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Unexpected effects of coastal storms on trophic ecology of two rocky reef fish species

机译:沿海风暴对两岩礁鱼类营养生态学的意外影响

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Coastal storm risks have been increasing over the last couple of decades, affecting both marine infrastructure and human security. Nevertheless, the ecological impact on intertidal marine fishes has not been addressed yet. We carried out a field experiment during austral summer 2018, using statistical wave parameters, characterizing coastal storms as a factor, and the gut content of two sympatric intertidal triplefins, Helcogrammoides chilensis and Helcogrammoides cunninghami, as a proxy for trophic interactions. Three locations were sampled before and after the arrival of three consecutive summer coastal storm events. From all gut contents, a total of 16,597 prey items were found. Both species are micro-carnivorous, predating mostly on harpacticoid copepods, amphipods and chironomid larvae, without significant differences in prey composition with the passing of the summer coastal storms. However, after coastal storms, heavier-at-length fish (0.05-0.5 g weight gain) were found in the intertidal. Indeed, after the impact of the coastal storms, H. chilensis increased their ingestion of larger prey (amphipods, chironomid larvae), while H. cunninghami decreased the number of prey ingested. When compared between species, the feeding success after the passing of coastal storms was greater for H. chilensis than H. cunninghami. Finally, trophic overlap between species was high, but after the coastal storms passed, it decreased noticeably due to small changes in proportion of large chironomid and gammarid amphipods in the diet. Therefore, summer coastal storms affected the foraging behavior, increasing the weight of two recurrent cryptobenthic rocky reef fish from central Chile. In a broader ecological context, the shift from pelagic (i.e., copepods) to benthic prey (i.e., amphipods, polychaetes) may change the relative contribution and the subsidy production in nearshore habitats via pelagic-benthic coupling.
机译:在过去几年的几十年里,沿海风暴造成了越来越大,影响海洋基础设施和人类安全。然而,尚未解决对跨境海洋鱼类的生态影响。我们在2018年夏季夏季进行了一个田间实验,使用统计波参数,表征沿海风暴作为一个因素,以及两个SympaTric Intertiving Triplefins的肠道内容,Helcogrammoides Chilensis和Helcogrammoides Cunninghami,作为营养互动的代理。在连续三个夏季沿海风暴事件到达之前和之后的三个地点被取样。从所有肠道内容中,总共发现了16,597次猎物。两种物种都是微食,大多数在夏季沿海风暴通过的猎物组合物中的含有显着差异。然而,在沿海风暴之后,在跨境中发现较重的鱼(0.05-0.5g重量增益)。事实上,在沿海风暴的影响后,H.辣根植物增加了对更大的猎物(Amphipods,依ch醛幼虫)的摄取,而H. Cunninghami降低了摄入的猎物数量。在物种之间比较时,在沿海风暴通过后的饲养成功比H. Cunninghami的H. cunnensis更大。最后,物种之间的营养性重叠很高,但在沿海风暴通过后,由于饮食中的大型依湿式和γAmphipods的比例小变化,它显着降低。因此,夏季沿海风暴影响了觅食行为,增加了智利中部两条复发性密码岩石礁鱼的重量。在更广泛的生态背景下,从嗜酸雌肽(即,Amphipods,Polychaetes)从骨库(I.,CopePods)的转变可以通过Pelagic-Benthic耦合改变近岸栖息地的相对贡献和补贴生产。

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  • 来源
    《Marine biology》 |2021年第2期|20.1-20.11|共11页
  • 作者单位

    Univ Valparaiso Fac Ciencias Inst Biol Lab Ictioplancton LABITI Valparaiso Chile|Univ Valparaiso Ctr Observac Marino Estudios Ambiente Costero COS Valparaiso Chile;

    Univ Valparaiso Lab Oceanog Fis & Satelital LOFISAT Ctr Observac Marino Estudios Ambiente Costero COS Valparaiso Chile;

    Univ Valparaiso Ctr Observac Marino Estudios Ambiente Costero COS Valparaiso Chile|Univ Valparaiso Fac Ingn Escuela Ingn Civil Ocean Valparaiso Chile|Ctr Invest Gest Integrada Riesgo Desastres CIGIDE Valparaiso Chile;

    Fdn CIDEMAR Valparaiso Chile;

    Univ Valparaiso Fac Ciencias Inst Biol Lab Ictioplancton LABITI Valparaiso Chile|Univ Valparaiso Ctr Observac Marino Estudios Ambiente Costero COS Valparaiso Chile;

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