(en) Ajit Varma, « Piriformospora indica, a Cultivable Plant-Growth-Promoting Root Endophyte », Applied and Environmental Microbiology, vol. 65, no 6, , p. 2741–2744 (PMID10347070, PMCID91405, lire en ligne).
doi.org
dx.doi.org
(en) B. Wang et Y.L. Qiu, « Phylogenetic distribution and evolution of mycorrhizae in land plants », Mycorrhiza, vol. 16, no 5, , p. 299–363 (PMID16845554, DOI10.1007/s00572-005-0033-6).
(en) Y. Lekberg et R. T. Koide, « Is plant performance limited by abundance of arbuscular mycorrhizal fungi? A metaanalysis of studies published between 1988 and 2003 », New Phytol, vol. 168, no 1, , p. 189–204 (PMID16159333, DOI10.1111/j.1469-8137.2005.01490.x).
(en) A.E. Arnold, L.C. Mejia, D. Kyllo, E.I. Rojas, Z. Maynard, N. Robbins et E.A. Herre, « Fungal endophytes limit pathogen damage in a tropical tree », Proc. Nat. Acad. Sci. U.S.A., vol. 100, no 26, , p. 15649–15654 (PMID14671327, PMCID307622, DOI10.1073/pnas.2533483100).
(en) J.S. Thaler, « Jasmonate-inducible plant defences cause increased parasitism of herbivores », Nature, vol. 399, no 6737, , p. 686–688 (DOI10.1038/21420).
(en) D. H. Janzen, « Coevolution of mutualism between ants and acacias in Central America », Evolution, vol. 20, no 3, , p. 249–275 (DOI10.2307/2406628).
(en) F.E. Vega, F. Posada, M.C. Aime, M. Pava-Ripoll, F. Infante et S.A. Rehner, « Entomopathogenic fungal endophytes », Biological Control, vol. 46, , p. 72–82 (DOI10.1016/j.biocontrol.2008.01.008).
(en) J Baverstock, S.L. Elliot, P.G. Alderson et J.K. Pell, « Response of the entomopathogenic fungus Pandora neoaphidis to aphid-induced plant volatiles », Journal of Invertebrate Pathology, vol. 89, no 2, , p. 157–164 (PMID16005016, DOI10.1016/j.jip.2005.05.006).
(en) S. Gómez-Vidal, J. Salinas, M. Tena et L.V. Lopez-Llorca, « Proteomic analysis of date palm (Phoenix dactylifera L.) responses to endophytic colonization by entomopathogenic fungi », Electrophoresis, vol. 30, no 17, , p. 2996–3005 (PMID19676091, DOI10.1002/elps.200900192).
(en) A.E. Arnold et F. Lutzoni, « Diversity and host range of foliar fungal endophytes: are tropical leaves biodiversity hotspots? », Ecology, vol. 88, no 3, , p. 541–549 (PMID17503580, DOI10.1890/05-1459).
(en) A. Leuchtmann et K. Clay, « Isozyme variation in the Acremonium/Epichloe fungal endophyte complex », Phytopathology, vol. 80, no 10, , p. 1133–1139 (DOI10.1094/Phyto-80-1133).
(en) Karl-Heinz Kogel, « The endophytic fungus Piriformospora indica reprograms barley to salt-stress tolerance, disease resistance, and higher yield », Proc Natl Acad Sci(PNAS), vol. 102, no 38, , p. 13386–13391 (PMID16174735, PMCID1224632, DOI10.1073/pnas.0504423102).
(en) A. Leuchtmann et K. Clay, « Isozyme variation in the fungus Atkinsonella hypoxylon within and among populations of its host grasses », Can. J. Bot., vol. 67, no 9, , p. 2600–2607 (DOI10.1139/b89-336).
(en) D.M. Rykard, C.W. Bacon et E.S. Luttrell, « Host relations of Myriogenospora atramentosa and Balansia epichloe (Clavicipitaceae) », Phytopathology, vol. 75, no 8, , p. 950–956 (DOI10.1094/Phyto-75-950).
(en) D.D. Rowan, M.B. Hunt et D.L. Gaynor, « Peramine, a novel insect feeding deterrent from ryegrass infected with the endophyte Acremonium loliae », J. Chem. Soc. Chem. Commun, vol. 1986, , p. 935–936 (DOI10.1039/c39860000935).
(en) D.X. Zhang, P. Nagabhyru et C.L. Schardl, « Regulation of a Chemical Defense against Herbivory Produced by Symbiotic Fungi in Grass Plants », Plant Physiology, vol. 150, no 2, , p. 1072–1082 (DOI10.1104/pp.109.138222).
(en) K. Clay et G.P. Cheplick, « Effect of ergot alkaloids from fungal endophyt-infected grasses on fall armyworm (Spodoptera frugiperda) », J. Chem. Ecol., vol. 15, , p. 169–182 (DOI10.1007/BF02027781).
(en) C.G. Patterson, D.A. Potter et F.F. Fannin, « Feeding deterrency of alkaloids from endophyte-infected grasses to Japanese beetle grubs », Entomol. Exp. Appl., vol. 61, no 3, , p. 285–289 (DOI10.1111/j.1570-7458.1991.tb01561.x).
(en) D.D. Rowan, J.J. Dymock et M.A. Brimble, « Effect of fungal metabolite peramine and analogs on feeding and development of Argentine stem weevil (Listronotus bonariensis) », J. Chem. Ecol., vol. 16, no 5, , p. 1683–1695 (DOI10.1007/BF01014100).
