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Essahibi, A.

Publications and source records attributed to Essahibi, A..

2 recordsLinked to original sources

Arbuscular mycorrhizal symbiosis increases drought resistance in the xerophytic argan tree ( Sideroxylon spinosum )

The xerophyte argan (Sideroxylon spinosum) has great ecological and socioeconomic importance for Morocco. However, it is endangered due to climate change and human overexploitation. We assess drought resistance traits of argan and test the potential of arbuscular mycorrhizal (AM) symbiosis to promote its growth and mitigate the consequences of drought. We compare ten endemic Moroccan mycorrhizal inocula with the model AM fungus Rhizophagus irregularis and with the drought-adapted isolate Diversispora omaniana. We integrated physiological phenotyping and RNA sequencing to investigate the stress resistance mechanisms of argan against drought. We show that AM symbiosis significantly mitigates drought effects on plant growth, mainly by improving water relations and photosynthetic efficiency, resulting in increased growth rates. Taken together, physiological and transcriptomic analyses show that stress markers were moderatly induced during severe drought stress irrespective of mycorrhizal status, suggesting that argan adopts a drought-coping strategy that involves both, stress avoidance and stress tolerance. Argan is highly AM-responsive, both at the phenotypic and transcriptomic level, suggesting that AM has great potential to promote argan growth under drought stress.

Plant Biology↗

Chromosome-level phased genome assembly of the Argan tree Sideroxylon spinosum L.

Argan (Sideroxylon spinosum L. previously known as Argania spinosa) is an endemic tree of Morocco, primarily used for seed oil extraction. Increasing interest in its biology and in genes relevant for oil quality and stress resistance demands for high-quality models of its genome and transcriptome. We integrated sequencing data from PacBio HiFi long-reads and Illumina Hi-C to generate independently assembled phased genome models for both parental haplotigs with lengths of 636Mb and 655 Mb, respectively, and with a BUSCO completeness score of >97.8%. Both haplotigs consist of 11 independently assembled fully resolved telomere-to-telomere chromosomes, similar to other species of the Sapotaceae (n = 10-13), and they both contain approximately [~]60% of highly repetitive regions. Comparative analysis with other Sapotaceous genomes suggests overall chromosome conservation, with repeat expansion and chromosome fusion for the two largest chromosomes (chr1, chr2). We also independently assembled the chloroplast genome. This high-quality genome assembly provides a valuable resource for advancing future research on argan biology, its genetic diversity, and traits relevant for fitness and oil production.

genomics↗