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欧洲玉米螟成虫迁移动态学的关键方面与减轻田间对Bt玉米的抗性相关

Critical Facets of European Corn Borer Adult Movement Ecology Relevant to Mitigating Field Resistance to Bt-Corn.

作者信息

Sappington Thomas W

机构信息

Corn Insects and Crop Genetics Research Unit, Agricultural Research Service, United States Department of Agriculture, Ames, IA 50011, USA.

Department of Plant Pathology, Entomology and Microbiology, Iowa State University, Ames, IA 50011, USA.

出版信息

Insects. 2024 Feb 27;15(3):160. doi: 10.3390/insects15030160.

Abstract

The European corn borer (, Hübner) has been managed successfully in North America since 1996 with transgenic Bt-corn. However, field-evolved resistance to all four available insecticidal Bt proteins has been detected in four provinces of Canada since 2018. Evidence suggests resistance may be spreading and evolving independently in scattered hotspots. Evolution and spread of resistance are functions of gene flow, and therefore dispersal, so design of effective resistance management and mitigation plans must take insect movement into account. Recent advances in characterizing European corn borer movement ecology have revealed a number of surprises, chief among them that a large percentage of adults disperse from the natal field via true migratory behavior, most before mating. This undermines a number of common key assumptions about adult behavior, patterns of movement, and gene flow, and stresses the need to reassess how ecological data are interpreted and how movement in models should be parameterized. While many questions remain concerning adult European corn borer movement ecology, the information currently available is coherent enough to construct a generalized framework useful for estimating the spatial scale required to implement possible Bt-resistance prevention, remediation, and mitigation strategies, and to assess their realistic chances of success.

摘要

自1996年以来,欧洲玉米螟(Ostrinia nubilalis,许布纳)在北美通过转基因抗虫玉米得到了成功治理。然而,自2018年以来,在加拿大的四个省份已检测到对所有四种可用的杀虫Bt蛋白产生了田间进化抗性。有证据表明,抗性可能正在分散的热点地区独立传播和进化。抗性的进化和传播是基因流动的结果,因此与扩散有关,所以有效的抗性管理和缓解计划的设计必须考虑昆虫的移动。在表征欧洲玉米螟移动生态学方面的最新进展揭示了许多意外情况,其中最主要的是,很大一部分成虫通过真正的迁飞行为从出生地产卵地扩散出去,大多数是在交配之前。这破坏了一些关于成虫行为、移动模式和基因流动的常见关键假设,并强调需要重新评估如何解释生态数据以及如何在模型中对移动进行参数化。虽然关于欧洲玉米螟成虫移动生态学仍有许多问题,但目前可用的信息足够连贯,足以构建一个通用框架,用于估计实施可能的Bt抗性预防、修复和缓解策略所需的空间尺度,并评估其实际成功的可能性。

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