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Comparative impacts of aboveground and belowground enemies on an invasive thistle

机译:地上和地下敌人对入侵蓟的比较影响

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Most research examining how herbivores and pathogens affect performance of invasive plants focuses on aboveground interactions. Although important, the role of belowground communities remains poorly understood, and the relative impact of aboveground and belowground interactions is still debated. As well, most studies of belowground interactions have been carried out in controlled environments, so little is known about the role of these interactions under natural conditions or how these relationships may change across a plant's range. Using the invasive plant Cirsium arvense , we performed a reciprocal transplant experiment to test the relative impacts of above‐ and belowground interactions at three sites across a 509‐km latitudinal gradient in its invaded range in Ontario, Canada. At each site, C.?arvense seedlings were protected with above‐ and/or belowground exclosures in a factorial design. Plant performance (biomass, height, stem thickness, number of leaves, length of longest leaf, maximum rhizome length) was greatest when both above‐ and belowground exclosures were applied and lowest when no exclosures were applied. When only one type of exclosure was applied, biomass generally improved more with belowground exclosures than with aboveground exclosures. Despite site‐to‐site differences in foliar damage, root damage, and mesofaunal populations, belowground interactions generally had a greater negative impact on performance than aboveground herbivory alone. These results stress the importance of including both aboveground enemy interactions and plant–soil interactions in studies of plant community dynamics and invader performance.
机译:大多数研究草食动物和病原体如何影响入侵植物性能的研究都集中在地上相互作用上。尽管很重要,但地下社区的作用仍然知之甚少,并且地下和地下互动的相对影响仍在争论中。同样,大多数地下交互作用的研究都是在受控环境中进行的,因此对于这些交互作用在自然条件下的作用或这些关系在整个植物范围内如何变化的了解甚少。我们使用侵入性植物Cirsium arvense进行了对等移植实验,以测试在加拿大安大略省509 km纬度梯度上三个地区的地上和地下相互作用的相对影响。在每个站点,按阶乘设计均通过地上和/或地下遮盖物保护了香椿幼苗。当同时使用地上和地下的暴露时,植物的性能(生物量,高度,茎粗,叶片数,最长的叶子的长度,最大的根茎长度)最大,而当不施用时,植物的性能最低。当仅使用一种类型的排泄物时,地下排泄物通常比地上排泄物改善生物质。尽管在叶面伤害,根部伤害和中庭种群之间存在现场差异,但地下相互作用通常比单独的地面食草对性能的负面影响更大。这些结果强调了在植物群落动态和侵袭者行为研究中包括地上敌人相互作用和植物-土壤相互作用的重要性。

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