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Complex Effects of Fertilization on Plant and Herbivore Performance in the Presence of a Plant Competitor and Activated Carbon

机译:在植物竞争者和活性炭存在下施肥对植物和草食动物性能的综合影响

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摘要

Plant-herbivore interactions are influenced by host plant quality which in turn is affected by plant growth conditions. Competition is the major biotic and nutrient availability a major abiotic component of a plant’s growth environment. Yet, surprisingly few studies have investigated impacts of competition and nutrient availability on herbivore performance and reciprocal herbivore effects on plants. We studied growth of the specialist aphid, Macrosiphoniella tanacetaria, and its host plant tansy, Tanacetum vulgare, under experimental addition of inorganic and organic fertilizer crossed with competition by goldenrod, Solidago canadensis. Because of evidence that competition by goldenrod is mediated by allelopathic compounds, we also added a treatment with activated carbon. Results showed that fertilization increased, and competition with goldenrod decreased, plant biomass, but this was likely mediated by resource competition. There was no evidence from the activated carbon treatment that allelopathy played a role which instead had a fertilizing effect. Aphid performance increased with higher plant biomass and depended on plant growth conditions, with fertilization and AC increasing, and plant competition decreasing aphid numbers. Feedbacks of aphids on plant performance interacted with plant growth conditions in complex ways depending on the relative magnitude of the effects on plant biomass and aphid numbers. In the basic fertilization treatment, tansy plants profited from increased nutrient availability by accumulating more biomass than they lost due to an increased number of aphids under fertilization. When adding additional fertilizer, aphid numbers increased so high that tansy plants suffered and showed reduced biomass compared with controls without aphids. Thus, the ecological cost of an infestation with aphids depends on the balance of effects of growth conditions on plant and herbivore performance. These results emphasize the importance to investigate both perspectives in plant herbivore interactions and characterize the effects of growth conditions on plant and herbivore performance and their respective feedbacks.
机译:植物-草食动物的相互作用受宿主植物质量的影响,而宿主植物的质量又受植物生长条件的影响。竞争是植物生长环境中主要的生物和营养物质,是主要的非生物成分。然而,令人惊讶的是,很少有研究研究竞争和养分供应对草食动物性能的影响以及对植物的反作用。我们在实验性添加无机和有机肥料并与加拿大一枝黄花竞争的交叉竞争下,研究了特种蚜虫tanacetaria拟南芥及其寄主植物艾菊的生长。因为有证据表明,菊科植物的竞争是由化感化合物介导的,所以我们还添加了活性炭处理。结果表明,施肥增加,与菊科植物的竞争减少,植物生物量,但这很可能是由资源竞争介导的。活性炭处理没有证据表明化感作用发挥了作用,反而具有肥育作用。蚜虫的表现随着植物生物量的增加而增加,并且取决于植物的生长条件,施肥和AC的增加,以及植物竞争中的蚜虫数量减少。蚜虫对植物性能的反馈以复杂的方式与植物生长条件相互作用,具体取决于对植物生物量和蚜虫数量影响的相对大小。在基本的施肥处理中,艾菊植物通过积累的生物量多于由于施肥下蚜虫数量的增加而损失的生物量,从而提高了养分利用率。当添加额外的肥料时,与没有蚜虫的对照相比,蚜虫的数量增加到如此之高,以至于艾菊植物受苦并显示出减少的生物量。因此,蚜虫侵染的生态成本取决于生长条件对植物和草食动物性能影响的平衡。这些结果强调了研究植物食草动物相互作用的两种观点以及表征生长条件对植物和食草动物性能及其各自反馈的影响的重要性。

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