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Differences in physiological traits and resistances of Alternanthera philoxeroides after herbivory by generalists and specialists

机译:通用与专家在草本和专家后交替anteranera Philoxeroides的生理性状和抗性的差异

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Many researchers have surveyed damages caused by natural enemies of invasive plants in both native and introduced ranges to test the enemy release hypothesis. In this study, we report our findings on the physiological and morphological impacts of a co-evolved specialist insect (Agasicles hygrophila) and two generalist insects (Atractomorpha sinensis and Hymenia recurvalis) in introduced ranges on an invasive plant, Alternanthera philoxeroides, in both field trials and controlled environments. The resistance of A. philoxeroides against the generalists and the specialist was also studied. We obtained consistent results in both the field trials and the controlled treatments: both the generalists and the specialist decreased leaf biomass, photosynthesis, leaf nitrogen content, and total leaf non-structural carbohydrate content in A. philoxeroides. However, the specialist decreased leaf mass, photosynthesis, and leaf nitrogen content more acutely than the generalists. Moreover, A. philoxeroides increased both leaf lignin and cellulose concentrations upon the generalists' attack but only increased cellulose concentration in response to the specialist. Our results showed that even under the same population density, the co-evolved specialists from original ranges caused more severe morphological and physiological damage to A. philoxeroides than the generalists in introduced ranges. This revealed that invasive plants released some herbivory stress before their co-evolved specialists were introduced, which may contribute to the superior performance of invasive plants in introduced regions.
机译:许多研究人员对本地和引入的范围内的侵入性植物的天敌造成的损害,以测试敌人的释放假说。在这项研究中,我们报告了我们对侵入性植物,交替植物,两种领域的兴奋性植物的范围内引入的范围内试验和受控环境。还研究了A. Philoxeroides对整体和专家的抵抗。我们在现场试验和受控治疗中获得了一致的结果:通用和专业人员在A. Philoxeroides中的叶片生物质,光合作用,叶片氮含量和总叶片非结构碳水化合物含量下降。然而,专家比整体更敏锐地降低了叶片质量,光合作用和叶片氮含量。此外,A. Philoxeroides在通用攻击时增加了Lignin和纤维素浓度,但仅增加了专家的纤维素浓度。我们的研究结果表明,即使在相同的人口密度下,来自原始范围的共同演化专家也导致A. Philoxeroides比引入范围的普通师更严重的形态和生理损伤。这揭示了侵入性植物在引入共同进化的专家之前发布了一些草食性压力,这可能有助于引入区域中侵入性植物的优越性。

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