Bacon C W, Richardson M D, White J F. Modification and uses of endophyte-enhanced turfrass: A role for molecular technology[J]. Crop Science, 1997, 37(5): 1415-1425.
[3]
Li C J, Zhang X X, Li F, et al. Christopher. Disease and pests resistance of endophyte infected and non-infected drunken horse grass[A]. In: Popay A, Thom E R. Proceedings of the 6th International Symposium on Fungal Endophytes of Grasses[C]. Dunedin, New Zealand: New Zealand Grassland Association, 2007: 111-114.
[4]
Moy M, Belanger F, Duncan R, et al. Identification of epiphyllous mycelial nets on leaves of grass infected by Clavicip itaceous endophytes[J]. Symbiosis, 2000, 20: 291-302.
[5]
Li C J, Gao J H, Nan Z B. Interactions of Neotyphodium gansuense, Achnatherum inebrians and plant-pathogenic fungi[J]. Mycological Research, 2007, 111(10): 1220-1227.
[6]
缑小媛. 内生真菌对醉马草耐盐性影响的研究[D]. 兰州: 兰州大学, 2007.
[7]
Latch G C M. Physiological interactions of endophytic fungi and hosts biotic stress tolerence imparted to grasses by endophytes[J]. Agricuture, Ecosystems and Enviroment, 1993, 44: 143-156.
[8]
Malinowski D P, Brauer D K, Belesky D P. Neotyphodium coenophialum -endophyte affects root morphology of tall fedcue grown under phosphorus deficiency[J]. Journal of Agronamy and Crop Science, 1999, 183: 53-60.
[9]
Grace J B, Tilman D. Perspectives on Plant Competition[M]. London: Academic Press, 1990.
Malinowski D P, Leuchtmann A, Schmidt D, et al. Growth and water status in meadow fescue is affected by Neotyphodium and Phialophora species endophytes[J]. Agronomy Journal, 1997, 89: 673-678.
Malinowski D P, Belesky D P. Adaptation of endophyte-infected cool-season grasses to environment stresses: Mechanisms of drought and mineral stress tolerance[J]. Crop Science, 2000, 40(4): 923-940.
De Battista J P, Bacon C W, Severson R, et al. Indole acetic acid production by the fungal endophyte of tall fescue[J]. Agronomy Journal, 1990, 82: 878.
[18]
Hill N S, Stringer W C, Rottinghaus G E, et al. Growth, morphological, and chemical component response of tall fescue to Acremonium coenophialum[J]. Crop Science, 1990, 30: 156-161.
Li C J, Nan Z B, Gao J H, et al. Detection and distribution of Neotyphodium-Achnatherum inebrians association in China[A]. In: Kallenbach R, Rosenkrans C, Locked R. Proceedings of 5th International Neotyphodium/Grass Interactions Symposium[C]. Arkansas. USA, 2004: 24-27.
[22]
West C P, Gwinn K D. Role of Acremonium in drought, pest and disease tolerances of grasses[A]. In: Hume D E, Latch G C M, Easton H S, et al. Proceeding of the 2nd International Symposium on Acremonium/Grass Interactions: Plenary Papers[C]. Palmerston North, New Zealand, 1993: 11-30.
[23]
Malinowski D P. Adaptation of endophyte-infected cool-season grasses to enviroment stresses: Mechanisms of drought and mineral stress tolerance[J]. Crop Science, 2000, 40(4): 923-940.
[24]
De Battista J P, Bouton J H, Bacon C W, et al. Rhizome and herbage production of endophyte removed tall fescue clones and populations[J]. Agronomy Journal, 1990, 82: 651-654.
[25]
Arechevaleta M, Bacon C W, Hoveland C S, et al. Effect of the tall fescue endophyte on plant response to environmental stress[J]. Agronomy Journal, 1989, 81: 83-90.
[26]
Keddy P, Nielsen K, Weiher E, et al. Relative competitive performance of 63 species of terrestrial herbaceous plants[J]. Journal of Vegetation Science, 2002, 13: 5-16.