Perotto, Silvia; Daghino, Stefania; Martino, Elena (2018). "Ericoid mycorrhizal fungi and their genomes: another side to the mycorrhizal symbiosis?". New Phytologist. 220 (4): 1141. Bibcode:2018NewPh.220.1141P. doi:10.1111/nph.15218. PMID29851103.
Ward, Elisabeth B.; Duguid, Marlyse C.; Kuebbing, Sara E.; Lendemer, James C.; Bradford, Mark A. (2022). "The functional role of ericoid mycorrhizal plants and fungi on carbon and nitrogen dynamics in forests". New Phytologist. 235 (5): 1701–1718. Bibcode:2022NewPh.235.1701W. doi:10.1111/nph.18307. PMID35704030.
Martin, Francis M.; van der Heijden, Marcel G. A. (2024). "The mycorrhizal symbiosis: research frontiers in genomics, ecology, and agricultural application". New Phytologist. 242 (4): 1486–1506. Bibcode:2024NewPh.242.1486M. doi:10.1111/nph.19541. PMID38297461.
Cejpková, J.; Gryndler, M.; Hršelová, H.; Kotrba, P.; Řanda, Z.; Greňová, I.; Borovička, J. (2016). "Bioaccumulation of heavy metals, metalloids, and chlorine in ectomycorrhizae from smelter-polluted area". Environmental Pollution. 218: 176–185. Bibcode:2016EPoll.218..176C. doi:10.1016/j.envpol.2016.08.009. PMID27569718.
Simon, L.; Bousquet, J.; Lévesque, R. C.; Lalonde, M. (1993). "Origin and diversification of endomycorrhizal fungi and coincidence with vascular land plants". Nature. 363 (6424): 67–69. Bibcode:1993Natur.363...67S. doi:10.1038/363067a0. S2CID4319766.
Midgley, DJ; Chambers, SM; Cairney, J. W. G. (2002). "Spatial distribution of fungal endophyte genotypes in a Woollsia pungens (Ericaceae) root system". Australian Journal of Botany. 50 (5): 559–565. Bibcode:2002AuJB...50..559M. doi:10.1071/BT02020.
Hoeksema, Jason D.; Bever, James D.; Chakraborty, Sounak; Chaudhary, V. Bala; Gardes, Monique; Gehring, Catherine A.; Hart, Miranda M.; Housworth, Elizabeth Ann; Kaonongbua, Wittaya; Klironomos, John N.; Lajeunesse, Marc J.; Meadow, James; Milligan, Brook G.; Piculell, Bridget J.; Pringle, Anne; Rúa, Megan A.; Umbanhowar, James; Viechtbauer, Wolfgang; Wang, Yen-Wen; Wilson, Gail W. T.; Zee, Peter C. (16 August 2018). "Evolutionary history of plant hosts and fungal symbionts predicts the strength of mycorrhizal mutualism". Communications Biology. 1 (1): 116. doi:10.1038/s42003-018-0120-9. PMC6123707. PMID30271996.
Martin, Francis M.; van der Heijden, Marcel G. A. (2024). "The mycorrhizal symbiosis: research frontiers in genomics, ecology, and agricultural application". New Phytologist. 242 (4): 1486–1506. Bibcode:2024NewPh.242.1486M. doi:10.1111/nph.19541. PMID38297461.
Azcón-Aguilar, C.; Barea, J. M. (29 October 1996). "Arbuscular mycorrhizas and biological control of soil-borne plant pathogens – an overview of the mechanisms involved". Mycorrhiza. 6 (6): 457–464. doi:10.1007/s005720050147. S2CID25190159.
Zeng, Ren-Sen (2006). "Disease Resistance in Plants Through Mycorrhizal Fungi Induced Allelochemicals". Allelochemicals: Biological Control of Plant Pathogens and Diseases. Disease Management of Fruits and Vegetables. Vol. 2. pp. 181–192. doi:10.1007/1-4020-4447-X_10. ISBN1-4020-4445-3.
Kamieński, Franciszek (1882). "Les organes végétatifs de Monotropa hypopitys L."" [The vegetative organs of Monotropa hypopitys L.]. Mémoires de la Société nat. Des Sciences naturelles et mathém. De Cherbourg (in French). 3 (24).. Berch, S. M.; Massicotte, H. B.; Tackaberry, L. E. (July 2005). "Re-publication of a translation of 'The vegetative organs of Monotropa hypopitys L.' published by F. Kamienski in 1882, with an update on Monotropa mycorrhizas". Mycorrhiza. 15 (5): 323–32. Bibcode:2005Mycor..15..323B. doi:10.1007/s00572-004-0334-1. PMID15549481. S2CID3162281.
Monz, C. A.; Hunt, H. W.; Reeves, F. B.; Elliott, E. T. (1994). "The response of mycorrhizal colonization to elevated CO2 and climate change in Pascopyrum smithii and Bouteloua gracilis". Plant and Soil. 165 (1): 75–80. Bibcode:1994PlSoi.165...75M. doi:10.1007/bf00009964. S2CID34893610.
