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利用代谢组学阐明对李短尾蚜的抗性标记

The Use of Metabolomics to Elucidate Resistance Markers against Damson-Hop Aphid.

作者信息

Undas Anna K, Weihrauch Florian, Lutz Anton, van Tol Rob, Delatte Thierry, Verstappen Francel, Bouwmeester Harro

机构信息

Laboratory of Plant Physiology, Wageningen University, Droevendaalsesteeg 1, 6708, PB, Wageningen, The Netherlands.

RIKILT, Wageningen University & Research, Akkermaalsboss 2, 6708, WB, Wageningen, The Netherlands.

出版信息

J Chem Ecol. 2018 Aug;44(7-8):711-726. doi: 10.1007/s10886-018-0980-y. Epub 2018 Jul 6.

Abstract

Phorodon humuli (Damson-hop aphid) is one of the major pests of hops in the northern hemisphere. It causes significant yield losses and reduces hop quality and economic value. Damson-hop aphid is currently controlled with insecticides, but the number of approved pesticides is steadily decreasing. In addition, the use of insecticides almost inevitably results in the development of resistant aphid genotypes. An integrated approach to pest management in hop cultivation is therefore badly needed in order to break this cycle and to prevent the selection of strains resistant to the few remaining registered insecticides. The backbone of such an integrated strategy is the breeding of hop cultivars that are resistant to Damson-hop aphid. However, up to date mechanisms of hops resistance towards Damson-hop aphids have not yet been unraveled. In the experiments presented here, we used metabolite profiling followed by multivariate analysis and show that metabolites responsible for hop aroma and flavor (sesquiterpenes) in the cones can also be found in the leaves, long before the hop cones develop, and may play a role in resistance against aphids. In addition, aphid feeding induced a change in the metabolome of all hop genotypes particularly an increase in a number of oxidized compounds, which suggests this may be part of a resistance mechanism.

摘要

啤酒蚜(山楂叶螨)是北半球啤酒花的主要害虫之一。它会导致严重的产量损失,降低啤酒花质量和经济价值。目前,啤酒蚜通过杀虫剂进行防治,但获批的农药数量正在稳步减少。此外,使用杀虫剂几乎不可避免地会导致抗性蚜虫基因型的出现。因此,迫切需要一种综合的啤酒花种植害虫管理方法,以打破这一循环,并防止对少数剩余登记杀虫剂产生抗性的菌株的出现。这种综合策略的核心是培育抗啤酒蚜的啤酒花品种。然而,迄今为止,啤酒花对啤酒蚜的抗性机制尚未阐明。在此处展示的实验中,我们采用代谢物谱分析并结合多变量分析,结果表明,在啤酒花球果发育之前很久,负责啤酒花香气和风味的代谢物(倍半萜)也能在叶片中找到,并且可能在抗蚜过程中发挥作用。此外,蚜虫取食会引起所有啤酒花基因型代谢组的变化,尤其是一些氧化化合物数量的增加,这表明这可能是抗性机制的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fae4/6096525/b7dd92d216aa/10886_2018_980_Fig1_HTML.jpg

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