Comparing the Structure of Fish Assemblage among Natural and Artificial Shallow Rocky Habitats

Oceans Pub Date : 2024-05-06 DOI:10.3390/oceans5020015
Laura García-Salines, Pablo Sanchez-Jerez
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Abstract

Artificial coastal structures, such as seawalls, breakwaters, and groins, can exert various impacts on the fish communities in the nearby regions. This study focuses on assessing the ecological effects of coastal infrastructure on marine environments, by comparing, at different seasons, the habitat complexity and heterogeneity, as well as their effects on fish assemblages, between the artificial habitat created with the intention of constructing a marina (Puerto Amor) and the natural habitats surrounding the Cabo de la Huerta area in Alicante (Spain). Employing an asymmetric design and examining two temporal and spatial scales, we utilized visual censuses in snorkeling to gauge the abundance and size of fish species, alongside various parameters related to habitat complexity and heterogeneity. The overarching hypothesis is that fish populations associated with artificial habitats will differ in terms of abundance, biomass, species richness, and diversity compared to fish populations associated with natural habitats, due to changes in complexity and heterogeneity. The findings indicate a shift in fish assemblages; for example, the family Labridae showed differences between the two habitat types for several species. These changes were due to the influences of the Posidonia oceanica meadow and algae like Jania rubens; being influenced by biological variables such as Ellisolandia elongata, Oculina patagonica, and Sarcotragus spinosulus; as well as physical variables such as stones, gravel, and blocks. While there is evidence of alteration in fish assemblages due to changes in habitat structure, there is also an increase in richness (9 species/m2) and total abundance and biomass (1000 ind./m2 and 1700 g/m2, respectively) in the artificial habitat. Multivariate analyses reveal that the fish community in Puerto Amor is less homogeneous than the one in the natural habitat. However, these analyses also indicate an overlap between the communities of both habitats, suggesting substantial similarity despite the noted differences. Consequently, although the habitat alteration has impacted fish populations, it has not diminished abundance, biomass, or species richness. In conclusion, the artificial rocky habitat resulting from the construction attempt at Puerto Amor harbor has fish populations with ecological significance and its removal could lead to undesirable impacts in the area, as the fish assemblages have become well established.
比较天然和人工浅岩栖息地鱼类组合结构
海堤、防波堤和海槽等人工海岸结构会对附近地区的鱼类群落产生各种影响。本研究的重点是评估沿海基础设施对海洋环境的生态影响,方法是在不同季节比较为建 造码头而建造的人工栖息地(阿莫尔港)和西班牙阿利坎特拉韦尔塔角周围的自然栖息地之间 的栖息地复杂性和异质性,以及它们对鱼类群落的影响。我们采用了非对称设计并考察了两个时间和空间尺度,利用浮潜中的目测普查来衡量鱼类物种的丰度和大小,以及与栖息地复杂性和异质性相关的各种参数。总体假设是,由于复杂性和异质性的变化,与人工栖息地相关的鱼类种群在丰度、生物量、物种丰富度和多样性方面与与自然栖息地相关的鱼类种群有所不同。研究结果表明,鱼类种群发生了变化;例如,唇形目鱼科的多个物种在两种生境类型之间出现了差异。这些变化是由于受到 Posidonia oceanica 草甸和 Jania rubens 等藻类的影响;受到 Ellisolandia elongata、Oculina patagonica 和 Sarcotragus spinosulus 等生物变量以及石头、砾石和块状物等物理变量的影响。虽然有证据表明栖息地结构的变化导致了鱼类组合的改变,但人工栖息地中鱼类的丰富度(9 种/平方米)、总丰度和生物量(分别为 1000 ind./m2 和 1700 g/m2)也有所增加。多变量分析表明,阿莫尔港的鱼类群落不如自然栖息地的鱼类群落均匀。不过,这些分析也表明,两种生境的群落之间存在重叠,表明尽管存在显著差异,但仍有很大相似性。因此,虽然生境的改变对鱼类种群产生了影响,但并没有减少鱼类的数量、生物量或物种丰富度。总之,阿莫尔港施工过程中形成的人工岩石生境中的鱼类种群具有重要的生态意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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