Stoichiometric mismatch between littoral invertebrates and their periphyton food

P. Fink, L. Peters, E. Elert
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引用次数: 50

Abstract

Abstract: Ecological stoichiometry is considered a key concept in understanding con-straints in energy transfer at the plant-herbivore interface. However, whether this con-cept is relevant for benthic freshwater ecosystems is not fully known. Therefore, afield survey was conducted in 2003 during the growing season in the littoral zone ofLake Constance, a large pre-alpine lake in central Europe. The aim was to assess tem-poral variation in the elemental stoichiometric composition in both herbivorous macro-invertebrates and their food resource, the periphyton in two different lakes. The peri-phyton showed large temporal and spatial variation in carbon, nitrogen, and phospho-rus content, with particularly high molar C:P ratios of up to 1225:1. Periphyton C:Pand C:N ratios were often high and constantly above the Redfield ratio that is consid-ered optimal for autotrophic growth. In contrast to the pronounced fluctuations in thenutrient ratios of their food resource, the herbivorous macroinvertebrates showed onlyvery little variation in their nutrient ratios, which indicated that they are homeostatic,i.e., physiologically restricted to a comparatively narrow range of C:P and C:N ratios.Distinct species-specific C : P and C : N ratios were found for different taxonomicgroups of macroinvertebrates, which indicated different requirements of optimal die-tary C:P and C:N ratios and which might influence the ability of the taxa to competefor limiting elemental nutrients. Considering the temporally very high C:P and C:Nratios of the periphytic resource and the very low ratios of the consumer body tissue,this stoichiometric mismatch is likely to constrain growth and reproduction of these lit-toral invertebrates. Therefore, the concept of stoichiometric food quality limitationmight also be applicable to the littoral food web in lakes.Key words: benthos, C:N:P ratio, ecological stoichiometry, herbivory, homeostasis,lake littoral, macroinvertebrates, mismatch, nutrient ratios, phosphorus.
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沿海无脊椎动物和周围植物食物之间的化学计量不匹配
摘要:生态化学计量学被认为是理解植物-食草动物界面能量传递约束的关键概念。然而,这一概念是否与底栖淡水生态系统有关尚不完全清楚。因此,在2003年的生长季节,我们在中欧一个大的前高山湖泊——弗莱克康斯坦斯湖的沿岸地区进行了野外调查。目的是评估两个不同湖泊中草食性大型无脊椎动物及其食物资源——周围植物的元素化学计量组成的时间变化。藻周植物的碳、氮、磷含量呈现出较大的时空变化,其中摩尔C:P比值最高可达1225:1。周围植物的C: p和C:N比率通常很高,并不断高于被认为最适合自养生长的Redfield比率。与它们食物资源中营养成分比例的显著波动相反,食草大型无脊椎动物的营养成分比例只有很小的变化,这表明它们是体内平衡的。在生理上受限于相对狭窄的碳磷和碳氮比范围。大型无脊椎动物不同分类类群的C:P和C:N具有不同的种特异性,说明不同分类类群对最佳食性C:P和C:N的需求不同,这可能影响类群对限制性元素养分的竞争能力。考虑到周边植物资源的C:P和C: n比值暂时非常高,而消费体组织的C:P和C: n比值非常低,这种化学计量不匹配可能会限制这些浮游无脊椎动物的生长和繁殖。因此,化学计量食品质量限制的概念可能也适用于湖泊的沿海食物网。关键词:底栖动物,C:N:P比,生态化学计量学,草食,动态平衡,湖滨,大型无脊椎动物,错配,养分比,磷
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