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首页> 外文期刊>Entomologia Experimentalis et Applicata >Attraction of the stink bug egg parasitoid Telenomus podisi to defence signals from soybean activated by treatment with cis-jasmone.
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Attraction of the stink bug egg parasitoid Telenomus podisi to defence signals from soybean activated by treatment with cis-jasmone.

机译:臭虫卵类寄生物 Telenomus podisi 受到顺式-茉莉酮处理激活的大豆防御信号的吸引。

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摘要

After herbivore attack or chemical activation, plants release a blend of volatile organic compounds (VOCs) that is qualitatively or quantitatively different to the blend emitted by an undamaged plant. The altered blend of VOCs is then usually attractive to the herbivore's natural enemies. Soybean, Glycine max (L.) (Fabaceae), when damaged by stink bug herbivory, has been shown to emit a blend of VOCs that attracts the stink bug egg parasitoid Telenomus podisi (Ashmead) (Hymenoptera: Scelionidae) to the plant. In this study, our aim was to investigate changes in the VOC profile of soybean (var. BR16) elicited by the naturally occurring plant activator cis-jasmone, and to determine whether these changes elicited the attraction of T. podisi. cis-Jasmone elicited chemical defence in soybean similar to that previously reported for stink bug damage. The main components induced by cis-jasmone were camphene, myrcene, (E)-ocimene, methyl salicylate, and (E,E)-4,8,12-trimethyltrideca-1,3,7,11-tetraene. In Y-tube behavioural bioassays, T. podisi preferred cis-jasmone treated plants over untreated plants. Thus, cis-jasmone appears to induce defence pathways in soybean similar to those induced by stink bug damage, and this phenomenon appears to be a promising tool for the manipulation of beneficial natural enemies in future sustainable stink bug control strategies. The delay in response demonstrates that cis-jasmone treatment is not directly causing the response, but, more importantly, that it is causing activation of induced defence, long after initial treatment.
机译:在食草动物攻击或化学活化后,植物释放出挥发性有机化合物(VOC)的混合物,该混合物在质量或数量上与未损坏的植物排放的混合物不同。因此,通常改变的VOC混合物对草食动物的天敌具有吸引力。大豆 Glycine max (L.)(Fabaceae)受臭虫草食性动物损害时,已显示出会散发出挥发性有机化合物,从而吸引臭虫卵类拟寄生物(Ashmead)(膜翅目:Scelionidae)。在这项研究中,我们的目的是调查天然存在的植物激活剂 cis -jasmone引起的大豆(BR16型)VOC曲线的变化,并确定这些变化是否引起了< i> T。 podisi 。 顺式-茉莉酮在大豆中引起了化学防御作用,类似于先前报道的臭臭虫损害。 顺式-茉莉酮诱导的主要成分是camp烯,月桂烯,( E )-罗勒烯,水杨酸甲酯和( E,E )- 4,8,12-三甲基三苯甲基-1,3,7,11-四烯。在Y型管行为生物测定中,T。与未经处理的植物相比,podisi 首选经顺式-茉莉酮处理的植物。因此,顺式-茉莉酮似乎在大豆中诱导了防御途径,类似于臭虫危害所诱导的防御途径,这种现象似乎是操纵有益的天敌以控制未来可持续臭虫的有前途的工具。策略。反应的延迟表明,顺式-茉莉酮治疗不是直接引起反应,而是更重要的是,它在初始治疗后很长一段时间就引起了诱导防御的激活。

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