Eyal Fridman
Affiliations: | Volcani Institute |
Area:
Genetics, Yield, Circadian Clock, Adaptation, BarleyGoogle:
"Eyal Fridman"
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Publications
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Tiwari LD, Kurtz-Sohn A, Bdolach E, et al. (2023) Crops under past diversification and ongoing climate change: more than just selection of nuclear genes for flowering. Journal of Experimental Botany. 74: 5431-5440 |
Chang CW, Fridman E, Mascher M, et al. (2022) Physical geography, isolation by distance and environmental variables shape genomic variation of wild barley (Hordeum vulgare L. ssp. spontaneum) in the Southern Levant. Heredity |
Prusty MR, Bdolach E, Yamamoto E, et al. (2021) Genetic loci mediating circadian clock output plasticity and crop productivity under barley domestication. The New Phytologist |
Alegria Terrazas R, Balbirnie-Cumming K, Morris J, et al. (2020) A footprint of plant eco-geographic adaptation on the composition of the barley rhizosphere bacterial microbiota. Scientific Reports. 10: 12916 |
Ronen M, Sela H, Fridman E, et al. (2019) Characterization of the Barley Net Blotch Pathosystem at the Center of Origin of Host and Pathogen. Pathogens (Basel, Switzerland). 8 |
Bdolach E, Prusty MR, Faigenboim-Doron A, et al. (2019) Thermal plasticity of the circadian clock is under nuclear and cytoplasmic control in wild barley. Plant, Cell & Environment |
Galkin E, Dalal A, Evenko A, et al. (2018) Risk-management strategies and transpiration rates of wild barley in uncertain environments. Physiologia Plantarum |
Merchuk-Ovnat L, Silberman R, Laiba E, et al. (2018) Genome scan identifies flowering-independent effects of barley HsDry2.2 locus on yield traits under water deficit. Journal of Experimental Botany. 69: 1765-1779 |
Hussien D, Dakhiya Y, Fridman E, et al. (2017) Correlations between circadian rhythms and growth in challenging environments. Plant Physiology |
Laiba E, Glikaite I, Levy Y, et al. (2016) Genome scan for nonadditive heterotic trait loci reveals mainly underdominant effects in Saccharomyces cerevisiae. Genome. 59: 231-42 |