Dugravot Sebastien, Backus Elaine A, Reardon Brendon J, Miller Thomas A
Department of Entomology, University of California, Riverside, CA 92521, USA.
J Insect Physiol. 2008 Dec;54(12):1467-78. doi: 10.1016/j.jinsphys.2008.05.008. Epub 2008 Aug 23.
Fluid flow into and out of the stylets of xylem-ingesting sharpshooters (Hemiptera: Cicadellidae: Cicadellinae) is powered by muscles of the cibarial pump. Such fluid flow is crucial for transmission of Xylella fastidiosa, the Pierce's Disease bacterium, yet has not been rigorously studied via electrical penetration graph (EPG) technology. We correlated EPG waveforms with electromyographically (EMG) recorded muscle potentials from the cibarial dilator muscles, which power the piston-like cibarial diaphragm. There was a 1:1 correspondence of each cycle of cibarial muscle contraction/relaxation with each plateau of EPG waveform C. Results definitively showed that the C waveform represents active ingestion, i.e. fluid flow is propelled by cibarial muscle contraction. Moreover, each C waveform episode represents muscular diaphragm uplift, probably combined with a "bounce" from cuticular elasticity, to provide the suction that pulls fluid into the stylets. Fine structure of the EPG ingestion waveform represents directionality of fluid flow, supporting the primary role of streaming potentials as the electrical origin of the C waveform. Rhythmic bouts of cibarial pumping were generally correlated with sustained production of excretory droplets. However, neither the onset nor cessation of ingestion was correlated with onset or cessation of excretion, respectively. Volume of excreta is an inexact measure of ingestion. Implications for using EPG to understand the mechanism of X. fastidiosa transmission are discussed.
取食木质部的叶蝉(半翅目:叶蝉科:小叶蝉亚科)口针内的液体进出由食窦泵的肌肉驱动。这种液体流动对于木质部难养菌(皮尔斯病细菌)的传播至关重要,但尚未通过电穿透图(EPG)技术进行严格研究。我们将EPG波形与从食窦扩张肌记录的肌电图(EMG)肌肉电位相关联,食窦扩张肌为活塞状的食窦隔膜提供动力。食窦肌肉收缩/舒张的每个周期与EPG波形C的每个平台存在1:1对应关系。结果明确表明,C波形代表主动取食,即液体流动由食窦肌肉收缩推动。此外,每个C波形片段代表肌肉隔膜上升,可能还伴随着表皮弹性产生的“反弹”,以提供将液体吸入口针的吸力。EPG取食波形的精细结构代表液体流动的方向性,支持流动电位作为C波形电起源的主要作用。食窦泵的有节奏搏动通常与排泄液滴的持续产生相关。然而,取食的开始或停止分别与排泄的开始或停止均无关联。排泄物的量是取食量的一种不精确度量。本文讨论了使用EPG理解木质部难养菌传播机制的意义。