Acharya Kumud, Kyle Marcia, Elser James J
School of Life Sciences, Arizona State University, Tempe, AZ 85287-4501, USA.
Oecologia. 2004 Feb;138(3):333-40. doi: 10.1007/s00442-003-1444-8. Epub 2004 Jan 10.
Herbivores often encounter nutritional deficiencies in their diets because of low nutrient content of plant biomass. Consumption of various diet items with different nutrient contents can potentially alleviate these nutritional deficiencies. However, most laboratory studies and modeling of herbivorous animals have been done with diets in which all food has uniform nutrient content. It is not clear whether heterogeneous versus uniform food of equal overall nutrient content is of equivalent nutritional value. We tested the effects of dietary mixing on performance of a model organism, Daphnia. We fed two species of Daphnia ( D. galeata, D. pulicaria) with diets of equivalent bulk stoichiometric food quality (C:P) and studied whether they would produce equivalent performance when C:P was uniform among cells or when the diet involved a mixture of high C:P and low C:P cells. Daphnia were fed saturating and limiting concentrations of a uniform food of moderate C:P (UNI) or mixtures (MIX) of high C:P (LOP) and low C:P (HIP) algae prepared to match C:P in UNI. Daphnia were also fed HIP and LOP algae separately. Juvenile growth rate and adult fecundity were measured. D. galeata performance in UNI and MIX treatments did not differ, indicating that partitioning of C and P among particles did not affect dietary quality. Similarly, D. pulicaria's performance was similar in the MIX and UNI treatments but only at low food abundance. In the high food treatment, both growth and reproduction were higher in the MIX treatment, indicating some benefit of a more heterogeneous diet. The mechanisms for this improvement are unclear. Also, food quality affected growth and reproduction even at low food levels for both D. pulicaria and D. galeata. Our results indicate that some species of zooplankton can benefit from stoichiometric heterogeneity on diet.
由于植物生物量的营养成分含量低,食草动物在其饮食中经常会遇到营养不足的情况。食用具有不同营养成分的各种食物项目有可能缓解这些营养不足。然而,大多数关于食草动物的实验室研究和建模都是使用所有食物具有统一营养成分的饮食进行的。目前尚不清楚总体营养成分相同的异质食物与同质食物是否具有同等的营养价值。我们测试了饮食混合对模式生物水蚤性能的影响。我们用具有等效体积化学计量食物质量(碳:磷)的饮食喂养两种水蚤(盔形溞、蚤状溞),并研究当细胞间碳:磷均匀时或饮食涉及高碳:磷和低碳:磷细胞的混合物时,它们是否会产生相同的性能。给水蚤喂食中等碳:磷的均匀食物(UNI)的饱和浓度和限制浓度,或高碳:磷(LOP)和低碳:磷(HIP)藻类的混合物(MIX),这些藻类的制备使其碳:磷与UNI中的碳:磷相匹配。水蚤也分别喂食HIP和LOP藻类。测量了幼体生长率和成年繁殖力。盔形溞在UNI和MIX处理中的性能没有差异,这表明颗粒间碳和磷的分配不影响饮食质量。同样,蚤状溞在MIX和UNI处理中的性能相似,但仅在低食物丰度时如此。在高食物处理中,MIX处理中的生长和繁殖都更高,这表明更异质的饮食有一些益处。这种改善的机制尚不清楚。此外,即使在低食物水平下,食物质量也会影响蚤状溞和盔形溞的生长和繁殖。我们的结果表明,一些浮游动物物种可以从饮食中的化学计量异质性中受益。