Seasonal Differences in Ecophysiological Performance between Resprouters and Non-Resprouters across an Aridity Gradient in Northwest Tunisia

Author:

Nefzi Khaoula1,Voltas Jordi23,Kefi Bochra Bejaoui45ORCID,Baraket Mokhtar1ORCID,Rzigui Touhami6,Martin Patrick7ORCID,M’Hamdi Naceur8ORCID,Msaada Kamel9ORCID,Nasr Zouhair1

Affiliation:

1. National Research Institute of Rural Engineering, Water and Forests (INRGREF), LR11INRGREF0 Laboratory of Management and Valorization of Forest Resources, Carthage University, Ariana 2080, Tunisia

2. Department of Crop and Forest Sciences, School of Agrifood and Forestry Engineering and Veterinary, University of Lleida, Av. Alcalde Rovira Roure 191, 25198 Lleida, Spain

3. Joint Research Unit CTFC–AGROTECNIO–CERCA, Av. Alcalde Rovira Roure 191, 25198 Lleida, Spain

4. National Institute of Research and Pysico-Chemical Analysis (INRAP), Laboratory of Useful Materials, Technopark of Sidi Thabet, Ariana 2020, Tunisia

5. Department of Chemistry, Faculty of Sciences of Bizerte, University of Carthage, Bizerte 7021, Tunisia

6. Institute Sylvo-Pastoral of Tabarka, University of Jendouba, Tabarka 8189, Tunisia

7. Unité Transformations & Agroressources, ULR7519, Université d’Artois-Uni LaSalle, 62408 Bethune, France

8. Research Laboratory of Ecosystems & Aquatic Resources, National Agronomic Institute of Tunisia, Carthage University, 43 Avenue Charles Nicolle, Tunis 1082, Tunisia

9. Laboratory of Aromatic and Medicinal Plants, Biotechnology Center, Borj-CedriaTechnopark, BP. 901, Hammam-Lif 2050, Tunisia

Abstract

Understanding the functioning of shrub species during dry periods is necessary to forecast ecosystem responses to future climates, particularly in Mediterranean environments. We evaluated the seasonal changes in leaf gas exchange, hydraulic traits, carbon and nitrogen isotopes, and non-structural carbohydrates of seeders and resprouting shrub species typical of Aleppo pine forests across an aridity gradient in Tunisia: Djebel Zaghouan (subhumid climate), Djebel Mansour (semiarid transitional climate), and Djebel El Sarj (semi-arid climate). We monitored seven woody species: Pistacia lentiscus, Erica multiflora, Phillyrea latifolia (resprouters), Cistus monspeliensis, Rosmarinus officinalis (seeders), Globularia alypum, and Calicotome villosa (resprouters-seeders). The seasonal variation in leaf water content was usually higher in seeders than in resprouters and was associated with higher resistance to embolism. In contrast, the seasonal variation in non-structural carbohydrates was higher in resprouters, especially at the driest site. Both δ13C and δ15N displayed seasonal enrichment-depletion patterns, with seeders showing an overall higher δ13C in summer than in spring, consistent with a water-saving strategy of increasing water use efficiency. Discriminant analysis suggested that resprouters can sustain a positive carbon balance during drought periods. The differential impact of summer droughts on water status and the ecophysiology of these plant strategies may lead to different ecosystem dynamics depending on whether climate change tips the balance towards a preponderance of stressors (drought) or disturbances (fire) in dry Mediterranean areas.

Funder

Ministry of Higher Education and Scientific Research of Tunisia

project “Farmers’ Adaptation and Sustainability in Tunisia”

Spanish Government

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

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