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补充硅改变了植食性昆虫诱导的植物挥发物的组成,并增强了寄生蜂对受侵害水稻植株的吸引力。

Silicon Supplementation Alters the Composition of Herbivore Induced Plant Volatiles and Enhances Attraction of Parasitoids to Infested Rice Plants.

作者信息

Liu Jian, Zhu Jiwei, Zhang Pengjun, Han Liwei, Reynolds Olivia L, Zeng Rensen, Wu Jinhong, Shao Yue, You Minsheng, Gurr Geoff M

机构信息

State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Fujian Agriculture and Forestry UniversityFuzhou, China.

Institute of Applied Ecology, Fujian Agriculture and Forestry UniversityFuzhou, China.

出版信息

Front Plant Sci. 2017 Jul 19;8:1265. doi: 10.3389/fpls.2017.01265. eCollection 2017.

Abstract

Silicon (Si) is important in plant defenses that operate in a direct manner against herbivores, and work in rice () has established that this is mediated by the jasmonate signaling pathway. Plant defenses also operate indirectly, by the production of herbivore induced plant volatiles (HIPVs) that attract predators and parasitoids of herbivores. These indirect defenses too are mediated by the jasmonate pathway but no earlier work has demonstrated an effect of Si on HIPVs. In this study, we tested the effect of Si supplementation versus Si deprivation to rice plants on subsequent HIPV production following feeding by the important pest, rice leaffolder (). Gas chromatography-mass spectrometry analyses showed lower production of α-bergamotene, β-sesquiohellandrene, hexanal 2-ethyl, and cedrol from +Si herbivore-infested plants compared with -Si infested plants. These changes in plant chemistry were ecologically significant in altering the extent to which parasitoids were attracted to infested plants. Adult females of and both exhibited greater attraction to the HIPV blend of +Si plants infested with their respective insect hosts compared to -Si infested plants. In equivalent studies using RNAi rice plants in which jasmonate perception was silenced there was no equivalent change to the HIPV blend associated with Si treatment; indicating that the effects of Si on HIPVs are modulated by the jasmonate pathway. Further, this work demonstrates that silicon alters the HIPV blend of herbivore-infested rice plants. The significance of this finding is that there are no earlier-published studies of this phenomenon in rice or any other plant species. Si treatment to crops offers scope for enhancing induced, indirect defenses and associated biological control of pests because parasitoids are more strongly attracted by the HIPVs produced by +Si plants.

摘要

硅(Si)在植物对草食动物的直接防御中起着重要作用,水稻方面的研究已证实这一过程由茉莉酸信号通路介导。植物防御也通过产生草食动物诱导的植物挥发物(HIPVs)来间接发挥作用,这些挥发物能吸引草食动物的捕食者和寄生蜂。这些间接防御同样由茉莉酸途径介导,但此前尚无研究表明硅对HIPVs有影响。在本研究中,我们测试了给水稻补充硅与不补充硅对随后在重要害虫稻纵卷叶螟取食后HIPV产生的影响。气相色谱 - 质谱分析表明,与不补充硅且受虫害的植株相比,补充硅且受虫害的植株产生的α - 香柠檬烯、β - 倍半水芹烯、2 - 乙基己醛和雪松醇较少。植物化学组成的这些变化在改变寄生蜂对受虫害植株的吸引程度方面具有生态学意义。稻虱缨小蜂和拟澳洲赤眼蜂的成年雌蜂对补充硅且被各自昆虫寄主侵染的植株的HIPV混合物的吸引力均大于不补充硅且受虫害的植株。在使用茉莉酸感知被沉默的RNA干扰水稻植株进行的等效研究中,与硅处理相关的HIPV混合物没有等效变化;这表明硅对HIPVs的影响是由茉莉酸途径调节的。此外,这项研究表明硅改变了受草食动物侵染的水稻植株的HIPV混合物。这一发现的重要性在于,此前在水稻或任何其他植物物种中均未发表过关于这一现象的研究。对作物进行硅处理为增强诱导性间接防御及相关害虫生物防治提供了空间,因为寄生蜂对补充硅的植株产生的HIPVs吸引力更强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b478/5515826/8d94952a4556/fpls-08-01265-g001.jpg

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