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艾菊上蚜虫种群规模受植物化学成分影响,但不受地下取食影响。

Aphid Colony Size in Tansy is Affected by Plant Chemical Composition but not by Belowground Herbivory.

作者信息

Neuhaus-Harr Annika, Ojeda-Prieto Lina, Zhang Xiaoyuan, Schnitzler Jörg-Peter, Weisser Wolfgang W, Heinen Robin

机构信息

Terrestrial Ecology Research Group, Department of Life Science Systems, School of Life Sciences, Technical University of Munich, Freising, Germany.

Research Unit Environmental Simulation, Helmholtz Munich, Neuherberg, Germany.

出版信息

J Chem Ecol. 2025 May 29;51(3):63. doi: 10.1007/s10886-025-01609-y.

Abstract

Plants are hosts for above- and belowground insect communities that can influence each other via above-belowground plant-physiological dynamics. To mediate interactions, plants produce secondary metabolites, including terpenoids, and mixtures can differ intraspecifically. While intraspecific variation in plant chemistry gained increased interest, the extent to which intraspecific differences in plant chemistry mediate above-belowground interactions of herbivores remains unclear. We used a full factorial design with six distinct terpenoid chemotypes, differing in their chemical diversity of tansy (Tanacetum vulgare). We exposed these to the aboveground herbivore Macrosiphoniella tanacetaria (Hemiptera: Aphididae), the belowground herbivore Agriotes sp. (Coleoptera: Elateridae), no herbivore or both herbivores, to determine if chemotypes or the chemical diversity of plant compounds affected aphid performance and if the interactions between herbivores were mediated by the chemical profile. We found that aphid colony size differed between chemotypes, with the strongest colony increase over time in a mixed chemotype, and the weakest in a β-thujone chemotype. Root herbivory had no effect on aphid colony size, regardless of the chemotype. Aphid colony size was positively correlated with terpenoid evenness, but not with terpenoid Shannon diversity, terpenoid richness, or relative terpenoid concentration. Tansy chemotypes differed in their morphological responses (final plant height and final plant dry weight) and average leaf chlorophyll content to aboveground herbivory, whereas belowground herbivory exerted minimal impacts. Overall, our results show that intraspecific variation in terpenoid profiles directly modify ecological interactions on a plant, with plant chemistry mediating aphid performance and chemotypes differing in their morphological responses to herbivory.

摘要

植物是地上和地下昆虫群落的宿主,这些群落可通过地上-地下植物生理动态相互影响。为了调节相互作用,植物会产生次生代谢产物,包括萜类化合物,并且种内混合物可能存在差异。虽然植物化学的种内变异越来越受到关注,但植物化学的种内差异在多大程度上介导食草动物的地上-地下相互作用仍不清楚。我们采用了全因子设计,使用六种不同的萜类化学型,它们在艾菊(Tanacetum vulgare)的化学多样性上存在差异。我们将这些化学型暴露于地上食草动物麦长管蚜(Macrosiphoniella tanacetaria,半翅目:蚜科)、地下食草动物金针虫(Agriotes sp.,鞘翅目:叩甲科)、无食草动物或两种食草动物都存在的环境中,以确定化学型或植物化合物的化学多样性是否影响蚜虫的表现,以及食草动物之间的相互作用是否由化学特征介导。我们发现,不同化学型之间蚜虫群体大小存在差异,混合化学型中蚜虫群体随时间增长最强,而在β-侧柏酮化学型中最弱。无论化学型如何,根部食草作用对蚜虫群体大小均无影响。蚜虫群体大小与萜类化合物均匀度呈正相关,但与萜类化合物的香农多样性、萜类化合物丰富度或相对萜类化合物浓度无关。艾菊化学型在对地上食草作用的形态反应(最终植株高度和最终植株干重)和平均叶片叶绿素含量方面存在差异,而地下食草作用的影响最小。总体而言,我们的结果表明,萜类化合物谱的种内变异直接改变了植物上的生态相互作用,植物化学介导了蚜虫的表现,并且化学型在对食草作用的形态反应上存在差异。

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