Department of Biological and Environmental Sciences, University of Jyväskylä Jyväskylä, Finland.
Ecol Evol. 2013 May;3(5):1266-75. doi: 10.1002/ece3.545. Epub 2013 Apr 2.
Phosphorus (P) is an essential nutrient for growth in consumers. P-limitation and parasite infection comprise one of the most common stressor pairs consumers confront in nature. We conducted a life-table study using a Daphnia-microsporidian parasite model, feeding uninfected or infected Daphnia with either P-sufficient or P-limited algae, and assessed the impact of the two stressors on life-history traits of the host. Both infection and P-limitation negatively affected some life-history traits tested. However, under P-limitation, infected animals had higher juvenile growth rate as compared with uninfected animals. All P-limited individuals died before maturation, regardless of infection. The numbers of spore clusters of the microsporidian parasite did not differ in P-limited or P-sufficient hosts. P-limitation, but not infection, decreased body phosphorus content and ingestion rates of Daphnia tested in separate experiments. As parasite spore production did not suffer even under extreme P-limitation, our results suggest that parasite was less limited by P than the host. We discuss possible interpretations concerning the stoichiometrical demands of parasite and suggest that our results are explained by parasite-driven changes in carbon (C) allocation of the hosts. We conclude that the impact of nutrient starvation and parasite infection on consumers depends not only on the stoichiometric demands of host but also those of the parasite.
磷(P)是消费者生长所必需的营养物质。在自然界中,消费者面临的最常见的应激源对之一是 P 限制和寄生虫感染。我们使用水蚤-微孢子虫寄生虫模型进行了生命表研究,用 P 充足或 P 限制藻类喂养未感染或感染的水蚤,并评估了这两个应激源对宿主生活史特征的影响。感染和 P 限制都对一些经过测试的生活史特征产生了负面影响。然而,在 P 限制下,与未感染的动物相比,感染动物的幼体生长速度更高。所有 P 限制个体都在成熟前死亡,无论是否感染。微孢子虫寄生虫的孢子簇数量在 P 限制或 P 充足的宿主中没有差异。在单独的实验中,P 限制而不是感染降低了水蚤的体磷含量和摄食率。由于即使在极端 P 限制下,寄生虫的孢子产生也没有受到影响,我们的结果表明寄生虫受 P 的限制比宿主少。我们讨论了关于寄生虫化学计量需求的可能解释,并提出我们的结果可以用宿主的碳(C)分配的寄生虫驱动变化来解释。我们得出结论,营养饥饿和寄生虫感染对消费者的影响不仅取决于宿主的化学计量需求,还取决于寄生虫的化学计量需求。