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Performance of clones and morphs of two cereal aphids on wheat plants with high and low nitrogen content

机译:高氮和低氮小麦上两种谷物蚜虫的克隆和形态表现。

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摘要

The great variability of the aphid life cycle and their tendency for host alternation gives rise to aphid clones and morphs. Inter- and intraclonal variability may be observed in the responses of aphids to various environmental factors. In this study we aimed to evaluate the influence of intrinsic factors (clone and morph type) on the intrinsic rate of increase (rm) of the English grain aphid, Sitobion avenae (Fabricius), and the bird cherry-oat aphid, Rhopalosiphum padi (Linnaeus). For each species four apterous clones were collected from established laboratory colonies and compared to assess their relative fitness on high- and low-nitrogen wheat plants under laboratory conditions. The clones had significantly different intrinsic rates of increase on high- and low-nitrogen plants. All R. padi clones had a higher intrinsic rate of increase and mean relative growth rate than S. avenae. Experiments were also conducted to compare the mean fecundity of apterous and alate morphs of S. avenae and R. padi clones on high- and low-nitrogen wheat plants. On high-nitrogen plants the apterous morphs of S. avenae clones had significantly higher mean fecundity than alate morphs. There were no significant differences between the mean fecundity of alate morphs of the same species on high- and low-nitrogen plants. The results support the idea of better fitness of specific clones/morphs on certain host plants due to higher and lower intrinsic rates of increase.
机译:蚜虫生命周期的巨大变异性及其寄主交替的趋势导致了蚜虫的克隆和形态发生。蚜虫对各种环境因素的反应中可能观察到克隆间和克隆内的变异性。在这项研究中,我们旨在评估内在因素(克隆和形态类型)对英国谷物蚜虫(Sitobion avenae(Fabricius))和鸟类樱桃燕麦蚜虫(Rhopolosiphum padi( Linnaeus)。对于每个物种,从已建立的实验室菌落中收集了四个无性系克隆,并进行了比较,以评估它们在实验室条件下对高氮和低氮小麦植物的相对适应性。这些克隆在高氮和低氮植物上具有明显不同的内在增长率。所有的R. padi克隆都比S. avenae具有更高的内在增长率和平均相对增长率。还进行了实验,以比较高氮和低氮小麦植株上S. avenae和R. padi克隆的无性和无性形态的平均繁殖力。在高氮植物上,S。avenae克隆的无性形态的平均繁殖力明显高于后期形态。在高氮和低氮植物上,同一物种的晚期形态的平均繁殖力之间没有显着差异。由于更高和更低的内在增长率,结果支持特定克隆/形态在某些宿主植物上更适合的想法。

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