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南加州海带森林生态系统中强大的自上而下的控制。

Strong top-down control in southern California kelp forest ecosystems.

作者信息

Halpern Benjamin S, Cottenie Karl, Broitman Bernardo R

机构信息

National Center for Ecological Analysis and Synthesis, 735 State Street, Santa Barbara, CA 93101, USA.

出版信息

Science. 2006 May 26;312(5777):1230-2. doi: 10.1126/science.1128613.

Abstract

Global-scale changes in anthropogenic nutrient input into marine ecosystems via terrestrial runoff, coupled with widespread predator removal via fishing, have created greater urgency for understanding the relative role of top-down versus bottom-up control of food web dynamics. Yet recent large-scale studies of community regulation in marine ecosystems have shown dramatically different results that leave this issue largely unresolved. We combined a multiyear, large-scale data set of species abundances for 46 species in kelp forests from the California Channel Islands with satellite-derived primary production and found that top-down control explains 7- to 10-fold more of the variance in abundance of bottom and mid-trophic levels than does bottom-up control. This top-down control was propagated via a variety of species-level direct and indirect responses to predator abundance. Management of top-down influences such as fishing may be more important in coastal marine ecosystems, particularly in kelp forest systems, than is commonly thought.

摘要

通过陆地径流进入海洋生态系统的人为营养输入的全球尺度变化,再加上通过捕鱼导致的广泛的捕食者移除,使得理解食物网动态中自上而下与自下而上控制的相对作用变得更加紧迫。然而,最近对海洋生态系统群落调控的大规模研究显示出截然不同的结果,这使得这个问题在很大程度上仍未得到解决。我们将来自加利福尼亚海峡群岛海带森林中46个物种的多年大规模物种丰度数据集与卫星衍生的初级生产力相结合,发现自上而下的控制比自下而上的控制能解释低营养级和中营养级丰度变化的7至10倍。这种自上而下的控制是通过对捕食者丰度的各种物种层面的直接和间接反应来传播的。在沿海海洋生态系统,特别是海带森林系统中,诸如捕鱼等自上而下影响的管理可能比通常认为的更为重要。

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