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Sublethal effects of chronic exposure to CdO or PbO nanoparticles or their binary mixture on the honey bee (Apis millefera L.)

机译:慢性暴露于CDO或PBO纳米粒子或其二元混合物对蜂蜜蜂(API Millefera L.)的致致致致致致致致致致致致致致致致致致致致致致致致致致致致致致致致致致致致致致使CDO或PBO纳米粒子或其二元混合物在蜂蜜蜂(API Millefera L.)上

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Cadmium and lead-based nanotechnologies are increasingly used in agricultural, industrial, and biological processes; however, potential adverse effects of nanomaterials on honey bees had not been assessed. In this study, effects of exposures to sublethal concentrations of PbO and CdO nanoparticles (NPs), either separately or in combination on honey bee (Apis mellifera) workers, were assessed. Honey bee workers were orally exposed for 9 days under laboratory conditions to sublethal concentrations (20% of LC_(50)) of CdO (0.01 mg/ml~-) and PbO (0.65 mg/ml~-) NPs either separately or combined. Effects on survival, feeding rate, activity of acetylcholinesterase (AChE), and expression of selected stress-related detoxifying enzymes were quantified. Survival and feeding rates decreased particularly in bees fed sugar syrup containing CdO NPs or binary mixtures of NPs of both metal oxides. Expressions of genes involved in detoxification of xenobiotics were affected by various combinations. Expression of catalase was 13.6-fold greater in bees consumed sugar syrup diet containing binary mixture of sublethal concentrations of both CdO and PbO NPs than it was in unexposed, control bees. AChE activity in heads of honey bees was inhibited by 3.8-, 3.0-, and 2.8-fold relative to control, respectively, in response to exposure to Cd or/and Pb oxide NPs. This result indicates potential neurotoxic effects of these NPs to honey bees. CdO NPs exhibited greater potency to honey bees. Overall, sublethal concentrations of CdO or/and PbO NPs resulted in detrimental effects on honeybee workers.
机译:镉和铅基纳米技术越来越多地用于农业,工业和生物过程;然而,纳米材料对蜂蜜蜜蜂潜在的不利影响尚未得到评估。在该研究中,评估了曝光对乳头(Apis Mellifera)工人单独或组合的PbO和CdO纳米颗粒(NPS)的亚致偶乙醛浓度的影响。蜂蜜蜜蜂工人在实验室条件下在实验室条件下暴露9天,以单独或组合在亚硫醚浓度(0.01mg / ml〜 - )和PbO(0.65mg / ml〜 - )NPS的那种核心浓度(LC_(50))。对生存,喂养率,乙酰胆碱酯酶(ACHE)的活性的影响,并定量了所选应力相关解毒酶的表达。含有CDO NPS或金属氧化物的NPS的NPS或二元混合物的蜜蜂喂养糖浆的存活和饲养率尤其下降。参与异卵毒性排毒的基因的表达受各种组合的影响。在含有二元混合物的含有二元浓度的CDO和PbO NPS的二元混合物的糖糖浆饮食中含有二元混合物的糖糖浆饮食的表达比在未曝光的对照蜜蜂中,含有二元浓度的糖糖浆。相对于接触CD或/和PB氧化物NPS,相对于对照,蜂蜜蜜蜂头部的疼痛活性分别抑制了3.8-,3.0-和2.8倍。该结果表明这些NPS对蜂蜜蜜蜂的潜在神经毒性作用。 CDO NPS对蜂蜜蜜蜂表现出更大的效力。总体而言,CDO或/和PBO NPS的亚致死浓度导致对蜜蜂工作者有害影响。

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