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  • Topic:Environmental change
October 2020
Global Change Biology. - 26(2020)11, S. 6413-6423

Long-term warming destabilizes aquatic ecosystems through weakening biodiversity-mediated causal networks

Chun-Wei Chang; Hao Ye; Takeshi Miki; Ethan R. Deyle; Sami Souissi; Orlane Anneville; Rita Adrian; Yin-Ru Chiang; Satoshi Ichise; Michio Kumagai; Shin-ichiro S. Matsuzaki; Fuh-Kwo Shiah; Jiunn-Tzong Wu; Chih-hao Hsieh; George Sugihara

Climate change destabilizes aquatic ecosystems through weakening the interactions between species richness and biomass of phytoplankton and the chemical and physical environmental factors. This is the conclusion of a study on long-term data series of 10 aquatic ecosystems using the convergent cross mapping (CCM) method.

May 2020
Nature Communications. - 11(2020)art. 2126

Global CO2 emissions from dry inland waters share common drivers across ecosystems

P. S. Keller; N. Catalán; D. von Schiller; H.-P. Grossart; M. Koschorreck; B. Obrador; M. A. Frassl; N. Karakaya; N. Barros; J. A. Howitt; C. Mendoza-Lera; A. Pastor; G. Flaim; R. Aben; T. Riis; M. I. Arce; G. Onandia; J. R. Paranaíba; A. Linkhorst; R. del Campo; A. M. Amado; S. Cauvy-Fraunie; S. Brothers; J. Condon ... R. Marce

Generally, calculations that scale up carbon dioxide emissions from land and water surface areas do not take into account that inland waters dry out intermittently. This means that the actual emissions from inland waters have been significantly underestimated.