Department of Fisheries and Wildlife, Michigan State University, East Lansing, MI 48824, USA.
Proc Biol Sci. 2012 Jan 7;279(1726):122-8. doi: 10.1098/rspb.2011.0606. Epub 2011 May 18.
Non-consumptive effects (NCEs) of predators owing to induced changes in prey traits are predicted to influence the structure of ecological communities. However, evidence of the importance of NCEs is limited primarily to simple systems (e.g. two to four species) over relatively short periods (e.g. less than one generation). We examined the NCEs of a fish predator, arising from phenotypic plasticity in zooplankton prey traits, over multiple generations of a diverse zooplankton community. The presence of fish, caged to remove consumptive effects, strongly influenced zooplankton community structure, through both direct and indirect NCE pathways, altering the abundance of many taxa by magnitudes as large as 3 to 10-fold. Presence of fish affected different species of cladocerans and copepods both positively and negatively. A particularly striking result was the reversal of dominance in copepod taxa: presence of fish reduced the ratio of calanoids to cyclopoids from 6.3 to 0.43. Further, the NCE of fish had a strong negative trophic cascade to zooplankton resources (phytoplankton). To our knowledge, this is the first experiment to show that NCEs can influence the abundance of multiple prey species over time spans of multiple prey generations. Our findings demonstrate that adaptive phenotypic plasticity of individuals can scale-up to affect the structure of ecological communities.
捕食者的非消耗性效应(NCEs)归因于猎物特征的诱导变化,预计会影响生态群落的结构。然而,NCEs 的重要性的证据主要局限于简单的系统(例如,两种到四种物种)和相对较短的时间(例如,不到一代)。我们研究了鱼类捕食者的 NCEs,这些 NCEs 源于浮游动物猎物特征的表型可塑性,跨越了一个多样化的浮游动物群落的多个世代。有鱼的存在,通过笼子来消除消耗性影响,通过直接和间接的 NCE 途径强烈影响浮游动物群落结构,通过将许多分类群的丰度改变高达 3 到 10 倍来改变许多分类群的丰度。鱼类的存在对桡足类和枝角类的不同物种都有正、负两方面的影响。一个特别引人注目的结果是桡足类分类群的优势逆转:有鱼存在将桡足类与哲水蚤的比例从 6.3 降低到 0.43。此外,鱼类的 NCE 对浮游动物资源(浮游植物)产生了强烈的负营养级联效应。据我们所知,这是第一个表明 NCEs 可以随时间影响多个猎物物种丰度的实验。我们的发现表明,个体的适应性表型可塑性可以扩展到影响生态群落的结构。