(en) K. Akiyama et H. Hayashi, « Arbuscular mycorrhizal fungus-promoted accumulation of two new triterpenoids in cucumber roots », Biosci. Biotechnol. Biochem., vol. 66, , p. 762–769 (DOI10.1271/bbb.66.762).
(en) F. Rapparini, J. Llusia et J. Penuelas, « Effect of arbuscular mycorrhizal (AM) colonization on terpene emission and content of Artemisia annua L », Plant Biol., vol. 10, no 1, , p. 108–122 (DOI10.1055/s-2007-964963).
(en) J. Koricheva, A.C. Gange et T. Jones, « Effects of mycorrhizal fungi on insect herbivores: a meta-analysis », Ecology, vol. 90, no 8, , p. 2088–2097 (DOI10.1890/08-1555.1).
(en) C. Gehring et A. Bennett, « Mycorrhizal fungal-plant-insect interactions: the importance of a community approach », Environ. Entomol, vol. 38, no 1, , p. 93–102 (DOI10.1603/022.038.0111).
(en) J.H. Langenheim, « Higher-plant terpenoids – a phytocentric view of their ecological roles », J. Chem. Ecol., vol. 20, no 6, , p. 1223–1280 (DOI10.1007/BF02059809).
(en) H. Kagata et T. Ohgushi, « Bottom-up trophic cascades and material transfer in terrestrial food webs », Ecol. Res., vol. 21, , p. 26–34 (DOI10.1007/s11284-005-0124-z).
(en) A. Pineda, S.J. Zheng, J.J.A. van Loon, C.M.J. Pieterse et M. Dicke, « Helping plants to deal with insects: the role of beneficial soil-borne microbes », Trends in Plant Science, vol. 15, no 9, , p. 507–514 (DOI10.1016/j.tplants.2010.05.007).
(en) A.C. Gange, V.K. Brown et D.M. Aplin, « Multitrophic links between arbuscular mycorrhizal fungi and insect parasitoids », Ecol. Lett., vol. 6, no 12, , p. 1051–1055 (DOI10.1046/j.1461-0248.2003.00540.x).
(en) J.H. Valenzuela-Soto, M.G. Estrada-Hernandez, E. Ibarra-Laclette et J.P. Delano-Frier, « Inoculation of tomato plants (Solanum lycopersicum) with growth-promoting Bacillus subtilis retards whitefly Bemisia tabaci development », Planta, vol. 231, no 2, , p. 397–410 (DOI10.1007/s00425-009-1061-9).
(en) A.C. Gange et H.E. Nice, « Performance of the thistle gall fly, Urophora cardui, in relation to host plant nitrogen and mycorrhizal colonization », New Phytologist, vol. 137, no 2, , p. 335–343 (DOI10.1046/j.1469-8137.1997.00813.x).
(en) P. Gosling, A. Hodge, G. Goodlass et G.D. Bending, « Arbuscular mycorrhizal fungi and organic farming », Agric. Ecosyst. Environ, vol. 113, , p. 17–35 (DOI10.1016/j.agee.2005.09.009).
(en) B. Wang et Y.L. Qiu, « Phylogenetic distribution and evolution of mycorrhizae in land plants », Mycorrhiza, vol. 16, no 5, , p. 299–363 (PMID16845554, DOI10.1007/s00572-005-0033-6).
(en) Y. Lekberg et R. T. Koide, « Is plant performance limited by abundance of arbuscular mycorrhizal fungi? A metaanalysis of studies published between 1988 and 2003 », New Phytol, vol. 168, no 1, , p. 189–204 (PMID16159333, DOI10.1111/j.1469-8137.2005.01490.x).
(en) A.E. Arnold, L.C. Mejia, D. Kyllo, E.I. Rojas, Z. Maynard, N. Robbins et E.A. Herre, « Fungal endophytes limit pathogen damage in a tropical tree », Proc. Nat. Acad. Sci. U.S.A., vol. 100, no 26, , p. 15649–15654 (PMID14671327, PMCID307622, DOI10.1073/pnas.2533483100).
(en) J Baverstock, S.L. Elliot, P.G. Alderson et J.K. Pell, « Response of the entomopathogenic fungus Pandora neoaphidis to aphid-induced plant volatiles », Journal of Invertebrate Pathology, vol. 89, no 2, , p. 157–164 (PMID16005016, DOI10.1016/j.jip.2005.05.006).
(en) S. Gómez-Vidal, J. Salinas, M. Tena et L.V. Lopez-Llorca, « Proteomic analysis of date palm (Phoenix dactylifera L.) responses to endophytic colonization by entomopathogenic fungi », Electrophoresis, vol. 30, no 17, , p. 2996–3005 (PMID19676091, DOI10.1002/elps.200900192).
(en) A.E. Arnold et F. Lutzoni, « Diversity and host range of foliar fungal endophytes: are tropical leaves biodiversity hotspots? », Ecology, vol. 88, no 3, , p. 541–549 (PMID17503580, DOI10.1890/05-1459).
(en) A. Leuchtmann, « Systematics, distribution and host specificity of grass endophytes », Nat. Toxins, vol. 1, no 3, , p. 150–162 (PMID1344916).
(en) Ajit Varma, « Piriformospora indica, a Cultivable Plant-Growth-Promoting Root Endophyte », Applied and Environmental Microbiology, vol. 65, no 6, , p. 2741–2744 (PMID10347070, PMCID91405, lire en ligne).
(en) Karl-Heinz Kogel, « The endophytic fungus Piriformospora indica reprograms barley to salt-stress tolerance, disease resistance, and higher yield », Proc Natl Acad Sci(PNAS), vol. 102, no 38, , p. 13386–13391 (PMID16174735, PMCID1224632, DOI10.1073/pnas.0504423102).