首页> 外文期刊>Ecotoxicology >Use of an innovative T-tube maze assay and the proboscis extension response assay to assess sublethal effects of GM products and pesticides on learning capacity of the honey bee Apis mellifera L.
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Use of an innovative T-tube maze assay and the proboscis extension response assay to assess sublethal effects of GM products and pesticides on learning capacity of the honey bee Apis mellifera L.

机译:使用创新的T型管迷宫测定法和长鼻延伸反应测定法评估转基因产品和农药对蜜蜂Apis mellifera L学习能力的亚致死作用。

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摘要

Transgenic Cry1Ac+CpTI cotton (CCRI41) is a promising cotton cultivar throughout China but side effects and especially sublethal effects of this transgenic cultivar on beneficial insects remain poorly studied. More specifically potential sublethal effects on behavioural traits of the honey bee Apis mellifera L. have not been formally assessed despite the importance of honey bees for pollination. The goal of our study was to assess potential effects of CCRI41 cotton pollen on visual and olfactory learning by honey bees. After a 7-day oral chronic exposure to honey mixed with either CCRI41 pollen, imidacloprid-treated conventional pollen (used as positive sublethal control) or conventional pollen (control), learning performance was evaluated by the classical proboscis extension reflex (PER) procedure as well as a T-tube maze test. The latter assay was designed as a new device to assess potential side effects of pesticides on visual associative learning of honey bees. These two procedures were complementary because the former focused on olfactory learning while the latter was involved in visual learning based on visual orientation ability. Oral exposure to CCRI41 pollen did not affect learning capacities of honey bees in both the T-tube maze and PER tests. However, exposure to imidacloprid resulted in reduced visual learning capacities in T-tube maze evaluation and decreased olfactory learning performances measured with PER. The implications of these results are discussed in terms of risks of transgenic CCRI41 cotton crops for honey bees.
机译:转基因Cry1Ac + CpTI棉花(CCRI41)在中国是一个很有前途的棉花品种,但是该转基因品种对有益昆虫的副作用,尤其是亚致死作用仍然缺乏研究。更具体地,尽管蜜蜂对于授粉很重要,但尚未正式评估对蜜蜂Apis mellifera L.行为特征的潜在亚致死作用。我们研究的目的是评估CCRI41棉花花粉对蜜蜂视觉和嗅觉学习的潜在影响。在与CCRI41花粉,吡虫啉处理过的常规花粉(用作阳性亚致死性对照)或常规花粉(对照)混合的蜂蜜中,经过7天的长期口服蜂蜜暴露后,通过经典的象鼻延伸反射(PER)程序评估学习成绩以及T型迷宫测试。后一种测定法被设计为一种评估农药对蜜蜂视觉联想学习的潜在副作用的新设备。这两个过程是互补的,因为前者专注于嗅觉学习,而后者则涉及基于视觉定向能力的视觉学习。在T型管迷宫和PER测试中,口服CCRI41花粉都不会影响蜜蜂的学习能力。但是,暴露于吡虫啉会降低T型迷宫评估中的视觉学习能力,并降低PER测得的嗅觉学习表现。就转基因CCRI41棉花作物对蜜蜂的危害而言,讨论了这些结果的含义。

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