Howeth Jennifer G, Leibold Mathew A
Section of Integrative Biology, University of Texas at Austin, 1 University Station C0930, Austin, TX 78712, USA.
Ecol Lett. 2008 Mar;11(3):245-57. doi: 10.1111/j.1461-0248.2007.01143.x. Epub 2007 Dec 7.
Trophic cascades, in which changes in predation affect the biomass of lower trophic levels, vary substantially in strength and incidence. Most work to explain this variation has focused on local factors and has ignored larger regional effects. To study how metacommunity dynamics can alter trophic cascades, we constructed mesocosm metacommunities consisting of three pond communities with heterogeneous levels of fish predation and examined how planktonic dispersal rate (5-140% per week) affected biomass partitioning. Two of the three communities differed continually in the occurrence of fish and supported different but constant environments in a 'spatial trophic cascade,' while the third community supported temporally variable fish occurrence in a 'temporal trophic cascade.' We find that the presence, but the not the magnitude, of dispersal dampens temporal trophic cascades through an increase in grazer biomass. In contrast, dispersal has no effect on the strength of spatial cascades due to strong sorting pressures in the communities with constant presence or absence of fish as top predators.
营养级联反应是指捕食行为的变化会影响较低营养级的生物量,其强度和发生率差异很大。大多数解释这种差异的研究都集中在局部因素上,而忽略了更大范围的区域影响。为了研究集合群落动态如何改变营养级联反应,我们构建了中宇宙集合群落,该群落由三个池塘群落组成,鱼类捕食水平各不相同,并研究了浮游生物扩散率(每周5%-140%)如何影响生物量分配。在“空间营养级联反应”中,三个群落中的两个群落鱼类的出现情况持续不同,并支持不同但稳定的环境,而第三个群落在“时间营养级联反应”中支持鱼类出现的时间变化。我们发现,扩散的存在(而非扩散的程度)通过增加食草动物生物量减弱了时间营养级联反应。相比之下,由于顶级捕食者鱼类持续存在或不存在的群落中存在强大的分选压力,扩散对空间级联反应的强度没有影响。