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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Insecticide exposure during brood or early-adult development reduces brain growth and impairs adult learning in bumblebees
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Insecticide exposure during brood or early-adult development reduces brain growth and impairs adult learning in bumblebees

机译:培养或早期成人的杀虫剂暴露会降低脑成长并在大黄蜂中损害成人学习

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For social bees, an understudied step in evaluating pesticide risk is how contaminated food entering colonies affects residing offspring development and maturation. For instance, neurotoxic insecticide compounds in food could affect central nervous system development predisposing individuals to become poorer task performers later-in-life. Studying bumblebee colonies provisioned with neonicotinoid spiked nectar substitute, we measured brain volume and learning behaviour of 3 or 12-day old adults that had experienced in-hive exposure during brood and/or early-stage adult development. Micro-computed tomography scanning and segmentation of multiple brain neuropils showed exposure during either of the developmental stages caused reduced mushroom body calycal growth relative to unexposed workers. Associated with this was a lower probability of responding to a sucrose reward and lower learning performance in an olfactory conditioning test. While calycal volume of control workers positively correlated with learning score, this relationship was absent for exposed workers indicating neuropil functional impairment. Comparison of 3- and 12-day adults exposed during brood development showed a similar degree of reduced calycal volume and impaired behaviour highlighting lasting and irrecoverable effects from exposure despite no adult exposure. Our findings help explain how the onset of pesticide exposure to whole colonies can lead to lag-effects on growth and resultant dysfunction.
机译:对于社会蜂蜜,评估农药风险的深入阶段是进入殖民地的污染食物如何影响居住的后代发展和成熟。例如,食物中的神经毒性杀虫剂化合物可能会影响中枢神经系统的发展,旨在让个人成为后期较差的任务表演者。学习用新烟碱素尖刺花蜜替代品供应的大黄蜂菌落,我们测量了3或12日龄成年人的脑体积和学习行为,这些成人在育龄和/或早期成人发展中经历了蜂巢状况。微型计算机断层摄影扫描和多脑神经皮的分割显示出在任何发育阶段的暴露导致蘑菇患者相对于未曝光工人的蘑菇浓度增长降低。与此相关的是较低的概率,在嗅觉调理试验中响应蔗糖奖励和降低学习性能。虽然对照工人的Calycal体积与学习评分相关地相关,但这种关系对于指示神经功能障碍的暴露工人缺乏。在培养的发展期间暴露的3和12日成年人的比较显示出相似程度的降低的降钙体积和损害的行为,尽管没有成人暴露,但仍然突出了暴露的持久和无法恢复的影响。我们的研究结果有助于解释农药的发作如何暴露于整个菌落可能导致对生长和合并功能障碍的滞后影响。

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