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棉铃虫(Alabama argillacea (Hübner),鳞翅目:夜蛾科)在转Bt基因棉花和非转Bt基因棉花上的取食与扩散行为:对进化及抗性治理的影响

Feeding and dispersal behavior of the cotton leafworm, Alabama argillacea (Hübner) (Lepidoptera: Noctuidae), on Bt and non-Bt cotton: implications for evolution and resistance management.

作者信息

Ramalho Francisco S, Pachú Jéssica K S, Lira Aline C S, Malaquias José B, Zanuncio José C, Fernandes Francisco S

机构信息

Unidade de Controle Biológico, Embrapa Algodão, Campina Grande, Paraíba, Brazil.

Departamento de Entomologia, Universidade Federal de Viçosa, Minas Gerais, Brazil.

出版信息

PLoS One. 2014 Nov 4;9(11):e111588. doi: 10.1371/journal.pone.0111588. eCollection 2014.

Abstract

The host acceptance of neonate Alabama argillacea (Hübner) (Lepidoptera: Noctuidae) larvae to Bt cotton plants exerts a strong influence on the potential risk that this pest will develop resistance to Bt cotton. This will also determine the efficiency of management strategies to prevent its resistance such as the "refuge-in-the-bag" strategy. In this study, we assessed the acceptance of neonate A. argillacea larvae to Bt and non-Bt cotton plants at different temperatures during the first 24 h after hatching. Two cotton cultivars were used in the study, one a Bt DP 404 BG (Bollgard) cultivar, and the other, an untransformed isoline, DP 4049 cultivar. There was a greater acceptance by live neonate A. argillacea larvae for the non-Bt cotton plants compared with the Bt cotton plants, especially in the time interval between 18 and 24 h. The percentages of neonate A. argillacea larvae found on Bt or non-Bt plants were lower when exposed to temperatures of 31 and 34 °C. The low acceptance of A. argillacea larvae for Bt cotton plants at high temperatures stimulated the dispersion of A. argillacea larvae. Our results support the hypothesis that the dispersion and/or feeding behavior of neonate A. argillacea larvae is different between Bt and non-Bt cotton. The presence of the Cry1Ac toxin in Bt cotton plants, and its probable detection by the A. argillacea larvae tasting or eating it, increases the probability of dispersion from the plant where the larvae began. These findings may help to understand how the A. argillacea larvae detect the Cry1Ac toxin in Bt cotton and how the toxin affects the dispersion behavior of the larvae over time. Therefore, our results are extremely important for the management of resistance in populations of A. argillacea on Bt cotton.

摘要

棉铃虫(Hübner)(鳞翅目:夜蛾科)幼虫被寄主接受进入Bt棉花植株的情况,对该害虫产生Bt抗性的潜在风险有很大影响。这也将决定诸如“袋中避难所”策略等预防其抗性的管理策略的效率。在本研究中,我们评估了棉铃虫初孵幼虫在孵化后最初24小时内,于不同温度下对Bt棉花植株和非Bt棉花植株的接受情况。研究中使用了两个棉花品种,一个是Bt DP 404 BG(抗虫棉)品种,另一个是未转化的同基因系DP 4049品种。与Bt棉花植株相比,棉铃虫初孵幼虫对非Bt棉花植株的接受程度更高,尤其是在18至24小时的时间段内。当暴露于31℃和34℃温度下时,在Bt或非Bt植株上发现的棉铃虫初孵幼虫的百分比更低。棉铃虫幼虫在高温下对Bt棉花植株的低接受度促使了棉铃虫幼虫的扩散。我们的结果支持这样的假设,即棉铃虫初孵幼虫在Bt棉花和非Bt棉花之间的扩散和/或取食行为存在差异。Bt棉花植株中Cry1Ac毒素的存在,以及棉铃虫幼虫可能通过品尝或取食而检测到它,增加了幼虫从开始所在植株扩散的可能性。这些发现可能有助于理解棉铃虫幼虫如何检测Bt棉花中的Cry1Ac毒素,以及随着时间推移该毒素如何影响幼虫的扩散行为。因此,我们的结果对于管理Bt棉花上棉铃虫种群的抗性极为重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ded6/4219722/2693aded1675/pone.0111588.g001.jpg

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