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首页> 外文期刊>Environmental Entomology >Elevated CO2 Changes Interspecific Competition Among Three Species of Wheat Aphids: Sitobion avenae, Rhopalosiphum padi, and Schizaphis graminum
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Elevated CO2 Changes Interspecific Competition Among Three Species of Wheat Aphids: Sitobion avenae, Rhopalosiphum padi, and Schizaphis graminum

机译:二氧化碳含量的升高改变了三种蚜虫的种间竞争:Sitobion avenae,Rhodolosiphum padi和Schizaphis graminum

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摘要

Effects of elevated CO2 (twice ambient) on the interspecific competition among three species of wheat aphids (Sitobion avenae, Rhopalosiphum padi, and Schizaphis graminum) and on wheat-aphid interactions were studied. Wheat plants had higher biomass and yield and lower water and nitrogen content of grain when grown under elevated CO2 than under ambient CO2; levels of condensed tannins, total phenols, and total nonstructural carbohydrates were also higher in wheat ears under elevated CO2. Compared with ambient CO2, elevated CO2 increased the abundance of R. padi when introduced solely but reduced its abundance when S. avenae was also present. The spatial distribution of wheat aphids was apparently influenced by CO2 levels, with significantly more S. avenae on ears and a more even distribution of R. padi on wheat plants under elevated CO2 versus ambient CO2 Elevated CO2 did not affect the abundance and spatial distribution of S. graminus when inoculated solely. Moreover, when S. avenae was present with either R. padi or S. graminum, spatial niche overlap was significantly decreased with elevated CO2. When three species co-occurred, elevated CO2 reduced spatial niche overlap between S. avenae and S. graminum and between R. padi and S. graminum. Our results suggest that increases in atmospheric CO2 would alleviate interspecific competition for these cases, which would accentuate the abundance of and the damage caused by these wheat aphids.
机译:研究了升高的二氧化碳(两次环境)对三种小麦蚜虫(Sitobion avenae,Rhodolosiphum padi和Schizaphis graminum)种间竞争以及小麦-蚜虫相互作用的影响。在升高的CO 2下比在环境CO 2下生长时,小麦植物具有更高的生物量和产量,且籽粒的水和氮含量较低;在二氧化碳浓度升高的情况下,小麦穗中的单宁,总酚和总非结构性碳水化合物的含量也较高。与环境CO2相比,升高的CO2仅在引入时增加了R. padi的丰度,但当还存在S. avenae时降低了其丰度。二氧化碳浓度对小麦蚜虫的空间分布有明显的影响,在较高的CO2对环境的CO2浓度下,穗上的燕麦明显增多,小麦上的R. padi分布更为均匀。单独接种葡萄球菌时。而且,当燕麦葡萄球菌与帕氏酵母或格氏葡萄球菌同时存在时,空间生态位重叠随着CO 2升高而显着减少。当同时存在三个物种时,升高的CO2减少了金黄色葡萄球菌和格氏葡萄球菌之间以及R. padi和格氏葡萄球菌之间的空间生态位重叠。我们的研究结果表明,大气中二氧化碳的增加将减轻这些情况下的种间竞争,这将加剧这些小麦蚜虫的丰度和造成的损害。

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