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首页> 外文期刊>Estuarine Coastal and Shelf Science >A bio-engineered soft-bottom environment: The impact of Lanice conchilega on the benthic species-specific densities and community structure
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A bio-engineered soft-bottom environment: The impact of Lanice conchilega on the benthic species-specific densities and community structure

机译:生物工程化的软底环境:Lanice conchilega对底栖物种特定密度和群落结构的影响

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This paper evaluates the effect of the tube-building, habitat structuring polychaete Lanice conchilega on the macrobenthic community and sediment characteristics of its habitat. To investigate which factors make species occur in a well-known bio-engineered habitat, macrofaunal and sedimentological data, gathered over a period of 10 years in a shallow, fine sediment bottom of the Belgian Part of the North Sea, were submitted to analyses. Both sediment composition and community structure of the associated macrofaunal matrix were affected by the presence of L. conchilega. The effect of the protruding tubes on hydrodynamics clearly resulted in the retention of fine sediment particles, while the increased coarse fraction was assumed to reflect a dynamic population build-up. This study confirmed that tube aggregations of L. conchilega expand the realized niche of several species without forming their own association. A species rank list was created according to each species' association with L. conchilega. This species rank list is extensively discussed based on all ecological knowledge available. Species are favoured by the habitat modifying ability of the polychaete tubes, which create and regulate refuge for species, alter the interactions between local species and change the physical factors of the environment. This descriptive and correlative data study examines the ecological importance of the bio-engineer L. conchilega on species level.
机译:本文评估了试管的建立,栖息地结构的多毛LanLanice conchilega对大型底栖动物群落及其栖息地沉积物特征的影响。为了调查哪些因素导致物种在著名的生物工程栖息地中发生,将10年内收集在北海比利时部分浅而细的沉积物底部的大型动物和沉积学数据进行了分析。乳杆菌的存在会影响相关大型动物基质的沉积物组成和群落结构。突出管对流体动力学的影响显然导致保留了细小的沉积物颗粒,而增加的粗颗粒率则被认为反映了动态种群的增加。这项研究证实,L。conchilega的管聚集体扩展了几种物种的已实现生态位,而没有形成它们自己的关联。根据每个物种与L. conchilega的关联创建一个物种等级列表。基于所有可用的生态知识,对该物种等级列表进行了广泛讨论。 cha科动物的栖息地改变能力使物种受到青睐,该物种能够创造和调节物种的避难所,改变当地物种之间的相互作用,并改变环境的物理因素。这项描述性和相关性数据研究在物种水平上考察了生物工程师L. conchilega的生态重要性。

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