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Experimental species removal alters ecological dynamics in a natural ecosystem

机译:实验性物种清除改变了自然生态系统中的生态动力学

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Theory predicts that species extinction or invasion can affect the temporal dynamics of ecological communities by altering feedback patterns and by damping or amplifying environmental variation via changes in the network of species interactions, but because of the logistical challenges of investigating temporal dynamics,. evidence from natural ecosystems is lacking. In a long-term experimental manipulation of a rocky intertidal community on Tatoosh Island, Washington, USA, chronic removal of the dominant species Mytilus californianus altered the dynamics of the system, causing reductions in the temporal variability of three subdominant species but no consistent change in the spectral characteristics or the order of density dependence across experimental replicates. This pattern of results Suggests that Mytilus californianus impacted the temporal dynamics by amplifying environmental stochasticity, rather than by changing feedback pathways as is emphasized in most theoretical predictions and laboratory studies. Hence, further investigation of the mechanisms and implications of transmission of environmental stochasticity in natural ecosystems is merited.
机译:理论预测,物种灭绝或入侵可通过改变反馈模式,并通过物种相互作用网络的变化来抑制或放大环境变化,从而影响生态群落的时间动态,但由于研究时间动态的后勤挑战,因此。缺乏来自自然生态系统的证据。在美国华盛顿州塔托什岛上的岩石潮间带群落的长期实验操作中,优势物种Mytilus californianus的长期清除改变了系统的动态,导致三种主要物种的时间变异性降低,但在三者中没有一致的变化。实验复制品的光谱特征或密度依赖性的顺序。这种结果模式表明,Mytilus californianus通过扩大环境的随机性而不是像大多数理论预测和实验室研究所强调的那样通过改变反馈途径来影响时间动态。因此,有必要进一步研究自然生态系统中环境随机性传播的机制和含义。

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