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富含(E)-β-罗勒烯的遗传效应及其在捕食性螨虫智利小植绥螨对朱砂叶螨诱导的罗勒挥发物混合物的吸引力中的作用。

The effect of genetically enriched (E)-β-ocimene and the role of floral scent in the attraction of the predatory mite Phytoseiulus persimilis to spider mite-induced volatile blends of torenia.

机构信息

National Agricultural Research Center, Tsukuba, Ibaraki 305-8666, Japan.

Iwate Biotechnology Research Center, Kitakami, Iwate 024-0003, Japan.

出版信息

New Phytol. 2012 Mar;193(4):1009-1021. doi: 10.1111/j.1469-8137.2011.04018.x. Epub 2012 Jan 13.

DOI:10.1111/j.1469-8137.2011.04018.x
PMID:22243440
Abstract

Plants under herbivore attack emit mixtures of volatiles (herbivore-induced plant volatiles, HIPVs) that can attract predators of the herbivores. Although the composition of HIPVs should be critical for the attraction, most studies of transgenic plant-emitted volatiles have simply addressed the effect of trans-volatiles without embedding in other endogenous plant volatiles. We investigated the abilities of transgenic wishbone flower plants (Torenia hybrida and Torenia fournieri) infested with spider mites, emitting a trans-volatile ((E)-β-ocimene) in the presence or absence of endogenous volatiles (natural HIPVs and/or floral volatiles), to attract predatory mites (Phytoseiulus persimilis). In both olfactory- and glasshouse-based assays, P. persimilis females were attracted to natural HIPVs from infested wildtype (wt) plants of T. hybrida but not to those of T. fournieri. The trans-volatile enhanced the ability to attract P. persimilis only when added to an active HIPV blend from the infested transgenic T. hybrida plants, in comparison with the attraction by infested wt plants. Intriguingly, floral volatiles abolished the enhanced attractive ability of T. hybrida transformants, although floral volatiles themselves did not elicit any attraction or avoidance behavior. Predator responses to trans-volatiles were found to depend on various background volatiles (e.g. natural HIPVs and floral volatiles) endogenously emitted by the transgenic plants.

摘要

植物在受到食草动物攻击时会释放出挥发性混合物(食草动物诱导的植物挥发物,HIPVs),这些挥发物可以吸引食草动物的捕食者。尽管 HIPVs 的组成对于吸引捕食者应该是至关重要的,但大多数关于转基因植物释放的挥发性物质的研究只是简单地解决了trans-volatile 的效果,而没有将其嵌入其他内源性植物挥发性物质中。我们研究了受螨虫侵害的转基因半边莲植物(Torenia hybrida 和 Torenia fournieri)的能力,这些植物在存在或不存在内源性挥发物(天然 HIPVs 和/或花香挥发物)的情况下,会释放一种 trans-volatile((E)-β-ocimene),以吸引捕食性螨虫(Phytoseiulus persimilis)。在嗅觉和温室基础测试中,P. persimilis 雌性被受感染的野生型(wt)半边莲植物释放的天然 HIPVs 吸引,但不受 T. fournieri 植物释放的 HIPVs 吸引。与受感染的 wt 植物相比,只有当添加到受感染的转基因半边莲植物释放的活性 HIPV 混合物中时,trans-volatile 才会增强对 P. persimilis 的吸引力。有趣的是,花香挥发物会消除半边莲转化体增强的吸引力能力,尽管花香挥发物本身不会引起任何吸引或回避行为。发现捕食者对 trans-volatile 的反应取决于各种背景挥发物(例如,转基因植物内源性释放的天然 HIPVs 和花香挥发物)。

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