首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Disruption of quercetin metabolism by fungicide affects energy production in honey bees (Apis mellifera)
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Disruption of quercetin metabolism by fungicide affects energy production in honey bees (Apis mellifera)

机译:杀菌剂破坏槲皮素的代谢会影响蜜蜂的能量产生(蜜蜂)

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摘要

Cytochrome P450 monooxygenases (P450) in the honey bee, Apis mellifera, detoxify phytochemicals in honey and pollen. The flavonol quercetin is found ubiquitously and abundantly in pollen and frequently at lower concentrations in honey. Worker jelly consumed during the first 3 d of larval development typically contains flavonols at very low levels, however. RNA-Seq analysis of gene expression in neonates reared for three days on diets with and without quercetin revealed that, in addition to up-regulating multiple detoxifying P450 genes, quercetin is a negative transcriptional regulator of mitochondrion-related nuclear genes and genes encoding subunits of complexes I, III, IV, and V in the oxidative phosphorylation pathway. Thus, a consequence of inefficient metabolism of this phytochemical may be compromised energy production. Several P450s metabolize quercetin in adult workers. Docking in silico of 121 pesticide contaminants of American hives into the active pocket of CYP9Q1, a broadly substrate-specific P450 with high quercetin-metabolizing activity, identified six triazole fungicides, all fungal P450 inhibitors, that dock in the catalytic site. In adults fed combinations of quercetin and the triazole myclobutanil, the expression of five of six mitochondrion-related nuclear genes was down-regulated. Midgut metabolism assays verified that adult bees consuming quercetin with myclobutanil metabolized less quercetin and produced less thoracic ATP, the energy source for flight muscles. Although fungicides lack acute toxicity, they may influence bee health by interfering with quercetin detoxification, thereby compromising mitochondrial regeneration and ATP production. Thus, agricultural use of triazole fungicides may put bees at risk of being unable to extract sufficient energy from their natural food.
机译:蜜蜂Apis mellifera中的细胞色素P450单加氧酶(P450)使蜂蜜和花粉中的植物化学物质解毒。黄酮醇槲皮素普遍存在于花粉中,蜂蜜中的浓度较低。但是,在幼体发育的前3天食用的果冻通常含有非常低的黄酮醇含量。在有和没有槲皮素的饮食中饲养三天的新生儿的基因表达的RNA-Seq分析显示,除了上调多个解毒的P450基因外,槲皮素还是线粒体相关核基因和编码P450亚基的基因的负转录调节因子。氧化磷酸化途径中的复合物I,III,IV和V。因此,该植物化学物质代谢效率低下的结果可能会损害能量产生。几种P450在成年工人中代谢槲皮素。将美国荨麻疹的121种农药污染物在计算机上对接到CYP9Q1活性囊中,CYP9Q1是一种具有高槲皮素代谢活性的广泛底物特异性P450,鉴定出六种三唑类杀菌剂(均为真菌P450抑制剂)在催化位点停靠。在用槲皮素和三唑甲基丁腈联合喂养的成年人中,六个线粒体相关核基因中的五个的表达下调。中肠代谢测定法证实,食用槲皮素和霉菌丁酮的成年蜜蜂代谢的槲皮素较少,胸腺ATP较少,而后者是飞行肌肉的能量来源。尽管杀真菌剂没有急性毒性,但它们可能会干扰槲皮素的解毒作用,从而影响蜜蜂的健康,从而损害线粒体的再生和ATP的产生。因此,在农业上使用三唑类杀菌剂可能会使蜜蜂面临无法从其天然食物中提取足够能量的风险。

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