首页> 美国卫生研究院文献>Journal of Insect Science >Review of the EPG Waveforms of Sharpshooters and Spittlebugs Including Their Biological Meanings in Relation to Transmission of Xylella fastidiosa (Xanthomonadales: Xanthomonadaceae)
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Review of the EPG Waveforms of Sharpshooters and Spittlebugs Including Their Biological Meanings in Relation to Transmission of Xylella fastidiosa (Xanthomonadales: Xanthomonadaceae)

机译:锐利射击者和瓢虫的EPG波形综述包括其与木须杆菌传播的生物学意义(Xanthomonadales:Xanthomonadaceae)

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摘要

Electropenetrography (EPG) is one of the most rigorous methods to study stylet probing behaviors of piercing-sucking insects whose mouthparts move invisibly inside hosts. EPG is particularly useful for identifying vector behaviors that control transmission (acquisition, retention, and inoculation) of plant pathogens, comparing those behaviors among vector species, and aiding in development of novel vector and disease management tactics. (Wells et al.) is a gram-negative, invasive bacterium native to the Americas, where it is the causal agent of lethal scorch-type diseases such as Pierce’s disease of grapevines. is transmitted by sharpshooter leafhoppers (Hemiptera: Cicadellidae: Cicadellinae) and spittlebugs (Hemiptera: Aphrophoridae). Despite over 75 yr of study, details of the inoculation mechanism of were unknown until the advent of EPG research with sharpshooters. Herein, the following topics are presented: 1) review of key EPG principles and waveforms published to date, emphasizing sharpshooters and spittlebugs; 2) summary of present understanding of biological meanings of sharpshooter waveforms; 3) review of mechanisms of transmission for illuminated by EPG; and 4) recommendations of the most useful waveform categories for EPG use in future, quantitative comparisons of sharpshooter stylet probing on various treatments such as infected versus uninfected plants, resistant varieties, or insecticide treatments. In addition, new work on the functional anatomy of the precibarial valve is discussed in the context of transmission and EPG waveforms. Also, the first block diagram of secondary, signal-processing circuits for the AC-DC EPG is published, and is discussed in relation to EPG signals appearances and meanings.
机译:静电描记术(EPG)是研究刺入式昆虫的口探针探测行为的最严格方法之一,这些昆虫的口器在宿主体内不可见。 EPG对于识别控制植物病原体传播(获取,保留和接种)的载体行为,比较载体物种之间的行为以及帮助开发新的载体和疾病管理策略特别有用。 (Wells et al。)是一种美洲革兰氏阴性的入侵细菌,它是致命性烧焦型疾病(如葡萄皮尔斯氏病)的致病因子。由锋利的叶蝉(Hemiptera:Cicadellidae:Cicadellinae)和spittlebugs(Hemiptera:Aphrophoridae)传播。尽管进行了超过75年的研究,但直到有关神枪手的EPG研究出现之前,其接种机理的细节仍不清楚。在此,提出以下主题:1)回顾迄今为止发布的主要EPG原理和波形,着重于神枪手和四处传播的臭虫; 2)目前对神枪手波形的生物学含义的理解的总结; 3)审查EPG照明的传播机制;和4)推荐用于EPG的最有用的波形类别,未来对Sharpshooter探针进行各种处理(如感染与未感染植物,抗性品种或杀虫剂处理)进行定量比较。此外,在透射波和EPG波形的背景下,讨论了大肠前瓣功能解剖的新工作。同样,AC-DC EPG的次级信号处理电路的第一个方框图也已发布,并针对EPG信号的外观和含义进行了讨论。

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