Hobbie, John E.; Hobbie, Erik A.; Drossman, Howard; et al. (2009). "Mycorrhizal fungi supply nitrogen to host plants in Arctic tundra and boreal forests: 15N is the key signal". Canadian Journal of Microbiology. 55 (1): 84–94. doi:10.1139/w08-127. hdl:1912/2902. PMID19190704.
Hogan, C.M. (2011). "Phosphate". In Jorgensen, A.; Cleveland, C.J. (eds.). Encyclopedia of Earth. Washington DC: National Council for Science and the Environment. Archived from the original on 2012-10-25.
Hobbie, John E.; Hobbie, Erik A.; Drossman, Howard; et al. (2009). "Mycorrhizal fungi supply nitrogen to host plants in Arctic tundra and boreal forests: 15N is the key signal". Canadian Journal of Microbiology. 55 (1): 84–94. doi:10.1139/w08-127. hdl:1912/2902. PMID19190704.
Perotto, Silvia; Daghino, Stefania; Martino, Elena (2018). "Ericoid mycorrhizal fungi and their genomes: another side to the mycorrhizal symbiosis?". New Phytologist. 220 (4): 1141. Bibcode:2018NewPh.220.1141P. doi:10.1111/nph.15218. PMID29851103.
Ward, Elisabeth B.; Duguid, Marlyse C.; Kuebbing, Sara E.; Lendemer, James C.; Bradford, Mark A. (2022). "The functional role of ericoid mycorrhizal plants and fungi on carbon and nitrogen dynamics in forests". New Phytologist. 235 (5): 1701–1718. Bibcode:2022NewPh.235.1701W. doi:10.1111/nph.18307. PMID35704030.
Martin, Francis M.; van der Heijden, Marcel G. A. (2024). "The mycorrhizal symbiosis: research frontiers in genomics, ecology, and agricultural application". New Phytologist. 242 (4): 1486–1506. Bibcode:2024NewPh.242.1486M. doi:10.1111/nph.19541. PMID38297461.
Cejpková, J.; Gryndler, M.; Hršelová, H.; Kotrba, P.; Řanda, Z.; Greňová, I.; Borovička, J. (2016). "Bioaccumulation of heavy metals, metalloids, and chlorine in ectomycorrhizae from smelter-polluted area". Environmental Pollution. 218: 176–185. Bibcode:2016EPoll.218..176C. doi:10.1016/j.envpol.2016.08.009. PMID27569718.
Simon, L.; Bousquet, J.; Lévesque, R. C.; Lalonde, M. (1993). "Origin and diversification of endomycorrhizal fungi and coincidence with vascular land plants". Nature. 363 (6424): 67–69. Bibcode:1993Natur.363...67S. doi:10.1038/363067a0. S2CID4319766.
Midgley, DJ; Chambers, SM; Cairney, J. W. G. (2002). "Spatial distribution of fungal endophyte genotypes in a Woollsia pungens (Ericaceae) root system". Australian Journal of Botany. 50 (5): 559–565. Bibcode:2002AuJB...50..559M. doi:10.1071/BT02020.
Martin, Francis M.; van der Heijden, Marcel G. A. (2024). "The mycorrhizal symbiosis: research frontiers in genomics, ecology, and agricultural application". New Phytologist. 242 (4): 1486–1506. Bibcode:2024NewPh.242.1486M. doi:10.1111/nph.19541. PMID38297461.
Kamieński, Franciszek (1882). "Les organes végétatifs de Monotropa hypopitys L."" [The vegetative organs of Monotropa hypopitys L.]. Mémoires de la Société nat. Des Sciences naturelles et mathém. De Cherbourg (in French). 3 (24).. Berch, S. M.; Massicotte, H. B.; Tackaberry, L. E. (July 2005). "Re-publication of a translation of 'The vegetative organs of Monotropa hypopitys L.' published by F. Kamienski in 1882, with an update on Monotropa mycorrhizas". Mycorrhiza. 15 (5): 323–32. Bibcode:2005Mycor..15..323B. doi:10.1007/s00572-004-0334-1. PMID15549481. S2CID3162281.
Monz, C. A.; Hunt, H. W.; Reeves, F. B.; Elliott, E. T. (1994). "The response of mycorrhizal colonization to elevated CO2 and climate change in Pascopyrum smithii and Bouteloua gracilis". Plant and Soil. 165 (1): 75–80. Bibcode:1994PlSoi.165...75M. doi:10.1007/bf00009964. S2CID34893610.
hathitrust.org
babel.hathitrust.org
Kamieński, Franciszek (1885). "Über die auf Wurzelsymbiose beruhende Ernährung gewisser Bäume durch unterirdische Pilze" [On the nourishing, via root symbiosis, of certain trees by underground fungi]. Berichte der Deutschen Botanischen Gesellschaft (in German). 3: 128–145. From p. 129: "Der ganze Körper ist also weder Baumwurzel noch Pilz allein, sondern ähnlich wie der Thallus der Flechten, eine Vereinigung zweier verschiedener Wesen zu einem einheitlichen morphologischen Organ, welches vielleicht passend als Pilzwurzel, Mycorhiza bezeichnet werden kann." (The whole body is thus neither tree root nor fungus alone, but similar to the thallus of lichens, a union of two different organisms into a single morphological organ, which can be aptly designated as a "fungus root", a mycorrhiza.)
