USDA Agricultural Research Service, San Joaquin Valley Agricultural Sciences Center, Parlier, CA, USA.
Departamento de Entomologia, Universidade Federal de Viçosa, Viçosa, Brazil.
Pest Manag Sci. 2021 Mar;77(3):1132-1149. doi: 10.1002/ps.6087. Epub 2020 Oct 26.
Studying the intimate association of arthropods with their physical substrate is both important and challenging. It is important because substrate is a key determinant for organism fitness; challenging because the intricacies of this association are dynamic, and difficult to record and resolve. The advent of electropenetrography (EPG) and subsequent developments allowed researchers to overcome this challenge. Nonetheless, EPG research has been historically restricted to piercing-sucking hemipteran plant pests. Recently, its potential use has been greatly broadened for additional pests with instrument advances. Thus, blood-feeding arthropods and chewing feeders, as well as non-feeding behaviors like oviposition by both pests and parasitoids, are novel new targets for EPG research, with critical consequences for integrated pest management. EPG can explain mechanisms of crop damage, plant or animal pathogen transmission, and the effects of insecticides, antifeedants, repellents, or transgenic plants and animals, on specific behaviors of damage or transmission. This review broadly covers the principles and development of EPG technology, emphasizing controversies and challenges remaining with suggested research to overcome them. In addition, it summarizes 60+ years of basic and applied EPG research, and previews future directions for pest management. The goal is to stimulate new applications for this unique enabling technology. Published 2020. This article is a U.S. Government work and is in the public domain in the USA.
研究节肢动物与其物理基质的密切关系既重要又具有挑战性。这很重要,因为基质是生物体适应性的关键决定因素;具有挑战性是因为这种关联的复杂性是动态的,难以记录和解决。电穿透图(EPG)的出现及其后续发展使研究人员能够克服这一挑战。尽管如此,EPG 研究历史上仅限于刺穿吸食半翅目植物害虫。最近,随着仪器的进步,EPG 的潜在用途已经大大扩展到了其他害虫。因此,吸血节肢动物和咀嚼取食者,以及非取食行为,如害虫和寄生蜂的产卵,都是 EPG 研究的新目标,这对综合虫害管理具有重要意义。EPG 可以解释作物损害的机制、植物或动物病原体的传播,以及杀虫剂、拒食剂、驱避剂或转基因植物和动物对特定损害或传播行为的影响。本综述广泛涵盖了 EPG 技术的原理和发展,强调了仍存在的争议和挑战,并提出了克服这些挑战的建议研究。此外,它总结了 60 多年来的基础和应用 EPG 研究,并预览了害虫管理的未来方向。其目的是为这项独特的使能技术激发新的应用。发表于 2020 年。本文是美国政府的作品,在美国属于公有领域。