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首页> 外文期刊>Environmental Pollution >Fate of multiple Bt proteins from stacked Bt maize in the predatory lady beetle Harmonia axyridis (Pallas) (Coleoptera: Coccinellidae)
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Fate of multiple Bt proteins from stacked Bt maize in the predatory lady beetle Harmonia axyridis (Pallas) (Coleoptera: Coccinellidae)

机译:来自堆叠BT玉米的多个BT蛋白的命运掠夺性Ladle Beetle Harmunia an Axyridis(Pallas)(Cocoptera:Coccinellidae)

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摘要

Insecticidal Cry proteins from Bacillus thuringiensis (Bt) can be transferred from genetically engineered crops to herbivores to natural enemies. For the lady beetle Harmonia axyridis, we investigated potential uptake of Cry proteins from the gut to the body and intergenerational transfer. Third and fourth instar H. axyridis fed with pollen or spider mites from SmartStax maize contained substantial amounts of Cry1A.105, Cry1F, Cry2Ab2, Cry3Bb1, and Cry34Ab1. Cry protein concentrations in lady beetle larvae were typically one order of magnitude lower than in the food. When H. axyridis larvae were fed Bt maize pollen, median amounts of Cry protein in the non-feeding pupae were below the limit of detection except for small amounts of Cry34Ab1. No Cry protein was detected in pupae when spider mites were used as food. Cry protein concentrations decreased quickly after H. axyridis larvae were transferred from pollen or spider mites to Bt-free food. Aphids contained very low or no detectable Cry protein, and no Cry protein was found in H. axyridis larvae fed with aphids, and in pupae. When H. axyridis adults were fed with Bt maize pollen (mixed with Ephestia kuehniella eggs), the median concentrations of Cry proteins in lady beetle eggs were below the limit of detection except for Cry34Ab1 in eggs laid later in adult life. No Bt protein was detected in eggs laid by H. axyridis females fed with aphids from Bt maize. Our results confirm previous observations that Cry proteins are degraded and excreted quickly in the arthropod food web without evidence for bioaccumulation. Despite the fact that small amounts of Cry proteins were detected in some samples of the non-feeding pupal stage of H. axyridis as well as in eggs, we conclude that this route of exposure is unlikely to be significant for predators or parasitoids in a Bt maize field. (C) 2020 The Authors. Published by Elsevier Ltd.
机译:来自芽孢杆菌(BT)的杀虫哭蛋白可以从转基因作物转移到异常敌人的异孢子中。对于那位甲虫甲曲率谐波Axyridis来说,我们调查了从肠道到身体和代际转移的潜在摄取哭蛋白。第三和第四瞬间H. Axyridis与Smartstax Maize的花粉或蜘蛛螨喂养包含大量的Cry1a.105,Cry1f,Cry2ab2,Cry3BB1和Cry34ab1。甲虫幼虫女士浓度通常比食品中的一个数量级。当H.Axyridis幼虫被喂食Bt玉米花粉时,非喂养蛹中的乳蛋白的中值量低于检测限除外,除了少量的Cry34ab1。当蜘蛛螨用作食物时,在蛹中检测到蛹中没有乳汁。在从花粉或蜘蛛螨转移到无BT食物后,乳蛋白浓度迅速降低。蚜虫含有非常低或没有可检测的乳胶蛋白,并且在H.Axyridis幼虫中没有发现乳腺蛋白质,蚜虫和蛹喂食。当H. Axyridis成年人用Bt玉米花粉(与仇外杂志混合)喂食时,女士甲虫蛋中的乳汁浓度低于检测的极限,除了在成年生活之后奠定的鸡蛋中的Cry34ab1。在由Bt玉米饲喂蚜虫的H.Axyridis女性,在鸡蛋中未检测到Bt蛋白。我们的结果证实了之前的观察结果,乳胶蛋白在节肢动物食品网中迅速降解并排出,而不证明生物累积。尽管存在少量的乳蛋白在H. Axyridis的非喂养蛹阶段以及鸡蛋中检测到少量的蛋白质,我们得出结论,这种暴露的途径对于BT中的捕食者或寄生虫不太重要玉米领域。 (c)2020作者。 elsevier有限公司出版

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