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RESEARCH PRODUCT
Trophic state changes can affect the importance of methane-derived carbon in aquatic food webs
Markus LeuenbergerJ. SchilderJ. SchilderMaarten Van HardenbroekMaarten Van HardenbroekEmiliya P. KirilovaAndré F. LotterAndré F. LotterOliver HeiriPaul L. E. Bodeliersubject
0106 biological sciences010504 meteorology & atmospheric scienceshiili580 Plants (Botany)01 natural sciencesDaphniaNutrientlakesEphippiaNetherlandsGeneral Environmental ScienceTrophic levelTotal organic carbonCarbon IsotopesEcologybiologyEcologyrehevöityminenmethaneGeneral MedicineCladoceraFood webeutrophicationinternationalGeneral Agricultural and Biological SciencesFood Chain530 Physicsta1172chemistry.chemical_elementjärvetmetaaniChironomidaestable carbon isotopesGeneral Biochemistry Genetics and Molecular BiologyAnimalssurviaissääsketisotopes0105 earth and related environmental sciencesisotoopitGeneral Immunology and Microbiologycarbon010604 marine biology & hydrobiologybiology.organism_classificationDaphniachemistryfood websvesikirputta1181Environmental scienceEutrophicationCarbonravintoverkotdescription
Methane-derived carbon, incorporated by methane-oxidizing bacteria, has been identified as a significant source of carbon in food webs of many lakes. By measuring the stable carbon isotopic composition (δ13C values) of particulate organic matter, Chironomidae andDaphniaspp. and their resting eggs (ephippia), we show that methane-derived carbon presently plays a relevant role in the food web of hypertrophic Lake De Waay, The Netherlands. Sediment geochemistry, diatom analyses and δ13C measurements of chironomid andDaphniaremains in the lake sediments indicate that oligotrophication and re-eutrophication of the lake during the twentieth century had a strong impact on in-lake oxygen availability. This, in turn, influenced the relevance of methane-derived carbon in the diet of aquatic invertebrates. Our results show that, contrary to expectations, methane-derived relative to photosynthetically produced organic carbon became more relevant for at least some invertebrates during periods with higher nutrient availability for algal growth, indicating a proportionally higher use of methane-derived carbon in the lake's food web during peak eutrophication phases. Contributions of methane-derived carbon to the diet of the investigated invertebrates are estimated to have ranged from 0–11% during the phase with the lowest nutrient availability to 13–20% during the peak eutrophication phase.
year | journal | country | edition | language |
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2017-01-01 | Proceedings of the Royal Society B: Biological Sciences |