Atmospheric CO2 forcing on Mediterranean biomes during the past 500 kyrs

Author:

Koutsodendris AndreasORCID,Dakos VasilisORCID,Fletcher William J.,Knipping Maria,Kotthoff Ulrich,Milner Alice M.ORCID,Müller Ulrich C.,Kaboth-Bahr Stefanie,Kern Oliver A.,Kolb Laurin,Vakhrameeva PolinaORCID,Wulf Sabine,Christanis Kimon,Schmiedl GerhardORCID,Pross Jörg

Abstract

AbstractThere is growing concern on the survival of Mediterranean forests under the projected near-future droughts as a result of anthropogenic climate change. Here we determine the resilience of Mediterranean forests across the entire range of climatic boundary conditions realized during the past 500 kyrs based on continuous pollen and geochemical records of (sub)centennial-scale resolution from drillcores from Tenaghi Philippon, Greece. Using convergent cross-mapping we provide empirical confirmation that global atmospheric carbon dioxide (CO2) may affect Mediterranean vegetation through forcing on moisture availability. Our analysis documents two stable vegetation regimes across the wide range of CO2 and moisture levels realized during the past four glacial-interglacial cycles, with abrupt shifts from forest to steppe biomes occurring when a threshold in precipitation is crossed. Our approach highlights that a CO2-driven moisture decrease in the near future may bear an impending risk for abrupt vegetation regime shifts prompting forest loss in the Mediterranean region.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

Reference85 articles.

1. San-Miguel-Ayanz, J. et al. (eds.). European Atlas of Forest Tree Species (Publication Office of the European Union, Luxembourg, 2016).

2. Food and Agriculture Organization of the United Nations. Global Forest Resources Assessment 2000: Main Report (FAO, 2000).

3. Nolan, C. et al. Past and future global transformation of terrestrial ecosystems under climate change. Science 361, 920–923 (2018).

4. Schröter, D. et al. Ecosystem service supply and vulnerability to global change in Europe. Science 310, 1333–1337 (2005).

5. Cramer, W. et al. Climate change and interconnected risks to sustainable development in the Mediterranean. Nat. Clim. Change 8, 972–980 (2018).

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