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Successional dynamics of marine fouling hydroids (Cnidaria: Hydrozoa) at a finfish aquaculture facility in the Mediterranean Sea

机译:地中海有鳍水产养殖设施中海洋结垢水合物(刺ni:Hydrozoa)的连续动力学

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摘要

Aquaculture is increasing rapidly to meet global seafood demand. Some hydroid populations have been linked to mortality and health issues in finfish and shellfish, but their dynamics in and around aquaculture farms remain understudied. In the present work, two experiments, each with 36 panels, tested colonization (factors: depth, season of immersion) and succession (factors: depth, submersion duration) over one year. Hydroid surface cover was estimated for each species, and data were analyzed with multivariate techniques. The assemblage of hydrozoans was species-poor, although species richness, frequency and abundance increased with time, paralleling the overall increase in structural complexity of fouling assemblages. Submersion duration and season of immersion were particularly important in determining the species composition of the assemblages in the succession and colonization experiments, respectively. Production of water-borne propagules, including medusae, from the hydroids was observed from locally abundant colonies, among them the well-known fouling species Obelia dichotoma, potentially representing a nuisance for cultured fish through contact-driven envenomations and gill disorders. The results illustrate the potential importance of fouling hydroids and their medusae to the health of organisms in the aquaculture industry.
机译:水产养殖正在迅速增长,以满足全球海鲜需求。一些水体种群与有鳍鱼类和贝类的死亡率和健康问题有关,但对水产养殖场内和周围的动态仍未进行研究。在本工作中,有两个实验(每个实验有36个小组)测试了一年内的定居(因子:深度,浸没季节)和演替过程(因子:深度,浸没持续时间)。估计每种物种的水合表面覆盖率,并使用多元技术分析数据。尽管动物的丰富度,频率和丰度随时间增加,但与污垢组合物的结构复杂性总体增加同时,水生动物的种群稀少。浸没的持续时间和浸没季节在分别确定演替和定居实验中的组合物种的组成方面特别重要。在当地丰富的殖民地中观察到了从水中产生的水生繁殖体,包括水母,其中包括著名的污垢物种Obelia dichotoma,这可能代表通过接触驱动的毒刺和g病对养殖鱼类造成的滋扰。结果表明,结垢的水合物及其水母对水产养殖业生物的健康具有潜在的重要性。

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