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富营养化鱼塘中新兴昆虫对膳食脂质的输出。

Export of dietary lipids via emergent insects from eutrophic fishponds.

作者信息

Fehlinger Lena, Mathieu-Resuge Margaux, Pilecky Matthias, Parmar Tarn Preet, Twining Cornelia W, Martin-Creuzburg Dominik, Kainz Martin J

机构信息

WasserCluster Lunz - Biologische Station GmbH; Inter-university Center for Aquatic Ecosystem Research, Dr. Carl Kupelwieser Promenade 5, 3293 Lunz am See, Austria.

University for Continuing Education Krems, Dr.-Karl-Dorrek-Straße 30, 3500 Krems, Austria.

出版信息

Hydrobiologia. 2023;850(15):3241-3256. doi: 10.1007/s10750-022-05040-2. Epub 2022 Oct 27.

Abstract

UNLABELLED

Fishponds, despite being globally abundant, have mainly been considered as food production sites and have received little scientific attention in terms of their ecological contributions to the surrounding terrestrial environment. Emergent insects from fishponds may be important contributors of lipids and essential fatty acids to terrestrial ecosystems. In this field study, we investigated nine eutrophic fishponds in Austria from June to September 2020 to examine how Chlorophyll- concentrations affect the biomass of emergent insect taxa (i.e., quantity of dietary subsidies;  = 108) and their total lipid and long-chain polyunsaturated fatty acid content (LC-PUFA, i.e., quality of dietary subsidies;  = 94). Chironomidae and Chaoboridae were the most abundant emergent insect taxa, followed by Trichoptera, Ephemeroptera, and Odonata. A total of 1068 kg of emergent insect dry mass were exported from these ponds (65.3 hectares). Chironomidae alone exported 103 kg of total lipids and 9.4 kg of omega-3 PUFA. Increasing Chl- concentrations were associated with decreasing biomass export and a decrease in total lipid and LC-PUFA export via emergent Chironomidae. The PUFA composition of emergent insect taxa differed significantly from dietary algae, suggesting selective PUFA retention by insects. The export of insect biomass from these eutrophic carp ponds was higher than that previously reported from oligotrophic lakes. However, lower biomass and diversity are exported from the fishponds compared to managed ponds. Nonetheless, our data suggest that fishponds provide crucial ecosystem services to terrestrial consumers by contributing essential dietary nutrients to consumer diets via emergent insects.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s10750-022-05040-2.

摘要

未标注

鱼塘尽管在全球范围内分布广泛,但主要被视为食物生产场所,在其对周边陆地环境的生态贡献方面很少受到科学关注。鱼塘中的水生昆虫可能是陆地生态系统中脂质和必需脂肪酸的重要贡献者。在这项实地研究中,我们于2020年6月至9月对奥地利的9个富营养化鱼塘进行了调查,以研究叶绿素浓度如何影响水生昆虫类群的生物量(即食物补贴的数量;n = 108)及其总脂质和长链多不饱和脂肪酸含量(LC-PUFA,即食物补贴的质量;n = 94)。摇蚊科和幽蚊科是最丰富的水生昆虫类群,其次是毛翅目、蜉蝣目和蜻蜓目。这些池塘(65.3公顷)共输出了1068千克的水生昆虫干重。仅摇蚊科就输出了103千克的总脂质和9.4千克的ω-3多不饱和脂肪酸。叶绿素浓度的增加与生物量输出的减少以及通过水生摇蚊科输出的总脂质和LC-PUFA的减少有关。水生昆虫类群的多不饱和脂肪酸组成与食用藻类有显著差异,表明昆虫对多不饱和脂肪酸有选择性保留。这些富营养化鲤鱼塘的昆虫生物量输出高于先前报道的贫营养湖泊。然而,与人工管理的池塘相比,鱼塘输出的生物量和多样性较低。尽管如此,我们的数据表明,鱼塘通过水生昆虫为陆地消费者的饮食提供必需的营养物质,从而为陆地消费者提供了关键的生态系统服务。

补充信息

在线版本包含可在10.1007/s10750-022-05040-2获取的补充材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec11/10307721/04072521d3a2/10750_2022_5040_Fig1_HTML.jpg

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