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Spatiotemporal variation in the sign and magnitude of ecosystem engineer effects on lake ecosystem production

机译:生态系统生产生态系统工程效果的迹象变异

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Ecosystem engineers can have diverse and conflicting effects on their ecosystems, and the balance between these effects can depend on the physical environment. This context dependence means that environmental variation can produce large differences in engineer effects through space and time. Here, we explore how local variability in environmental conditions can lead to large spatiotemporal variation in the effect of tube‐building midges on benthic ecosystem metabolism in a shallow subarctic lake. Using field experiments, we found that midge engineering increases both gross primary production ( GPP ) and respiration ( RESP ) in the sediment. Gross primary production and RESP have opposing influences on net ecosystem production, and the net effect of midges on the benthic ecosystem depends on the balance between their effects on GPP and RESP . Variation in light mediates this balance—under high light conditions, primary producers are able to exploit the structural benefits provided by midges, while in the dark, the elevation of respiration from midge engineering predominates. Benthic light levels vary spatially and temporally due to episodic cyanobacterial blooms that prevent almost all light from reaching the benthos. By quantifying the nonlinear relationship between midge engineering and light, we were able to project ecosystem‐wide consequences of natural variation in light conditions across the lake. Our results illustrate how the sign and magnitude of ecosystem‐wide effects of ecosystem engineers can vary through space and time.
机译:生态系统工程师可以对其生态系统产生多种和相互矛盾的影响,这些效果之间的平衡可以取决于物理环境。这种上下文依赖意味着环境变异可以通过空间和时间产生工程师效应的大差异。在这里,我们探讨了环境条件的局部变异如何导致管楼中介在浅亚古氏湖中底栖生态系统代谢的影响的大量时空变化。使用现场实验,我们发现MIDGE工程在沉积物中增加了总初级生产(GPP)和呼吸(RESP)。总初级生产和resp对净生态系统生产的影响,中介在底栖生态系统上的净效应取决于它们对GPP和REAC的影响之间的平衡。光的变化在高光条件下调解了这种平衡,主要生产者能够利用中床提供的结构益处,而在黑暗中,呼吸从中途工程占主导地位。由于显着的蓝藻绽放,底部光线水平在空间上变化,暂时变化,这使得几乎所有光线到达Benthos。通过量化MIDGE工程和光线之间的非线性关系,我们能够在湖面的轻微条件下对生态系统的自然变化进行预测。我们的结果说明了生态系统工程师的生态系统范围内效果的标志和程度如何都可以通过空间和时间来不同。

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