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Ecological implications of the presence of the tube-building polychaete Lattice conchilega on soft-bottom benthic ecosystems

机译:试管造巢多壳L的存在对软底底生态系统的生态影响

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The common tube-building polychaete Lanice conchilega is known as a habitat structuring species and can form dense aggregations. The effects of L. conchilega on the surrounding benthic community have received little attention, especially in subtidal areas. Therefore, the presence of L. conchilega in different habitats in the North Sea and its effect on the abundance, species richness, diversity and community structure in these habitats are evaluated in the present paper, based on data from the ICES North Sea Benthos Survey of 2000. Lanice conchilega has a wide geographical distribution and a low habitat specialization, but optimally occurs in shallow fine sands. In the present study, the presence of L. conchilega resulted in a density increase and a significant (positive) correlation of the benthos density with the density of L. conchilega. Furthermore, the species richness (number of species) increased with increasing density of L. conchilega. This trend was, however, not consistent: the number of species reached more or less an asymptotic value or even decreased after reaching a critical density of L. conchilega (>500-l,000 ind/m~2), as observed in shallow fine sands. The same overall pattern was detected concerning the expected number of species. The N_1 -diversity index showed similar or slightly higher values in L. conchilega patches compared to patches without L. conchilega. From the results of the community analysis, it can be concluded that the species, which were responsible for the increase of the diversity, belonged to the overall species-pool of that habitat. The effects on density and diversity differed between the four discerned habitats (shallow muddy sand, shallow fine sand, shallow medium sand and deep fine sand), and were most pronounced in shallow fine sands. These patterns can be attributed to the habitat structuring capacity of L. conchilega. The mechanisms responsible for the increase of the habitat quality in patches of L. conchilega can be summarized as (1) changes in the hydrodynamics, (2) increases of the habitat stability and oxygen supply, and (3) a creation of habitat heterogeneity in a uniform environment. In this way, L. conchilega alters the habitat characteristics and affects other organisms, and can therefore even be considered as an ecosystem engineer. In other words, L. conchilega patches are responsible for an increased habitat quality in an otherwise uniform habitat, which results in a higher survival of the surrounding benthic species.
机译:常见的造管多毛Lan Lanice conchilega被称为栖息地构造物种,可以形成密集的聚集体。 Conhilhilega L.对周围底栖生物的影响很少受到关注,特别是在潮下地区。因此,根据ICES北海本底斯调查的数据,对北海不同生境中L. conhilega的存在及其对这些生境的丰度,物种丰富度,多样性和群落结构的影响进行了评估。 2000年。Lanice conchilega具有广泛的地理分布和较低的生境专业性,但最适合出现在浅层细沙中。在当前的研究中,concepthilega的存在导致密度的增加以及底栖生物密度与conhilhilega的密度的显着(正相关)。此外,物种丰富度(物种数)随浓度的L. conchilega的增加而增加。然而,这种趋势并不一致:在浅水层中达到临界密度(> 500-l,000 ind / m〜2)后,物种数量或多或少地达到了渐近值,甚至减少了。细沙。对于预期的物种数量,检测到相同的总体模式。与没有乳杆菌的斑块相比,N_1多样性指数显示了乳杆菌斑块的相似或略高的值。从群落分析的结果可以得出结论,造成多样性增加的物种属于该生境的整个物种库。在四个能辨别的生境(浅泥沙,浅细沙,浅中沙和深细沙)之间,对密度和多样性的影响不同,在浅细沙中最为明显。这些模式可以归因于L. conchilega的栖息地结构能力。导致L. conchilega斑块栖息地质量提高的机制可以概括为(1)流体力学的变化,(2)栖息地稳定性和氧气供应的增加,(3)沙丘草地栖息地异质性的产生统一的环境。通过这种方式,康士德乳杆菌改变了栖息地的特性并影响了其他生物,因此甚至可以被视为生态系统工程师。换句话说,康乃狄克氏菌斑块负责在原本均匀的栖息地中提高栖息地质量,从而导致周围底栖生物的较高生存率。

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