Fey Samuel B, Mertens Andrew N, Cottingham Kathryn L
Department of Biological Sciences, Dartmouth College, Hanover, NH, USA,
Oecologia. 2015 Jul;178(3):875-85. doi: 10.1007/s00442-015-3279-5. Epub 2015 Mar 13.
While ecologists primarily focus on the immediate impact of ecological subsidies, understanding the importance of ecological subsidies requires quantifying the long-term temporal dynamics of subsidies on recipient ecosystems. Deciduous leaf litter transferred from terrestrial to aquatic ecosystems exerts both immediate and lasting effects on stream food webs. Recently, deciduous leaf additions have also been shown to be important subsidies for planktonic food webs in ponds during autumn; however, the inter-seasonal effects of autumn leaf subsidies on planktonic food webs have not been studied. We hypothesized that autumn leaf drop will affect the spring dynamics of freshwater pond food webs by altering the availability of resources, water transparency, and the metabolic state of ponds. We created leaf-added and no-leaf-added field mesocosms in autumn 2012, allowed mesocosms to ice-over for the winter, and began sampling the physical, chemical, and biological properties of mesocosms immediately following ice-off in spring 2013. At ice-off, leaf additions reduced dissolved oxygen, elevated total phosphorus concentrations and dissolved materials, and did not alter temperature or total nitrogen. These initial abiotic effects contributed to higher bacterial densities and lower chlorophyll concentrations, but by the end of spring, the abiotic environment, chlorophyll and bacterial densities converged. By contrast, zooplankton densities diverged between treatments during the spring, with leaf additions stimulating copepods but inhibiting cladocerans. We hypothesized that these differences between zooplankton orders resulted from resource shifts following leaf additions. These results suggest that leaf subsidies can alter both the short- and long-term dynamics of planktonic food webs, and highlight the importance of fully understanding how ecological subsidies are integrated into recipient food webs.
虽然生态学家主要关注生态补贴的直接影响,但要理解生态补贴的重要性,需要量化补贴对受援生态系统的长期时间动态。从陆地转移到水生生态系统的落叶对溪流食物网产生即时和持久的影响。最近,落叶添加也被证明是秋季池塘浮游食物网的重要补贴;然而,秋季落叶补贴对浮游食物网的季节间影响尚未得到研究。我们假设秋季落叶会通过改变资源可用性、水透明度和池塘的代谢状态来影响淡水池塘食物网的春季动态。我们在2012年秋季创建了添加树叶和不添加树叶的田间中宇宙,让中宇宙在冬季结冰,并在2013年春季冰融化后立即开始对中宇宙的物理、化学和生物学特性进行采样。在冰融化时,添加树叶降低了溶解氧,提高了总磷浓度和溶解物质,并且没有改变温度或总氮。这些初始的非生物效应导致了更高的细菌密度和更低的叶绿素浓度,但到春季结束时,非生物环境、叶绿素和细菌密度趋于一致。相比之下,春季浮游动物密度在不同处理之间出现差异,添加树叶刺激了桡足类动物,但抑制了枝角类动物。我们假设浮游动物类群之间的这些差异是由添加树叶后资源转移导致的。这些结果表明,树叶补贴可以改变浮游食物网的短期和长期动态,并突出了全面理解生态补贴如何融入受援食物网的重要性。