首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >Differences in root architecture influence attraction of fishes to mangroves: A field experiment mimicking roots of different length, orientation, and complexity
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Differences in root architecture influence attraction of fishes to mangroves: A field experiment mimicking roots of different length, orientation, and complexity

机译:根系结构的差异会影响鱼类对红树林的吸引力:模拟不同长度,方向和复杂度的根系的田间试验

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摘要

Benthic structure plays an important role as shelter and feeding habitat for demersal fauna. While many studies have investigated the relationship between structural complexity of aquatic vegetation and the number of species or abundance of motile organisms, little is known of the attractiveness of submerged mangrove roots. We tested the importance of various root attributes in attracting fish species in a field experiment using different artificial mangrove units (AMUs) with PVC pipes mimicking roots to exclude interaction with other environmental and biotic factors. We manipulated length, vertical orientation, and three-dimensional structural complexity of root mimics in the AMUs to explore their effects on the fish community variables: fish abundance, number of species and community composition. Pipe length and three-dimensional structure did not have an effect on fish community variables. Vertical pipe orientation had a significant effect and AMUs with standing pipes showed higher total fish abundances and number of species than AMUs with hanging pipes. Also community composition differed greatly between AMUs with standing versus hanging pipes. At species level, demersal fish species mainly occupied AMUs with standing pipes and occurred only at very low abundances when hanging pipes dominated in the AMUs; in contrast, the semi-pelagic swimmer Sphyraena barracuda showed a trend of higher abundance in AMUs with mainly hanging pipes. When analyzed across all AMUs, fish abundances of demersal as well as semi-pelagic species decreased significantly with increasing interspatial pipe distance among AMUs, suggesting that distance to refuge may be the underlying mechanism for the observed patterns. The above findings are important in the context of the worldwide degradation of mangroves, because human alteration to mangrove vegetation affects its structure and thus composition and size of fish communities.
机译:底栖结构在为海底动物提供庇护和觅食栖息地方面发挥着重要作用。尽管许多研究调查了水生植被的结构复杂性与活动物种的数量或种类之间的关系,但人们对淹没的红树林根系的吸引力知之甚少。我们在田间试验中使用不同的人工红树林单元(AMU)和模仿根部的PVC管来排除与其他环境和生物因素的相互作用,测试了各种根部属性对吸引鱼类的重要性。我们在AMU中操纵了根模拟物的长度,垂直方向和三维结构复杂性,以研究它们对鱼类群落变量的影响:鱼类丰度,物种数量和群落组成。管道长度和三维结构对鱼类群落变量没有影响。垂直管的定向有显着影响,立管的AMU的鱼总丰度和种类数比吊管的AMU高。此外,立式和悬挂式AMU之间的社区组成也有很大差异。在物种一级,沉水鱼类物种主要是由带有立管的AMU占据,只有在AMU中悬挂管子占主导地位时才以极低的丰度发生。相比之下,半浮游游泳者梭鱼(Sphyraena barracuda)在主要悬挂管道的AMU中显示出更高的丰度趋势。在所有AMU上进行分析时,随着AMU之间空间管间距的增加,沉鱼和半上层鱼类的丰度显着下降,这表明到避难所的距离可能是观察模式的潜在机制。上述发现对于全球范围内红树林的退化至关重要,因为人类对红树林植被的改变会影响其结构,进而影响鱼类群落的组成和大小。

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    Radboud University Nijmegen, Institute for Water and Wetland Research, Department of Animal Ecology and Ecophysiology,Heyendaalseweg 135, P.O. Box 9010, 6500 CL Nijmegen, The Netherlands;

    Laboratory of Plant Biology and Nature Management, Department of Biology, Faculty of Science and Bio-engineering Science,Vrije Universiteit Brussel, VUB, Pleinlaan 2, B-W50 Brussels, Belgium,Institute for Environmental Engineering, ETH Zurich, HIF C44 ETH-Honggerberg, 8093 Zurich, Switzerland.;

    Radboud University Nijmegen, Institute for Water and Wetland Research, Department of Animal Ecology and Ecophysiology,Heyendaalseweg 135, P.O. Box 9010, 6500 CL Nijmegen, The Netherlands;

    Laboratory of Plant Biology and Nature Management, Department of Biology, Faculty of Science and Bio-engineering Science,Vrije Universiteit Brussel, VUB, Pleinlaan 2, B-W50 Brussels, Belgium,Laboratory of Complexity and Dynamics of Tropical Systems, Dipartement de Biologie des Organismes, Faculti des Sciences,Universite Libre de Bruxelles - ULB, Av. F.D. Roosevelt 50, B-1050 Brussels, Belgium;

    Radboud University Nijmegen, Institute for Water and Wetland Research, Department of Animal Ecology and Ecophysiology,Heyendaalseweg 135, P.O. Box 9010, 6500 CL Nijmegen, The Netherlands,Netherlands Centre for Biodiversity Naturalis, P.O. Box 9517,2300 RA Leiden, The Netherlands;

    Laboratory of Plant Biology and Nature Management, Department of Biology, Faculty of Science and Bio-engineering Science,Vrije Universiteit Brussel, VUB, Pleinlaan 2, B-W50 Brussels, Belgium;

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  • 正文语种 eng
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  • 关键词

    artificial mangrove units; caribbean; coral reef fish; habitat use; structural complexity;

    机译:人工红树林单元;加勒比海;珊瑚鱼;栖息地利用;结构复杂性;

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