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Общее количество найденных документов : 64
Показаны документы с 1 по 20
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1.
| Advantage of early seedling emergence in Fagus crenata: importance of cotyledon stage for predator escape and pathogen avoidance // Ecol. Res., 2008. Vol. 23, N 4.-С.681-688
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2.
| Barnett Stephen J. Spatial variation in populations of pseudomonas corrugata and pseudomonads on take-all diseased and healthy root systems of wheat // Soil Biol. and Biochem., 1999. Vol. 31, N 4.-С.633-636
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3.
| Barnett Stephen J. Spatial variation in populations of pseudomonas corrugata and pseudomonads on take-all diseased and healthy root systems of wheat // Soil Biol. and Biochem., 1999. Vol. 31, N 4.-С.633-636
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4.
| Barnett Stephen J. Spatial variation in populations of pseudomonas corrugata and pseudomonads on take-all diseased and healthy root systems of wheat // Soil Biol. and Biochem., 1999. Vol. 31, N 4.-С.633-636
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5.
| Christensen N.W. Yield of take-all infested winter wheat as influenced by inhibiting nitrification with dicyandiamide // Commun. Soil. Sci. and Phant Anal., 1989. Vol. 20, N 19-20.-С.2137-2148
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6.
| Duffy B.K. Biological control of take-all of wheat in the pacific northwest of the USA using hypovirulent Gaeumannomyces graminis var. tritici and fluorescent pseudomonads // J. Phytopathol., 1996. Vol. 144, N 11-12.-С.585-590
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7.
| Duffy B.K. Biological control of take-all of wheat in the pacific northwest of the USA using hypovirulent Gaeumannomyces graminis var. tritici and fluorescent pseudomonads // J. Phytopathol., 1996. Vol. 144, N 11-12.-С.585-590
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8.
| Duffy B.K. Biological control of take-all of wheat in the pacific northwest of the USA using hypovirulent Gaeumannomyces graminis var. tritici and fluorescent pseudomonads // J. Phytopathol., 1996. Vol. 144, N 11-12.-С.585-590
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9.
| Dynamics of sugar beet colonization by Pythium ultimum and Pseudomonas species: effects on seed rot and damping-off // Phytopathology, 1989. Vol. 79, N 6.-С.709-716
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10.
| Effect of take-all root infections on nitrate uptake in winter wheat // Plant Pathol., 2003. Vol. 52, N 1.-С.52-59
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11.
| Effect of take-all root infections on nitrate uptake in winter wheat // Plant Pathol., 2003. Vol. 52, N 1.-С.52-59
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12.
| Effects of fluquinconazole and silthiofam, applied as seed treatments to single or consecutive crops of wheat, on take-all epidemic development and grain yields // Ann. Appl. Biol., 2008. Vol. 152, N 2.-С.243-254
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13.
| Efficacy of certain fungicides in management of damping-off in bidi tobacco nursery // Tobacco Res., 1988. Vol. 14, N 2.-С.109-112
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14.
| Gardener Brian B.McSpadden Changes in populations of rhizosphere bacteria associated with take-all disease of wheat // Appl. and Environ. Microbiol., 2001. Vol. 67, N 10.-С.4414-4425
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15.
| Gardener Brian B.McSpadden Changes in populations of rhizosphere bacteria associated with take-all disease of wheat // Appl. and Environ. Microbiol., 2001. Vol. 67, N 10.-С.4414-4425
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16.
| Gardener Brian B.McSpadden Changes in populations of rhizosphere bacteria associated with take-all disease of wheat // Appl. and Environ. Microbiol., 2001. Vol. 67, N 10.-С.4414-4425
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17.
| Gosme Effect of host and inoculum patterns on take-all disease of wheat incidence, severity and disease gradient // Eur. J. Plant Pathol., 2011. Vol. 129, N 1.-С.119-131
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18.
| HeSS M. Ergebnisse und SchluSSfolgerungen aus den Befallsbeobachtungen der Schwarzbeinigkeit in Deutschland // Gesunde Pflanz., 2001. Vol. 53, N 1.-С.1-6
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19.
| Jancarik Padani a hynuti semenacku lesnich drevin // Les. pr., 1997. Vol. 76, N 3.-С.115-116
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20.
| Jancarik Padani a hynuti semenacku lesnich drevin // Les. pr., 1997. Vol. 76, N 3.-С.115-116
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