The popular Algerian barley landraces Saida and Tichedrett are autochthonous - evidence from RAPD, SSR and agrophenological markers

Hamama Guetteche, Ali Akram Jarrar, Ines Khiyel, Narimane Djekkoun,Leila Rouabah, Abdelkader Rouabah,Abdelkader Benbelkacem,Peter Nick

PLANT GENETIC RESOURCES-CHARACTERIZATION AND UTILIZATION(2022)

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Abstract
The characterisation of traditional barley varieties from North Africa is promising with respect to detect traits linked with resilience to drought. Nine Algerian barley varieties comprising the economically relevant local landraces Saida183 and Tichedrett were genotyped by random amplifying polymorphic DNA (RAPD) and by Simple Sequence Repeat (SSR) markers to get insight into their phylogenetic relationship and to compare the efficiency of the two approaches. The SSR markers were chosen such that all chromosomes of barley were represented by at least one marker. In addition, a principal component analysis (PCA) of morpho-agronomical traits was conducted. We found that the phylogeny based on the RAPD markers reflected the geographical distribution of the tested varieties, while the phylogeny based on the SSR markers reflected the pedigree. Among the RAPD markers, the maximal polymorphism information content was obtained for BY14 with a value of 0.82, for the SSR markers, Bmg13 was most informative with a value of 0.60. The similarity matrix used to the construct the phylogenetic tree, inferred a close relationship (Jaccard Index 0.8 based on RAPD markers) between the accessions Fouara and Oued-Athmania occurring in close vicinity. The SSR markers group the autochthonous varieties Saida183 and Tichedrett together with a Jaccard Index of 0.8. The close phylogenetic relationship between Saida183 and Tichedrett is also supported by the PCA of morphological and agronomic traits. Our data underpin the diversity of Algerian barley varieties and lend support to the autochthonous origin of these two Algerian landraces.
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Key words
Algerian agrobiodiversity, barley (Hordeum vulgare), landraces, random amplifying polymorphic DNA (RAPD), small sequence repeat (SSR)
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