Grunberg Rita L, Anderson David M
Am Nat. 2022 Feb;199(2):266-276. doi: 10.1086/717430. Epub 2021 Dec 15.
AbstractParasites are thought to play a role in ecosystem energetics, in part because some ecosystems harbor a substantial amount of parasite biomass. Nevertheless, the extent to which parasite biomass accurately reflects the flow of energy from hosts to parasites-and the linkages between their energetics-remains unclear. Here, we estimate parasite community energetics at the host and ecosystem level and test predictions for parasite energetics using the metabolic theory of ecology. Across 27 host species, parasite community abundance declines with average individual parasite energy use as and increases with host metabolic rate as , which is inconsistent with metabolic theory. We next test whether the fraction of host energy that is allocated to parasitism is invariant across hosts. Our empirical analysis demonstrates that 85% of the variation in parasite community energy use can be explained by differences in host metabolic rate. However, parasite community energy use increases allometrically with host metabolic rate as , suggesting that the fraction of host energy used by parasites declines with host metabolic rate. At the ecosystem level, we show that the energy flowing through parasite communities scales allometrically with the total rate of energy use by their fish hosts across three ecosystems. Importantly, directly examining energy flux revealed variation in parasite energy use among ecosystems that was not apparent when examining differences in biomass. Taken together, these results establish strong empirical links between host and parasite energetics, but our findings often did not align with predictions based on metabolic theory.
摘要
寄生虫被认为在生态系统能量学中发挥作用,部分原因是一些生态系统中存在大量的寄生虫生物量。然而,寄生虫生物量准确反映能量从宿主流向寄生虫的程度以及它们能量学之间的联系仍不清楚。在这里,我们估计宿主和生态系统水平上的寄生虫群落能量学,并使用生态代谢理论检验寄生虫能量学的预测。在27个宿主物种中,寄生虫群落丰度随着个体寄生虫平均能量使用量的增加而下降,随着宿主代谢率的增加而增加,这与代谢理论不一致。接下来,我们测试分配给寄生作用的宿主能量比例在不同宿主之间是否不变。我们的实证分析表明,寄生虫群落能量使用量的85% 的变化可以由宿主代谢率的差异来解释。然而,寄生虫群落能量使用量随着宿主代谢率的增加呈异速增长,这表明寄生虫使用的宿主能量比例随着宿主代谢率的增加而下降。在生态系统水平上,我们表明,在三个生态系统中,流经寄生虫群落的能量与它们的鱼类宿主的总能量使用速率呈异速比例关系。重要的是,直接检查能量通量揭示了不同生态系统中寄生虫能量使用的差异,而在检查生物量差异时并不明显。综上所述,这些结果在宿主和寄生虫能量学之间建立了强有力的实证联系,但我们的研究结果往往与基于代谢理论的预测不一致。