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贝斯山湖中鱼类对大型植物的间接影响:沿岸营养级联的证据

Indirect effects of fish on macrophytes in Bays Mountain Lake: evidence for a littoral trophic cascade.

作者信息

Martin T H, Crowder L B, Dumas C F, Burkholder J M

机构信息

Department of Zoology, North Carolina State University, 27695, Raleigh, NC, USA.

Department of Botany, North Carolina State University, 27695, Raleigh, NC, USA.

出版信息

Oecologia. 1992 Apr;89(4):476-481. doi: 10.1007/BF00317152.

Abstract

We began this experiment to test specific hypotheses regarding direct and indirect effects of fish predation on the littoral macroinvertebrate community of Bays Mountain Lake, Tennessee. We used 24 m enclosures in which we manipulated the presence and absence of large redear sunfish (Lepomis microlophus>150 mm SL), and small sunfish (L. macrochirus and L. microlophus <50 mm SL) over a 16-mo period. Here we report on effects of fish predation on gastropod grazers that appear to cascade to periphyton and macrophytes.Both large redear sunfish and small sunfish maintained low snail biomass, but snails in fish-free controls increased significantly during the first 2-mo of the experiment. By late summer of the first year of the experiment, the difference in biomass between enclosures with and without fish had increased dramatically (>10×). Midway through the second summer of the experiment, we noted apparent differences in the abundance of periphyton between enclosures containing fish and those that did not. We also noted differences in the macrophyte distribution among enclosures. To document these responses, we estimated periphyton cover, biovolume and cell size frequencies as well as macrophyte distributions among enclosures at the end of the experiment. When fish were absent, periphyton percent cover was significantly reduced compared to when fish were present. Periphyton cell-size distributions in enclosures without fish were skewed toward small cells (only 12% were greater than 200 m), which is consistent with intense snail grazing. The macrophyte Najas flexilis had more than 60 x higher biomass in the fish-free enclosures than in enclosures containing fish; Potamogeton diversifolius was found only in fish-free enclosures. These results suggest a chain of strong interactions (i.e. from fish to snails to periphyton to macrophytes) that may be important in lake littoral systems. This contrasts sharply with earlier predictions based on cascading trophic interactions that propose that fish predation on snails would enhance macrophyte biomass.

摘要

我们开展这项实验是为了检验关于鱼类捕食对田纳西州贝斯山湖沿岸大型无脊椎动物群落的直接和间接影响的特定假设。我们使用了24个围隔,在16个月的时间里,对大型红耳太阳鱼(长吻太阳鱼,体长>150毫米)以及小型太阳鱼(大口黑鲈和长吻太阳鱼,体长<50毫米)的有无进行了操控。在此,我们报告鱼类捕食对腹足类食草动物的影响,这种影响似乎会级联到周丛生物和大型植物。大型红耳太阳鱼和小型太阳鱼都使蜗牛生物量维持在较低水平,但在实验的前两个月,无鱼对照中的蜗牛数量显著增加。到实验第一年的夏末,有鱼围隔和无鱼围隔之间的生物量差异急剧增大(>10倍)。在实验的第二个夏天中期,我们注意到有鱼围隔和无鱼围隔之间周丛生物丰度存在明显差异。我们还注意到围隔之间大型植物分布的差异。为了记录这些反应,我们在实验结束时估计了围隔中的周丛生物覆盖度、生物体积和细胞大小频率以及大型植物分布。无鱼时,与有鱼时相比,周丛生物的覆盖百分比显著降低。无鱼围隔中的周丛生物细胞大小分布偏向小细胞(只有12%大于200微米),这与蜗牛的强烈啃食一致。无鱼围隔中的柔叶茨藻生物量比有鱼围隔中的高出60多倍;仅在无鱼围隔中发现了具不同叶形眼子菜。这些结果表明存在一系列强烈的相互作用(即从鱼到蜗牛到周丛生物到大型植物),这在湖泊沿岸系统中可能很重要。这与早期基于级联营养相互作用的预测形成鲜明对比,早期预测认为鱼类捕食蜗牛会增加大型植物生物量。

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