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玉米镰刀菌感染:受感染和相邻未受感染植物的挥发性诱导有可能吸引害虫——粟灰螟。

Fusarium infection in maize: volatile induction of infected and neighboring uninfected plants has the potential to attract a pest cereal leaf beetle, Oulema melanopus.

机构信息

Department of Applied Entomology, University of Technology and Life Sciences, 85-225 Bydgoszcz, 20 Kordeckiego, Poland.

出版信息

J Plant Physiol. 2011 Sep 1;168(13):1534-42. doi: 10.1016/j.jplph.2011.01.032. Epub 2011 Apr 14.

Abstract

Fusarium infection of maize leaves and/or roots through the soil can stimulate the emission of volatile organic compounds (VOCs). It is also well known that VOC emission from maize plants can repel or attract pests. In our experiments, we studied VOC induction responses of Zea mays L. ssp. mays cv. 'Prosna' having Fusarium infection (mix of four species) in leaves or roots, then tested for VOC induction of uninfected neighboring plants, and finally examined wind-tunnel behavioral responses of the adult cereal leaf beetle, Oulema melanopus L. (Chrysomelidae: Coleoptera) behavior to four induced VOCs. In the first part of our experiment, we confirmed that several green leaf volatiles (GLVs; (Z)-3-hexenal, (E)-2-hexenal, (Z)-3-hexen-1-ol, (E)-2-hexen-1-ol, (Z)-3-hexen-1-yl acetate, 1-hexyl acetate), terpenes (β-pinene, β-myrcene, Z-ocimene, linalool, β-caryophyllene), and shikimic acid pathway derivatives (benzyl acetate, methyl salicylate, indole) were positively induced from maize plants infected by Fusarium spp. The quantities of induced VOCs were higher at 7d than 3d post-infection and greater when plants were infected with Fusarium on leaves rather than through soil. In the second part of our experiment, uninfected maize plants also showed significantly positive induction of several VOCs when neighboring an infected plant where the degree of induction was negatively related to the distance from the infected plant. In the third part of our experiment, a Y-tube bioassay was used to evaluate upwind orientation of adult cereal leaf beetles to four individual VOCs. Female and male O. melanopus were significantly attracted to the GLVs (Z)-3-hexenal and (Z)-3-hexenyl acetate, and the terpenes linalool and β-caryophyllene. Our results indicate that a pathogen can induce several VOCs in maize plants that also induce VOCs in neighboring uninfected plants, though VOC induction could increase the range at which an insect pest species is attracted to VOC inducing plants.

摘要

镰刀菌通过土壤感染玉米叶片和/或根部会刺激挥发性有机化合物(VOC)的排放。众所周知,玉米植株排放的 VOC 可以驱赶或吸引害虫。在我们的实验中,我们研究了具有镰刀菌感染(四种混合)的 Zea mays L. ssp. mays cv. 'Prosna' 的叶片或根部的 VOC 诱导反应,然后测试了未感染的邻近植物的 VOC 诱导反应,最后检查了成虫黑麦草象鼻虫 Oulema melanopus L.(鞘翅目:象鼻虫科)对四种诱导 VOC 的风洞行为反应。在我们实验的第一部分,我们证实了几种绿叶挥发物(GLVs;(Z)-3-己烯醛、(E)-2-己烯醛、(Z)-3-己烯-1-醇、(E)-2-己烯-1-醇、(Z)-3-己烯-1-基乙酸酯、1-己基乙酸酯)、萜烯(β-蒎烯、β-月桂烯、Z-罗勒烯、芳樟醇、β-丁香烯)和莽草酸途径衍生物(乙酸苄酯、水杨酸甲酯、吲哚)均被镰刀菌属感染的玉米植株正向诱导。感染后 7 天比感染后 3 天产生的诱导 VOC 数量更多,而叶片感染比土壤感染产生的诱导 VOC 数量更多。在我们实验的第二部分,当邻近受感染植物时,未受感染的玉米植物也会显著诱导几种 VOC,并且诱导程度与距受感染植物的距离呈负相关。在我们实验的第三部分,使用 Y 型管生物测定法评估了成年黑麦草象鼻虫对四种单一 VOC 的顺风取向。雌性和雄性 O. melanopus 对 GLVs(Z)-3-己烯醛和(Z)-3-己烯基乙酸酯,萜烯芳樟醇和β-丁香烯有明显的吸引力。我们的结果表明,病原体可以诱导玉米植株产生几种 VOC,这些 VOC 也会诱导邻近未感染植物产生 VOC,尽管 VOC 诱导可能会增加昆虫害虫物种被吸引到 VOC 诱导植物的范围。

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