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气候变化、转基因玉米的采用与棉铃虫的田间进化抗性

Climate change, transgenic corn adoption and field-evolved resistance in corn earworm.

作者信息

Venugopal P Dilip, Dively Galen P

机构信息

Science and Technology Policy Fellow, American Association for the Advancement of Science, Hosted by Transportation and Climate Division, Office of Transportation and Air Quality, United States Environmental Protection Agency, 1200 Pennsylvania Avenue NW, Washington, DC 20004, USA.

Department of Entomology, University of Maryland, 4112 Plant Sciences Building, 4291 Fieldhouse Dr, College Park, MD 20742, USA.

出版信息

R Soc Open Sci. 2017 Jun 7;4(6):170210. doi: 10.1098/rsos.170210. eCollection 2017 Jun.

Abstract

Increased temperature anomaly during the twenty-first century coincides with the proliferation of transgenic crops containing the bacterium (Berliner) (Bt) to express insecticidal Cry proteins. Increasing temperatures profoundly affect insect life histories and agricultural pest management. However, the implications of climate change on Bt crop-pest interactions and insect resistance to Bt crops remains unexamined. We analysed the relationship of temperature anomaly and Bt adoption with field-evolved resistance to Cry1Ab Bt sweet corn in a major pest, (Boddie). Increased Bt adoption during 1996-2016 suppressed populations, but increased temperature anomaly buffers population reduction. Temperature anomaly and its interaction with elevated selection pressure from high Bt acreage probably accelerated the Bt-resistance development. damage to corn ears, kernel area consumed, mean instars and proportion of late instars in Bt varieties increased with Bt adoption and temperature anomaly, through additive or interactive effects. Risk of Bt-resistant spreading is high given extensive Bt adoption, and the expected increase in overwintering and migration. Our study highlights the challenges posed by climate change for Bt biotechnology-based agricultural pest management, and the need to incorporate evolutionary processes affected by climate change into Bt-resistance management programmes.

摘要

21世纪气温异常升高与含有苏云金芽孢杆菌(Berliner)(Bt)以表达杀虫Cry蛋白的转基因作物的大量种植同时出现。气温升高深刻影响昆虫的生活史和农业害虫管理。然而,气候变化对Bt作物与害虫相互作用以及昆虫对Bt作物抗性的影响仍未得到研究。我们分析了气温异常和Bt作物种植与主要害虫美洲棉铃虫(Boddie)对Cry1Ab Bt甜玉米田间进化抗性之间的关系。1996年至2016年期间Bt作物种植面积增加抑制了美洲棉铃虫种群数量,但气温异常升高缓冲了种群数量的减少。气温异常及其与高Bt种植面积带来的更高选择压力的相互作用可能加速了Bt抗性的发展。随着Bt作物种植面积增加和气温异常升高,通过累加或交互作用,Bt品种中棉铃虫对玉米穗的危害、消耗的籽粒面积、平均龄期和老龄期比例均有所增加。鉴于Bt作物的广泛种植以及越冬和迁飞的预期增加,棉铃虫对Bt产生抗性并扩散的风险很高。我们的研究凸显了气候变化给基于Bt生物技术的农业害虫管理带来的挑战,以及将受气候变化影响的进化过程纳入Bt抗性管理计划的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ede/5493915/852d8fec0113/rsos170210-g1.jpg

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