吡虫啉后,采用气相色谱法测定所有实验组肌肉中的脂肪酸组成(%)。暴露于吡虫啉 8 天的鱼的棕榈酸减少(p = 0.02),肌肉花生酸增加(p Labeo rohita 暴露于农药 32 天的鱼的肌肉油酸增加(p = 0.02),亚油酸增加(p = 0.02),而暴露于吡虫啉 64 天的鱼的肌肉棕榈酸减少(p = 0.04),油酸增加(p = 0.03)。总之,我们报告说,暴露于亚致死浓度的吡虫啉会扰乱鲮鱼肌肉的脂肪酸组成,从而影响其食物质量。这种影响在长期实验条件下更为明显,可能是由于接触吡虫啉后会加剧脂质过氧化反应和扰乱鱼类的新陈代谢。
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Exposure to Imidacloprid under variable conditions disturbs the muscle fatty acid profile of a fresh water non target fish: Labeo rohita.

Economy of Pakistan is heavily dependent upon agriculture and extensive use of pesticide is quiet common to enhance the crop yield. Imidacloprid is among the first choice pesticides in Pakistan and it has been reported that through run off along with water it ends up in water bodies affecting non target aquatic fauna. Through the present investigation, we are reporting the effects of Imidacloprid on the fatty acids composition of a non-target, commercially important carp: Labeo rohita. Fish were exposed to sub lethal concentration of Imidacloprid (120 mgL1) for 2, 4 and 8 days (short term) as well as for 16, 32 and 64 days (long term experimental conditions). Pesticide untreated controls were also maintained for each treatment. Following the specific Imidacloprid exposure, fatty acid composition (%) was determined in the muscle of all experimental groups by using gas chromatography. Fish exposed to Imidacloprid for 8 days had reduced Palmitic acid (p = 0.02) and elevated muscle Arachidic acid (p < 0.001) than control group. Labeo rohita exposed to the pesticide for 32 days had elevated muscle Oleic (p = 0.02) and Linoleic acid (p = 0.02) while fish exposed to Imidacloprid to 64 days had reduced muscle Palmitic (p = 0.04) and Oleic acid (p = 0.03). In conclusion, we are reporting that the exposure to sub lethal concentration of Imidacloprid disturb the muscle fatty acid composition of Labeo rohita that may affect its food quality. The effects were more pronounced under long term experimental conditions and were probably due to potentiating lipid peroxidation and disturbed fish metabolism upon Imidacloprid exposure.

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来源期刊
Animal Biotechnology
Animal Biotechnology 工程技术-奶制品与动物科学
CiteScore
2.90
自引率
5.40%
发文量
230
审稿时长
>12 weeks
期刊介绍: Biotechnology can be defined as any technique that uses living organisms (or parts of organisms like cells, genes, proteins) to make or modify products, to improve plants, animals or microorganisms for a specific use. Animal Biotechnology publishes research on the identification and manipulation of genes and their products, stressing applications in domesticated animals. The journal publishes full-length articles and short research communications, as well as comprehensive reviews. The journal also provides a forum for regulatory or scientific issues related to cell and molecular biology applied to animal biotechnology. Submissions on the following topics are particularly welcome: - Applied microbiology, immunogenetics and antibiotic resistance - Genome engineering and animal models - Comparative genomics - Gene editing and CRISPRs - Reproductive biotechnologies - Synthetic biology and design of new genomes
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