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干扰对湖泊食物网的功能可逆影响与空间和季节性依赖性有关。

Functionally reversible impacts of disturbances on lake food webs linked to spatial and seasonal dependencies.

机构信息

Limnology, Department of Ecology and Genetics, Evolutionary Biology Center, Uppsala University, Norbyvägen 18D, Uppsala, Sweden.

Helmholtz Institute for Functional Marine Biodiversity (HIFMB), Ammerländer Heerstrasse 231, Oldenburg, 26129, Germany.

出版信息

Ecology. 2021 Apr;102(4):e03283. doi: 10.1002/ecy.3283. Epub 2021 Feb 28.

Abstract

Increasing human impact on the environment is causing drastic changes in disturbance regimes and how they prevail over time. Of increasing relevance is to further our understanding on biological responses to pulse disturbances (short duration) and how they interact with other ongoing press disturbances (constantly present). Because the temporal and spatial contexts of single experiments often limit our ability to generalize results across space and time, we conducted a modularized mesocosm experiment replicated in space (five lakes along a latitudinal gradient in Scandinavia) and time (two seasons, spring and summer) to generate general predictions on how the functioning and composition of multitrophic plankton communities (zoo-, phyto- and bacterioplankton) respond to pulse disturbances acting either in isolation or combined with press disturbances. As pulse disturbance, we used short-term changes in fish presence, and as press disturbance, we addressed the ongoing reduction in light availability caused by increased cloudiness and lake browning in many boreal and subarctic lakes. First, our results show that the top-down pulse disturbance had the strongest effects on both functioning and composition of the three trophic levels across sites and seasons, with signs for interactive impacts with the bottom-up press disturbance on phytoplankton communities. Second, community composition responses to disturbances were highly divergent between lakes and seasons: temporal accumulated community turnover of the same trophic level either increased (destabilization) or decreased (stabilization) in response to the disturbances compared to control conditions. Third, we found functional recovery from the pulse disturbances to be frequent at the end of most experiments. In a broader context, these results demonstrate that top-down, pulse disturbances, either alone or with additional constant stress upon primary producers caused by bottom-up disturbances, can induce profound but often functionally reversible changes across multiple trophic levels, which are strongly linked to spatial and temporal context dependencies. Furthermore, the identified dichotomy of disturbance effects on the turnover in community composition demonstrates the potential of disturbances to either stabilize or destabilize biodiversity patterns over time across a wide range of environmental conditions.

摘要

人类对环境的影响不断增加,正在导致干扰机制发生剧烈变化,以及这些变化随时间的推移如何占主导地位。越来越重要的是,我们需要进一步了解生物对脉冲干扰(短暂持续时间)的反应,以及它们如何与其他持续存在的压力干扰(持续存在)相互作用。由于单个实验的时间和空间背景往往限制了我们将结果推广到空间和时间的能力,因此我们进行了模块化中观实验,该实验在空间(斯堪的纳维亚的五个湖泊沿纬度梯度)和时间(两个季节,春季和夏季)上进行了复制,以生成有关多营养浮游生物群落(动物区系,植物区系和细菌区系)功能和组成如何对单独或组合作用的脉冲干扰做出反应的一般预测。作为脉冲干扰,我们使用鱼类存在的短期变化,而作为压力干扰,我们解决了由于云层增加和许多北方和亚北极湖泊变棕而导致的光照可用性持续减少的问题。首先,我们的结果表明,自上而下的脉冲干扰对所有站点和季节的三个营养级的功能和组成均具有最强的影响,并显示出与底向上压力干扰对浮游植物群落的相互影响。其次,干扰对群落组成的响应在湖泊和季节之间差异很大:与对照条件相比,同一营养级别的时间累积群落周转率在受到干扰时要么增加(失稳),要么减少(稳定)。第三,我们发现,在大多数实验结束时,脉冲干扰后的功能恢复经常发生。从更广泛的角度来看,这些结果表明,自上而下的脉冲干扰,无论是单独作用还是与底向上的干扰对初级生产者造成的额外持续压力共同作用,都可以在多个营养级上引起深刻但通常具有功能可逆性的变化,这些变化与空间和时间背景依赖性密切相关。此外,干扰对群落组成周转率的影响的二分法表明,干扰有可能在一段时间内稳定或破坏生物多样性模式,具体取决于广泛的环境条件。

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