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Plant-microbe-herbivore interactions in invasive and non-invasive alien plant species

机译:入侵和非入侵外来植物物种中的植物-微生物-草食动物相互作用

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摘要

1. Plants interact with many organisms, such as microbes and herbivores, and these interactions are likely to affect the establishment and spread of plants. In the context of plant invasions, mycorrhizal fungi and constitutive and induced resistance of plants against herbivores have received attention independently of each other. However, plants are frequently involved in complex multi-trophic interactions, which might differ between invasive and non-invasive alien plants.\ud2. In a multi-species comparative experiment, we aimed to improve our understanding of plant traits associated with invasiveness. We tested whether eight invasive alien plant species use the mycorrhizal symbiosis in a more beneficial way, and have higher levels of constitutive or induced resistance against two generalist bioassay herbivores, than nine non-invasive alien species. We further assessed whether the presence of mycorrhizal fungi altered the resistance of the plant species, and whether this differed between invasive and non-invasive alien species.\ud3. While invasive species produced more biomass, they did not differ in their biomass response to mycorrhizal fungi from non-invasive alien species. Invasive species also did not have higher levels of constitutive or induced resistance against the two generalist herbivores. Mycorrhizal fungi greatly affected the resistance of our plant species, however, this was also unrelated to whether the alien species were invasive or not.\ud4. Our study confirms the previous findings that invasive species generally grow faster and produce more biomass than non-invasive alien species. We further show that alien plant species used a variety of defence strategies, and also varied in their interactions with mycorrhizal fungi. These multi-trophic interactions were not consistently related to invasiveness of the alien plant species.\ud5. We suggest that awareness of the fact that alien plant species are involved in multi-trophic interactions might lead to a more complete understanding of the factors contributing to a plant's success.
机译:1.植物与许多生物相互作用,例如微生物和草食动物,这些相互作用可能会影响植物的建立和传播。在植物入侵的背景下,菌根真菌以及植物对草食动物的构成性和诱导性抗性相互独立。但是,植物经常参与复杂的多营养相互作用,这在侵入性和非侵入性外来植物之间可能有所不同。在一个多物种比较实验中,我们旨在增进我们对与入侵相关的植物性状的了解。我们测试了八个侵入性外来植物物种是否比九个非侵入性外来物种以更有益的方式利用菌根共生,并且对两种通才生物测定法草食动物具有更高水平的组成型或诱导型抗性。我们进一步评估了菌根真菌的存在是否改变了植物物种的抗性,以及侵入性和非侵入性外来物种之间是否存在差异。\ ud3。虽然入侵物种产生更多的生物量,但它们对菌根真菌的生物量反应与非入侵外来物种没有差异。入侵物种对这两个通才食草动物的构成或诱导抗性也较高。菌根真菌极大地影响了我们植物的抗性,但这也与外来物种是否具有入侵性无关。我们的研究证实了先前的发现,即与非侵入性外来物种相比,侵入性物种通常生长更快且产生更多的生物量。我们进一步表明,外来植物物种使用了多种防御策略,并且与菌根真菌的相互作用也不同。这些多营养的相互作用与外来植物物种的入侵性并不一致。\ ud5。我们建议对外来植物物种参与多营养相互作用的事实的认识可能会导致对导致植物成功的因素有更全面的了解。

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