首页> 外文OA文献 >Metabolite Profiling Reveals a Specific Response in Tomato to Predaceous Chrysoperla carnea Larvae and Herbivore(s)-Predator Interactions with the Generalist Pests Tetranychus urticae and Myzus persicae
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Metabolite Profiling Reveals a Specific Response in Tomato to Predaceous Chrysoperla carnea Larvae and Herbivore(s)-Predator Interactions with the Generalist Pests Tetranychus urticae and Myzus persicae

机译:代谢物分析揭示了番茄中对食前角ry的幼虫和草食性-食肉动物与害虫Tetranychus urticae和Myzus persicae的相互作用的特异性反应

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摘要

The spider mite Tetranychus urticae Koch and the aphid Myzus persicae (Sulzer) both infest a number of economically significant crops, including tomato (Solanurn lycopersicum). Although used for decades to control pests, the impact of green lacewing larvae Chrysoperla carnea (Stephens) on plant biochemistry was not investigated. Here, we used profiling methods and targeted analyses to explore the impact of the predator and herbivore(s)-predator interactions on tomato biochemistry. Each pest and pest -predator combination induced a characteristic metabolite signature in the leaf and the fruit thus, the plant exhibited a systemic response. The treatments had a stronger impact on non-volatile metabolites including abscisic acid and amino acids in the leaves in comparison with the fruits. In contrast, the various biotic factors had a greater impact on the carotenoids in the fruits. We identified volatiles such as myrcene and alpha-terpinene which were induced by pest -predator interactions but not by single species, and we demonstrated the involvement of the phytohormone abscisic acid in tritrophic interactions for the first time. More importantly, C. carnea larvae alone impacted the plant metabolome, but the predator did not appear to elicit particular defense pathways on its own. Since the presence of both C. carnea larvae and pest individuals elicited volatiles which were shown to contribute to plant defense, C. carnea larvae could therefore contribute to the reduction of pest infestation, not only by its preying activity, but also by priming responses to generalist herbivores such as T urticae and M. persicae. On the other hand, the use of C. carnea larvae alone did not impact carotenoids thus, was not prejudicial to the fruit quality. The present piece of research highlights the specific impact of predator and tritrophic interactions with green lacewing larvae, spider mites, and aphids on different components of the tomato primary and secondary metabolism for the first time, and provides cues for further in-depth studies aiming to integrate entomological approaches and plant biochemistry.
机译:红蜘蛛螨(Tetranychus urticae Koch)和蚜虫Myzus persicae(Sulzer)都侵染了许多具有经济意义的农作物,包括番茄(Solanurn lycopersicum)。尽管已经使用了数十年的害虫防治方法,但并未研究绿色草lace幼虫Chrysoperla carnea(Stephens)对植物生物化学的影响。在这里,我们使用分析方法和针对性分析来探讨捕食者和食草动物-捕食者之间的相互作用对番茄生物化学的影响。每种害虫和害虫-捕食者的组合都在叶片和果实中诱导了特征性的代谢产物特征,因此,植物表现出系统性响应。与果实相比,这些处理对叶片中的非挥发性代谢产物(包括脱落酸和氨基酸)有更强的影响。相反,各种生物因子对水果中的类胡萝卜素影响更大。我们确定了由有害生物-捕食者相互作用而不是由单个物种诱导的诸如月桂烯和α-松油烯之类的挥发物,并且我们首次证明了植物激素脱落酸参与了三养性相互作用。更重要的是,角膜衣藻幼虫单独影响了植物的代谢组,但掠食者似乎并未独自引发特定的防御途径。由于角叉菜幼虫和有害生物个体的存在均引起挥发性物质,这些挥发物显示出对植物防御的贡献,因此,角叉菜幼虫不仅可以通过捕食活动,而且可以通过对害虫的引发反应来减少害虫侵染。杂草食性动物,例如荨麻科和桃蚜。另一方面,仅使用角叉菜幼虫并不会影响类胡萝卜素,因此不会影响果实品质。本研究首次强调了捕食者和三营养与绿色草lace幼虫,红蜘蛛和蚜虫的相互作用对番茄一次和二次代谢的不同成分的特殊影响,并为进一步深入研究提供了线索,以期整合昆虫学方法和植物生物化学。

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