Chironomid paleo diet as an indicator of past carbon cycle in boreal lakes: Lake Kylmänlampi (Kainuu province; Eastern Finland) as a case study
Author:
Publisher
Springer Science and Business Media LLC
Subject
Aquatic Science
Link
http://link.springer.com/content/pdf/10.1007/s10750-016-2914-4.pdf
Reference70 articles.
1. Anderson, N. J., H. Bennion & A. F. Lotter, 2014. Lake eutrophication and its implications for organic carbon sequestration in Europe. Global Change Biology 20: 2741–2751.
2. Armitage, P. D., P. S. Cranston & L. C. V. Pinder, 1995. The Chironomidae. The Biology and Ecology of Non-biting Midges. Chapman & Hall, London.
3. Belle, S., C. Parent, V. Frossard, V. Verneaux, L. Millet, P.-M. Chronopoulou, P. Sabatier & M. Magny, 2014. Temporal changes in the contribution of methane-oxidizing bacteria to the biomass of chironomid larvae determined using stable carbon isotopes and ancient DNA. Journal of Paleolimnology 52: 215–228.
4. Belle, S., L. Millet, F. Gillet, V. Verneaux & M. Magny, 2015a. Assemblages and paleo-diet variability of subfossil Chironomidae (Diptera) from a deep lake (Lake Grand Maclu, France). Hydrobiologia 755: 145–160.
5. Belle, S., V. Verneaux, L. Millet, C. Parent & M. Magny, 2015b. A case study of the past CH4 cycle in lakes by the combined use of dual isotopes (carbon and hydrogen) and ancient DNA of methane-oxidizing bacteria: rearing experiment and application to Lake Remoray (eastern France). Aquatic Ecology 49: 279–291.
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