Caga B, Flieger M, Olovsk J. Concentration of ergot alkaloids in Czech ecotypes of Lolium perenne and Festuca pratensis[J]. Grass and Forage Science, 1999, 54(4): 365-370.
[4]
Smith J M, Newton A C, Buck K W. DNA polymorphisms as genetic markers in cereal rust fungi[J]. Vortraege Fuer Pflanzenzuechtung, 1992, 8: 22-24.
Faeth S H, Bush L P, Sullivan T J. Peramine alkaloid variation in Neotyphodium-infected arizona fescue: Effects of endophyte and host genotype and environment[J]. Journal of Chemical Ecology, 2002, 28(8): 1511-1527.
[11]
Jia Q Z, Jin S L, Cao S Q, et al. Trending to prevalence and progress of CY32 and Shuiyuan14 pathotypesin Gansu Province[J]. Acta Phytophylacica Sinica, 2007, 34(3): 263-267.
Hill N S, Bouton J H, Adcock R A, et al. Symbiont regulation and reducing ergot alkaloid concentrattion by breeding endophyte-inffected tall fescue[J]. Journal of Chemical Ecology, 1997, 23(3): 691-701.
Bacon C W. Toxic endophyte-infected tall fescue and range grasses: Historic perspectives[J]. Journal of Animal Science, 1979, 73: 861-870.
[21]
Steele K A, Humphreys E, Wellings C R, et al. Support for stepwise mutation model for pathogen evolution in Australasian Puccinia striiformisf. sp. tritici by use of molecular markers[J]. Plant Pathology, 2001, 50: 174-180.