Lyons P C, Evans J J, Bacon C W.Effects of the fungal endophyte Acremonium coenophialum on nitrogen accumulation and metabolism in tall fescue.Plant Physiology, 1990, 92:726-732.
[2]
Toussaint J P, St-Arnaud M, Charest C.Nitrogen transfer and assimilation between the arbuscular mycorrhizal fungus Glomus intraradices Schenck & Smith and Ri T-DNA roots of Daucus carota L.in an in vitro compartmented system.Canadian Journal of Microbiology, 2004, 50:251-260.
[3]
Jin H, Pfeffer P E, Douds D D, Piotrowski E, Lammers P J, Shachar-Hill Y.The uptake, metabolism, transport and transfer of nitrogen in an arbuscular mycorrhizal symbiosis.New Phytologist, 2005, 168:687-696.
[4]
Rahman M H, Saiga S.Endophytic fungi (Neotyphodium coenophialum) affect the growth and mineral uptake, transport and efficiency ratios in tall fescue (Festuca arundinacea) .Plant and Soil, 2005, 272:163-171.
[5]
Blanke V, Renker C, Wanger M, Füllner K, Held M, Kuhn A, Buscot F.Nitrogen supply affects arbuscular mycorrhizal colonization of Artemisia vulgaris in a phosphate-polluted field site.New Phytologist, 2005, 166:981-992.
[6]
Malinowski D P, Alloush G A, Belesky D P.Leaf endophyte Neotyphodium coenophialum modifies mineral uptake in tall fescue.Plant and Soil, 2000, 227:115-126.
[7]
Ball O J P, Barker G M, Prestidge R A, Lauren D R.Distribution and accumulation of the alkaloid peramine in Neotyphodium lolii-infected perennial ryegrass.Journal of Chemical Ecology, 1997, 23:1419-1433.
[8]
Brem D, Leuchtmann A.Intraspecific competition of endophyte infected vs.uninfected plants of two woodland grass species.Oikos, 2002, 96(2):281-290.
Clay K, Schardl C.Evolutionary origins and ecological consequences of endophyte symbiosis with grasses.American Naturalist, 2002, 160:99-127.
[12]
Malinowski D P, Belesky D P.Adaption of endophyte-infected cool-season grasses to environment stress:Mechanisms of drought and mineral stress tolerance.Crop Science, 2000, 40:923-940.
Chu-chou, M M, Guo B, An Z Q, Hendrix J W, Ferris R S, Siegel M R, Dougherty C T, Burrus P B.Suppression of mycorrhizal fungi in fescue by the Acremonium coenophialum endophyte.Soil Biology & Biochemistry, 1992, 24:633-637.
[18]
Guo B Z, Hendrix J, An Z Q, Ferriss R.Role of Acremonium endophyte of fescue on inhibition of colonization and reproduction of mycorrhizal fungi.Mycologia, 1992, 84:882-885.
[19]
Omacini M, Eggers T, Bonkowski M, Gange A C, Jones T H.Leaf endophytes affect mycorrhizal status and growth of co-infected and neighbouring plants.Functional Ecology, 2006, 20:226-232.
[20]
Müller J.Artificial infection by endophytes affects growth and mycorrhizal colonisation of Lolium perenne.Functional Plant Biology, 2003, 30:419-424.
[21]
Mack K M L, Rudgers J A.Balancing multiple mutualists:asymmetric interactions among plants, arbuscular mycorrhizal fungi and fungal endophytes.Oikos, 2008, 117:310-320.
[22]
Liu Q H, Parsons A J, Xue H, Fraser K, Ryarn G D, Newman J A, Rasmussen S.Competition between foliar Neotyphodium lolii endophytes and mycorrhizal Glomus spp.fungi in Lolium perenne depends on resource supply and host carbohydrate content.Functional Ecology, 2011, 25:910-920.
[23]
Barker G M.Mycorrhizal infection influences Acremonium-induced resistance to Argentine stem weevil in ryegrass.Proceedings of 40th New Zealand Weed and Pest Control Conference.Palmerston North:New Zealand Weed and Pest Control Society, 1987:199-203.
[24]
Vicari M, Hatcher P E, Ayres P G.Combined effect of floia and mycorrhizal endophytes on an insect herbivore.Ecology, 2002, 83(9):2452-2464.
[25]
Phillips J M, Hayman D S.Improved procedures for clearing roots and staining parasitic and vesicular-arbuseular mycorrhizal fungi for rapid assessment of infection.Transactions of the British Mycological Society, 1970, 55:158-161.
[26]
Schardl C L, Phillips T D.Protective grass endophytes where are they from and where are they going.Plant Disease, 1997, 81(5):430-438.
[27]
Omacini M, Semmartin M, Pérez L I, Gundel P E.Grass-endophyte symbiosis:A neglected aboveground interaction with multiple belowground consequences.Applied Soil Ecology, 2012, 61:273-279.