首页> 美国卫生研究院文献>Journal of Insect Science >Probing Behavior of Dichelops furcatus (F.) (Heteroptera: Pentatomidae) on Wheat Plants Characterized by Electropenetrography (EPG) and Histological Studies
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Probing Behavior of Dichelops furcatus (F.) (Heteroptera: Pentatomidae) on Wheat Plants Characterized by Electropenetrography (EPG) and Histological Studies

机译:电镜(EPG)表征和组织学研究对虾(Dieterops furcatus(F。)(Heteroptera:Pentatomidae)在小麦上的探测行为

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摘要

The stink bug Dichelops furcatus (F.) (Heteroptera: Pentatomidae) has increased in abundance in recent years on the wheat, Triticum aestivum L., crop cultivated in the southern region of Brazil. To investigate the probing (stylet penetration) behaviors and nonprobing behaviors of D. furcatus on wheat plants, the electrical penetration graph or electropenetrography (EPG) technique was applied. Nine EPG waveforms (types/subtypes) were identified and described on stem and on ear head of wheat plants, as follows: Z, Np, Df1a, Df1b, Df2, Df3a, Df3b, Df4a, and Df4b. For the waveforms Df1, Df2, Df3, and Df4, stylets were severed to determine, via histological studies, the location of the stylet tip and/or salivary sheath tip in plant tissue. Waveform Z was visually correlated with the bug standing still on the plant surface, whereas during Np the bug was walking. Df1a and Df1b represent initial stylet insertion, deep penetration of the stylets into the plant tissue, and secretion of salivary sheath. Df2 represents xylem sap ingestion on stem and on ear head. Waveforms Df3a and Df4a were related to the cell rupturing feeding strategy (laceration and maceration tactics) on stem and on ear head (seed endosperm), respectively. Waveforms Df3b and Df4b represent ingestion of cellular contents derived from cell rupturing activities on stem and on ear head (seed endosperm), respectively. With this fundamental knowledge in hand, future studies can use EPG to develop novel pest management solutions.
机译:近年来,巴西南部小麦种植的小麦(Triticum aestivum L.)的臭虫Dichelops furcatus(F。)(Heteroptera:Pentatomidae)的丰度增加了。为了研究D. furcatus在小麦植物上的探测(探针穿透)行为和非探测行为,应用了电穿透图或电渗透(EPG)技术。在小麦植物的茎和穗头上鉴定并描述了九种EPG波形(类型/亚型),如下所示:Z,Np,Df1a,Df1b,Df2,Df3a,Df3b,Df4a和Df4b。对于波形Df1,Df2,Df3和Df4,通过组织学研究切断探针,以确定植物组织中的探针尖端和/或唾液鞘管尖端的位置。视觉上,Z波形与虫子在植物表面静止不动相关,而在Np期间,虫子正在行走。 Df1a和Df1b代表初始的探针插入,探针在植物组织中的深入渗透以及唾液鞘的分泌。 Df2代表茎和耳朵头部木质部汁液的摄入。波形Df3a和Df4a分别与茎和耳头(种子胚乳)上的细胞破裂进食策略(催泪和浸软策略)有关。波形Df3b和Df4b分别代表源于茎和耳头(种子胚乳)上的细胞破裂活动的细胞内含物的摄入。掌握了这些基础知识之后,将来的研究便可以使用EPG来开发新颖的害虫管理解决方案。

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