Community and Conservation Ecology Group, Centre for Ecological and Evolutionary Studies, Groningen University, Haren, The Netherlands.
PLoS One. 2011 Jan 24;6(1):e16504. doi: 10.1371/journal.pone.0016504.
Positive feedbacks cause a nonlinear response of ecosystems to environmental change and may even cause bistability. Even though the importance of feedback mechanisms has been demonstrated for many types of ecosystems, their identification and quantification is still difficult. Here, we investigated whether positive feedbacks between seagrasses and light conditions are likely in seagrass ecosystems dominated by the temperate seagrass Zostera marina. We applied a combination of multiple linear regression and structural equation modeling (SEM) on a dataset containing 83 sites scattered across Western Europe. Results confirmed that a positive feedback between sediment conditions, light conditions and seagrass density is likely to exist in seagrass ecosystems. This feedback indicated that seagrasses are able to trap and stabilize suspended sediments, which in turn improves water clarity and seagrass growth conditions. Furthermore, our analyses demonstrated that effects of eutrophication on light conditions, as indicated by surface water total nitrogen, were on average at least as important as sediment conditions. This suggests that in general, eutrophication might be the most important factor controlling seagrasses in sheltered estuaries, while the seagrass-sediment-light feedback is a dominant mechanism in more exposed areas. Our study demonstrates the potentials of SEM to identify and quantify positive feedbacks mechanisms for ecosystems and other complex systems.
正反馈会导致生态系统对环境变化的非线性响应,甚至可能导致双稳性。尽管反馈机制的重要性已经在许多类型的生态系统中得到了证明,但它们的识别和量化仍然很困难。在这里,我们研究了在以温带海草大叶藻(Zostera marina)为主的海草生态系统中,海草与光照条件之间是否存在正反馈。我们应用了多元线性回归和结构方程模型(SEM)的组合,对包含分布在西欧 83 个地点的数据进行了分析。结果证实,海草生态系统中沉积物条件、光照条件和海草密度之间很可能存在正反馈。这种反馈表明,海草能够捕获和稳定悬浮沉积物,从而改善水质和海草生长条件。此外,我们的分析表明,富营养化对光照条件的影响(以地表水总氮表示)平均至少与沉积物条件一样重要。这表明,在一般情况下,富营养化可能是控制遮蔽河口海草的最重要因素,而海草-沉积物-光照反馈是更暴露地区的主要机制。我们的研究表明,SEM 有潜力识别和量化生态系统和其他复杂系统中的正反馈机制。