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Morphometric Analyses of Leaf Shapes in Four Sympatric Mediterranean Oaks and Hybrids in the Algerian Kabylie Forest

Authors :
Ministère de l'Enseignement Supérieur et de la Recherche Scientifique (Algerie)
Universidad de Huelva
European Commission
Ministerio de Ciencia, Innovación y Universidades (España)
Amel Akli [0000-0003-4902-3513]
Zaida Lorenzo [0000-0002-8798-561X]
Alía Miranda, Ricardo [0000-0002-9426-0967]
Torres, Enrique [0000-0001-8531-7696]
Khellaf, Rabhi [0000-0001-8328-0877]
Amel Akli
Zaida Lorenzo
Alía Miranda, Ricardo
Khellaf, Rabhi
Torres, Enrique
Ministère de l'Enseignement Supérieur et de la Recherche Scientifique (Algerie)
Universidad de Huelva
European Commission
Ministerio de Ciencia, Innovación y Universidades (España)
Amel Akli [0000-0003-4902-3513]
Zaida Lorenzo [0000-0002-8798-561X]
Alía Miranda, Ricardo [0000-0002-9426-0967]
Torres, Enrique [0000-0001-8531-7696]
Khellaf, Rabhi [0000-0001-8328-0877]
Amel Akli
Zaida Lorenzo
Alía Miranda, Ricardo
Khellaf, Rabhi
Torres, Enrique
Publication Year :
2022

Abstract

Background: local morphological variation can provide useful information to clarify the role of hybridization in Mediterranean oaks. Accordingly, we have characterized putative hybrids and oak species coexisting in a highly diversified oak forest in Algeria with four native oak species (Quercus suber L., Q. ilex L., Q. canariensis Willd., and Q. afares Pomel). (2) Methods: sixteen plots, including 89 trees from the four native species and their putative hybrids were sampled. Leaves were scanned and their geometric morphometry analyzed by using 11 landmarks on the right side on their abaxial surface. Variation within and among species, and the relationship among oak species and their hybrids were analyzed, utilizing an ANOVA and a canonical analysis using morphoJ software. (3) Results: using the geometric morphometry analysis, we observed that Q. afares shape is intermediate between Q. suber and Q. canariensis, being Q. ilex very different from the others, and that there is no overlap among them. Putative hybrids are morphologically close to Q. afares and, to a lesser extent, to Q. suber and, finally, to Q. ilex and Q. canariensis. (4) Conclusions: the study opens the field for future molecular characterization of hybrids, and for determining their role in terms of adaptation to actual and predicted future climatic conditions. The morphological proximity of hybrids to Q. afares demonstrate this species advantage in the area of study and its importance for the future evolution of the species in the Mediterranean.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1333185145
Document Type :
Electronic Resource