Bridging experimental and monitoring research for visible foliar injury as bio-indicator of ozone impacts on forests

Author:

Baesso Moura Barbara1,Carrari Elisa12,Dalstein-Richier Laurence34,Sicard Pierre5,Leca Stefan6,Badea Ovidiu6,Pitar-Silaghi Diana6,Shashikumar Anumol4,Ciriani Marie-Lyne34,Paoletti Elena1,Hoshika Yasutomo1

Affiliation:

1. Institute of Research on Terrestrial Ecosystems (IRET), National Research Council of Italy (CNR), Sesto Fiorentino, Italy

2. Dipartimento di Scienze e Tecnologie Agrarie, Alimentari Ambientali e Forestali (DAGRI), Università degli Studi Firenze (UNIFI), Firenze, Italy

3. GIEFS (Groupe International d'Etudes des Forêts Sud-européennes), Nice, France

4. ARGANS, France

5. Faculty of Silviculture and Forest Engineering, “Transilvania” University, Braşov, Romania

6. National Institute for Research and Development in Forestry “Marin Dracea”, Voluntari, Ilfov, Romania

Abstract

ABSTRACT Tropospheric ozone (O 3 ) is a phytotoxic air pollutant and the O 3 -induced visible foliar injury (O 3 VFI) is a biomarker. A recently developed Free-air O 3 eXposure (FO 3 X) is a promising facility to verify field-observed “O 3 -like” VFIs and to establish a flux-based threshold for the O 3 VFI onset. The present study compared O 3 -like VFI registered in the southern European forest sites with actual O 3 VFI observed in a FO 3 X experiment. The O 3 -like VFIs were evaluated by eye in forests and thus it was subjective. According to the imaging analysis, we firstly demonstrated that major parts of the colors were similar in the field and the FO 3 X. The color pallets for O 3 VFI was species-specific and considered a advanced tool for the O 3 VFI diagnosis. In addition, we calculated a flux-based threshold for the O 3 VFI onset at the FO 3 X based on a Phytotoxic Ozone Dose (POD 1 ), which ranged from 4.9 to 18.1 mmol m −2 POD 1 . This FO 3 X-derived threshold partly explained but did not necessarily match with the observation for several tree species in actual forests. The multivariate analysis showed that O 3 VFI was decreased by the presence of various species and suggested the importance of continuous monitoring activities in the field for the further analysis.

Funder

Consiglio Nazionale delle Ricerche

European Commission

Fondazione Cassa di Risparmio di Firenze

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Management, Monitoring, Policy and Law,Ecology,Ecology, Evolution, Behavior and Systematics

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