EventsThe 3rd International Electronic Conference on Forests — Exploring New Discoveries and New Directions in Forests
Published
This submission belongs to the session S2. Forest Ecophysiology and Genetics of the event The 3rd International Electronic Conference on Forests — Exploring New Discoveries and New Directions in Forests
Published date
31 Oct, 2022
Academic Editor
author-avatarRodolfo Picchio
Citation
Mohamed Mouafik, Contribution to the ecophysiological study of four Mediterranean forest species (Quercus suber, Ceratonia siliqua, Tetraclinis articulata, Cedrus atlantica)., in Proceedings of The 3rd International Electronic Conference on Forests — Exploring New Discoveries and New Directions in Forests, 15 October–31 October 2022, MDPI: Basel, Switzerland, doi: 10.3390/IECF2022-13125
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Contribution to the ecophysiological study of four Mediterranean forest species (Quercus suber, Ceratonia siliqua, Tetraclinis articulata, Cedrus atlantica).

1. Botany, Mycology and Environment Laboratory, Department of Biology, Faculty of Sciences, Mohammed V University, Rabat, Morocco
Abstract

Forest degradation has been accentuated in recent years by climate change and drought. This study consists of producing quality plants and understanding their ecophysiological behavior in the face of water stress. Plants of two broadleaves (Quercus suber, Ceratonia siliqua) and two conifers (Tetraclinis articulata, Cedrus atlantica) aged 6 months subjected to water stress. The basic (Ψb) and minimum (Ψm) leaf water potential ware measured and processed according to climatic factors for the 4 forest species. The results show that the leaf water potential in Quercus suber presents more negative values (-0.42 MPa) for basic leaf water potential and (-1.43 MPa) for minimum leaf water potential than the other forest species studied. While Cedrus atlantica presents the least negative values for minimum leaf water potential (-0.89 MPa). These results allowed us to define the species that is more resistant to water stress and climate change. However, they refer us to more general questions concerning the mechanisms of water use in forest plants.

Keywords
Quercus suber
Ceratonia
siliqua
Cedrus atlantica
Tetraclinis articulata
climatic data
water stress
leaf water potential.
Manuscript
Physiological and biochemical responses of four contrasting origins of argan tree to severe water stress.
Upscaling FRM production for future forests and FGR conservation: clonal propagation of selected Taxus baccata plus trees with high paclitaxel content