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Human disruption of coral reef trophic structure

机译:人类破坏珊瑚礁的营养结构

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摘要

The distribution of biomass among trophic levels provides a theoretical basis for understanding energy flow and the hierarchical structure of animal communities. In the absence of energy subsidies [1], bottom-heavy trophic pyramids are expected to predominate, based on energy transfer efficiency [2] and empirical evidence from multiple ecosystems [3]. However, the predicted pyramid of biomass distribution among trophic levels may be disrupted through trophic replacement by alternative organisms in the ecosystem, trophic cascades, and humans preferentially impacting specific trophic levels [4, 5 and 6]. Using empirical data spanning >250 coral reefs, we show how trophic pyramid shape varies given human-mediated gradients along two orders of magnitude in reef fish biomass. Mean trophic level of the assemblage increased modestly with decreasing biomass, contrary to predictions of fishing down the food web [7]. The mean trophic level pattern is explained by trophic replacement of herbivorous fish by sea urchins at low biomass and the accumulation of slow-growing, large-bodied, herbivorous fish at high biomass. Further, at high biomass, particularly where fishers are not selectively removing higher trophic level individuals, a concave trophic distribution emerges. The concave trophic distribution implies a more direct link between lower and upper trophic levels, which may confer greater energy efficiency. This trophic distribution emerges when community biomass exceeds ∼650 kg/ha, suggesting that fisheries for upper trophic level species will only be supported under lightly fished scenarios.
机译:营养级之间生物量的分布为理解能量流和动物群落的层次结构提供了理论基础。在没有能源补贴的情况下[1],基于能量转移效率[2]和来自多个生态系统的经验证据[3],预计底部沉重的营养金字塔将占主导地位。但是,通过生态系统中其他生物的营养替代,营养级联和人类优先影响特定营养水平的方式,营养水平之间生物量分布的预测金字塔可能会被破坏[4、5和6]。使用跨越超过250个珊瑚礁的经验数据,我们显示了在人类介导的珊瑚鱼生物量沿两个数量级的梯度变化的情况下,营养金字塔的形状是如何变化的。组合的平均营养水平随着生物量的减少而适度增加,这与人们沿着食物网捕鱼的预测相反[7]。平均营养水平模式的解释是,低生物量的海胆用营养替代草食性鱼类,而高生物量的生长缓慢,大体的草食性鱼类积累。此外,在高生物量的情况下,尤其是在渔民没有选择性去除较高营养水平的个体的情况下,会出现凹状营养分布。凹形营养分布意味着较低和较高营养水平之间存在更直接的联系,这可能会带来更高的能源效率。当社区生物量超过650公斤/公顷时,就会出现这种营养分布,这说明只有在轻度捕捞的情况下,才可以支持较高营养级别物种的渔业。

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