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首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Testing the relative importance of intertidal seaweeds as ecosystem engineers across tidal heights
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Testing the relative importance of intertidal seaweeds as ecosystem engineers across tidal heights

机译:测试潮间带海藻作为潮汐生态系统工程师的相对重要性

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摘要

The persistence of seaweeds as community-structuring organisms is critical for the maintenance of many ecosystem functions on rocky intertidal shores. We measured the relative importance of seaweeds in structuring the abundance, richness, and distribution of macroinvertebrates at three tidal levels on a rocky shore. Through manipulative experiments, we characterized temperature, irradiance, and desiccation underneath seaweed canopy plots made up of either Silvetia compressa or Stephanocystis dioica, assembled at three biomasses. We assessed differences in the abundance, richness, and the distribution of macroinvertebrates underneath the canopy as a function of seaweed species and biomass and evaluated differences due to the tidal height of the installed experimental seaweeds. We found that manipulated seaweed biomass significantly affected the community structure of associated macroinvertebrates at all tidal levels, especially at higher biomass treatments. Although contrary to other studies, we found no effect on richness underneath the canopies at any tidal height. Our results show that intertidal seaweeds provide protection from water loss, heat, and irradiance when compared to manipulative controls with no canopy cover. We also found that the relative importance of the experimental seaweed canopies in their ability to mitigate stressful abiotic conditions increased with prolonged emersion periods, such as at higher levels in the intertidal zone. At the higher tidal level tested, a greater abundance of macroinvertebrates was associated with the experimental canopies in comparison to the manipulation-control plots and the natural substrate. These results emphasize the role of intertidal seaweeds as bioengineers and highlight the importance of preserving and restoring high densities of leathery seaweeds on degraded shores in order to preserve the dynamics of the intertidal ecosystem overall.
机译:海藻作为群落结构生物的持久性对于在潮间带岩石海岸维持许多生态系统功能至关重要。我们测量了海藻在构造多岩石海岸的三个潮汐水平上的大型无脊椎动物的丰度,丰富度和分布方面的相对重要性。通过操纵性实验,我们对海藻冠层下的温度,辐照度和干燥度进行了表征,该海藻冠层由可压缩的Silvetia compressa或Stephanocystis dioica组成,并以三种生物量组装而成。我们根据海藻种类和生物量评估了冠层下大型无脊椎动物的丰度,丰富度和分布的差异,并评估了由于安装的实验性海藻的潮汐高度而引起的差异。我们发现,在所有潮汐水平上,特别是在较高的生物量处理条件下,操纵的海藻生物量均会显着影响相关大型无脊椎动物的群落结构。尽管与其他研究相反,我们发现在任何潮汐高度下,冠层下的丰富度均无影响。我们的结果表明,与没有遮盖物的操纵性控件相比,潮间带海藻可防止水分流失,热量和辐照。我们还发现,实验性海藻冠层在缓解胁迫性非生物条件方面的相对重要性会随着出苗期的延长而增加,例如潮间带较高的水平。在较高的潮汐测试水平下,与操纵控制样地和天然基质相比,大型无脊椎动物与实验冠层相关。这些结果强调了潮间带海藻作为生物工程者的作用,并强调了在退化海岸上保存和恢复高密度皮革状海带的重要性,以保持整个潮间带生态系统的动态。

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