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胃内容物和稳定同位素分析为环境和人为压力下沿海温带底栖-中层水域生物群落的营养生态学提供了互补的见解。

Stomach content and stable isotope analyses provide complementary insights into the trophic ecology of coastal temperate bentho-demersal assemblages under environmental and anthropogenic pressures.

作者信息

Sturbois A, Cozic A, Schaal G, Desroy N, Riera P, Le Pape O, Le Mao P, Ponsero A, Carpentier A

机构信息

Vivarmor Nature, 18 C rue du Sabot, 22440, Ploufragan, France; Réserve naturelle nationale de la Baie de Saint-Brieuc, site de l'étoile, 22120, Hillion, France; Laboratoire des Sciences de l'Environnement Marin (LEMAR), UMR 6539 CNRS/UBO/IRD/IFREMER, BP 70, 29280 Plouzané, France.

Vivarmor Nature, 18 C rue du Sabot, 22440, Ploufragan, France; Réserve naturelle nationale de la Baie de Saint-Brieuc, site de l'étoile, 22120, Hillion, France.

出版信息

Mar Environ Res. 2022 Dec;182:105770. doi: 10.1016/j.marenvres.2022.105770. Epub 2022 Oct 14.

Abstract

Assessing organic matter fluxes and species interactions in food webs is of main interest to understand the ecological functioning in bays and estuaries characterised by a wide diversity of primary producers and consumers. Demersal fish and cephalopod assemblages were studied across a network of 24 shallow subtidal stations in the bay of Saint-Brieuc for their diversity, stable isotope compositions and stomach contents. The community was composed of 21 taxa, eight species accounting for 94.4% of the total abundance. Three different assemblages were identified along bathymetric gradient and spatial patterns in fish dredging. Marine POM and SOM were the most likely bases of food webs regarding δC range displayed by fish and cephalopod without differences among assemblages. Amphipoda was the main prey item in stomachs leading to significant diet overlaps among fish species, with some variations in additional items. Sepia officinalis was characterised by a singular diet and very low dietary overlap with other species. Contrasted stable isotope values and niche overlaps among species were evidenced in the δC/δN space. Callionymus lyra and Buglossidium luteum, characterised by the widest isotopic niches, encompassed those of other species, except the singular C-depleted Spondyliosoma cantharus. Coupling taxonomic assemblages, stomach contents and stable isotope analyses help disentangling the resources uses and evidencing trophic pathways. Contrasts in fish and cephalopod demersal assemblages occurring at different depths not necessarily imply differences in the trophic resources uses in such complex shallow coastal ecosystems under anthropogenic influences.

摘要

评估食物网中的有机物质通量和物种相互作用对于理解以多种初级生产者和消费者为特征的海湾和河口的生态功能至关重要。在圣布里厄湾的24个浅潮下站组成的网络中,研究了底栖鱼类和头足类动物组合的多样性、稳定同位素组成和胃内容物。该群落由21个分类单元组成,8个物种占总丰度的94.4%。沿着水深梯度和鱼类捕捞的空间模式确定了三种不同的组合。就鱼类和头足类动物显示的δC范围而言,海洋颗粒有机物质(POM)和悬浮有机物质(SOM)最有可能是食物网的基础,各组合之间没有差异。双尾类是胃中的主要猎物,导致鱼类物种之间存在显著的饮食重叠,其他食物项目存在一些差异。乌贼具有独特的饮食,与其他物种的饮食重叠非常低。在δC/δN空间中,物种之间存在明显不同的稳定同位素值和生态位重叠。以最宽同位素生态位为特征的琴角鱼和黄斑绒杜父鱼涵盖了其他物种的生态位,但不包括独特的碳贫化的长棘花鲈。将分类组合、胃内容物和稳定同位素分析相结合,有助于理清资源利用情况并证明营养途径。在不同深度出现的鱼类和头足类底栖组合的差异不一定意味着在人为影响下如此复杂的浅海沿岸生态系统中营养资源利用存在差异。

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