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Tyryshkin L.G. and N.N. Solovieva, 2001. Resistance of barley Hordeum vulgare L. to leaf rust, dark-brown leaf spot blotch and common root rot: methods of evaluation and characteristics of collection samples. Tr. po prikl. bot., gen. i sel. 159: 93

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24 310 315 Kuma, B.S.T., Ramesh, B. 2001. Correlation between spike development and internode elongation in wheat ( Hordeum vulgare ). Indian J

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): Inheritance of yield components and morpho-physiological traits in barley ( Hordeum vulgare L.). Crop Sci. , 12, 283–286. Harvey B. L. Inheritance of yield components and

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Cass, D. D., Peteya, D. J. 1986: Megagametophyte development in Hordeum vulgare 2. Later stages of wall development and morphological aspects of megagametophyte cell differentiation. Can. J. Bot. , 64 , 2327

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753 758 Andreasen, C., Litz, A. S., Streibig, J. C. (2006): Growth response of six weed species and spring barley ( Hordeum vulgare ) to increasing levels of nitrogen and

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cepa and Hordeum vulgare. — Env. Exp. Bot. 22 : 265–270. Elkington T. T. Antimitotic and chromotoxic activities of isoproturon in Allium cepa and Hordeum vulgare

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., K. Posta, A. Füzy, I. Kádár and T. Németh. 2005. Mycorrhizal functioning as part of the survival mechanisms of barley ( Hordeum vulgare L) at long-term heavy metal stress. Acta Biol Szegediensis 49: 65

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terms of physical-chemical-metal properties for barley ( Hordeum vulgare ) production in the State of Hidalgo, Mexico. American-Eurasian J. Agric. Environ. Sci. , 10, 230–237. Acevedo O. A

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study of salt tolerance of Iranian barley (Hordeum vulgare L.) genotypes in seedling growth stages. - American-Eurasian J. Agric. and Environ. Sci. 4 (5): 525–529. Salehi M The study

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and mitosis in Hordeum vulgare L. Bull. Pure App. Sci. 21B , 33–38. Tufekci M. A. Role of putrescine and its biosynthetic inhibitor on seed germination, root elongation and

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