首页> 外文期刊>PLoS One >Influence of light availability and soil productivity on insect herbivory on bilberry ( Vaccinium myrtillus ?L.) leaves following mammalian herbivory
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Influence of light availability and soil productivity on insect herbivory on bilberry ( Vaccinium myrtillus ?L.) leaves following mammalian herbivory

机译:光可用性和土壤生产率对鼠脑草药(疫苗Myrtillus?L.)哺乳动物草食病后的影响

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Vegetative parts of bilberry ( Vaccinium myrtillus ) are important forage for many boreal forest mammal, bird and insect species. Plant palatability to insects is affected by concentration of nutrients and defense compounds in plants. We expected that palatability of bilberry leaves to insect herbivores is influenced by light availability and soil productivity (both affecting nitrogen concentration and constitutive carbon-based defense compound concentration) and herbivory by mammals (affecting nitrogen concentration and induced carbon-based defense compound concentration). We studied bilberry leaf herbivory under different light availability, soil productivity and mammalian herbivory pressure in small sampling units (1m x 1m) in boreal forest in Norway. We used generalized linear mixed models and generalized additive mixed models to model insect herbivory on bilberry leaves as a function of shade, soil productivity and mammalian herbivory. Observed insect herbivory on bilberry leaves increased with increasing shade levels. Predicted insect herbivory increased with increasing previous mammalian herbivory at high shade levels and this response was magnified at higher soil productivity levels. At low to intermediate shade levels, this response was only present under high soil productivity levels. Our results indicate that light availability is more important for variation in bilberry leaf palatability than soil nutrient conditions.
机译:越桔(疫苗疫苗)的植物部分是许多北方森林哺乳动物,鸟类和昆虫物种的重要觅食。对昆虫的植物适口性受植物中养分和防御化合物的浓度的影响。我们预计越桔叶对昆虫食草剂的适口性受到哺乳动物(影响氮浓度和诱导的碳基防化合物浓度)的光可用性和土壤生产率(两者都会影响氮浓度和基于碳的防御复合浓度)和草本植物的影响。我们在挪威的北方林林中的不同光可用性,土壤生产率和哺乳动物草本迁移压力下研究了越桔叶草食,土壤生产力和哺乳动物草食物。我们使用广泛的线性混合模型和广义添加剂混合模型,以模拟胆汁叶片的昆虫草食品,作为阴影,土壤生产率和哺乳动物草食病。观察到越橘叶子的昆虫草食病随着树荫水平的增加而增加。预测昆虫草药随着在高阴影水平的先前哺乳动物草食管上增加而增加,并且这种反应在较高的土壤生产率水平下放大。在低至中间阴影水平下,这种反应仅在高土壤生产率水平下存在。我们的结果表明,比土壤营养条件比胆汁叶可口度变异更为重要。

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