Perotto, Silvia; Daghino, Stefania; Martino, Elena (2018). "Ericoid mycorrhizal fungi and their genomes: another side to the mycorrhizal symbiosis?". New Phytologist. 220 (4): 1141. Bibcode:2018NewPh.220.1141P. doi:10.1111/nph.15218. PMID29851103.
Ward, Elisabeth B.; Duguid, Marlyse C.; Kuebbing, Sara E.; Lendemer, James C.; Bradford, Mark A. (2022). "The functional role of ericoid mycorrhizal plants and fungi on carbon and nitrogen dynamics in forests". New Phytologist. 235 (5): 1701–1718. Bibcode:2022NewPh.235.1701W. doi:10.1111/nph.18307. PMID35704030.
Martin, Francis M.; van der Heijden, Marcel G. A. (2024). "The mycorrhizal symbiosis: research frontiers in genomics, ecology, and agricultural application". New Phytologist. 242 (4): 1486–1506. Bibcode:2024NewPh.242.1486M. doi:10.1111/nph.19541. PMID38297461.
Cejpková, J.; Gryndler, M.; Hršelová, H.; Kotrba, P.; Řanda, Z.; Greňová, I.; Borovička, J. (2016). "Bioaccumulation of heavy metals, metalloids, and chlorine in ectomycorrhizae from smelter-polluted area". Environmental Pollution. 218: 176–185. Bibcode:2016EPoll.218..176C. doi:10.1016/j.envpol.2016.08.009. PMID27569718.
Prout, James N.; Williams, Alex; Wanke, Alan; Schornack, Sebastian; Ton, Jurriaan; Field, Katie J. (2023). "Mucoromycotina 'fine root endophytes': a new molecular model for plant–fungal mutualisms?". Trends in Plant Science. 29 (6). PMID38102045.
Hoeksema, Jason D.; Bever, James D.; Chakraborty, Sounak; Chaudhary, V. Bala; Gardes, Monique; Gehring, Catherine A.; Hart, Miranda M.; Housworth, Elizabeth Ann; Kaonongbua, Wittaya; Klironomos, John N.; Lajeunesse, Marc J.; Meadow, James; Milligan, Brook G.; Piculell, Bridget J.; Pringle, Anne; Rúa, Megan A.; Umbanhowar, James; Viechtbauer, Wolfgang; Wang, Yen-Wen; Wilson, Gail W. T.; Zee, Peter C. (16 August 2018). "Evolutionary history of plant hosts and fungal symbionts predicts the strength of mycorrhizal mutualism". Communications Biology. 1 (1): 116. doi:10.1038/s42003-018-0120-9. PMC6123707. PMID30271996.
Martin, Francis M.; van der Heijden, Marcel G. A. (2024). "The mycorrhizal symbiosis: research frontiers in genomics, ecology, and agricultural application". New Phytologist. 242 (4): 1486–1506. Bibcode:2024NewPh.242.1486M. doi:10.1111/nph.19541. PMID38297461.
Prout, James N.; Williams, Alex; Wanke, Alan; Schornack, Sebastian; Ton, Jurriaan; Field, Katie J. (2023). "Mucoromycotina 'fine root endophytes': a new molecular model for plant–fungal mutualisms?". Trends in Plant Science. 29 (6). PMID38102045.
Kamieński, Franciszek (1882). "Les organes végétatifs de Monotropa hypopitys L."" [The vegetative organs of Monotropa hypopitys L.]. Mémoires de la Société nat. Des Sciences naturelles et mathém. De Cherbourg (in French). 3 (24).. Berch, S. M.; Massicotte, H. B.; Tackaberry, L. E. (July 2005). "Re-publication of a translation of 'The vegetative organs of Monotropa hypopitys L.' published by F. Kamienski in 1882, with an update on Monotropa mycorrhizas". Mycorrhiza. 15 (5): 323–32. Bibcode:2005Mycor..15..323B. doi:10.1007/s00572-004-0334-1. PMID15549481. S2CID3162281.
Hobbie, John E.; Hobbie, Erik A.; Drossman, Howard; et al. (2009). "Mycorrhizal fungi supply nitrogen to host plants in Arctic tundra and boreal forests: 15N is the key signal". Canadian Journal of Microbiology. 55 (1): 84–94. doi:10.1139/w08-127. hdl:1912/2902. PMID19190704.
Hoeksema, Jason D.; Bever, James D.; Chakraborty, Sounak; Chaudhary, V. Bala; Gardes, Monique; Gehring, Catherine A.; Hart, Miranda M.; Housworth, Elizabeth Ann; Kaonongbua, Wittaya; Klironomos, John N.; Lajeunesse, Marc J.; Meadow, James; Milligan, Brook G.; Piculell, Bridget J.; Pringle, Anne; Rúa, Megan A.; Umbanhowar, James; Viechtbauer, Wolfgang; Wang, Yen-Wen; Wilson, Gail W. T.; Zee, Peter C. (16 August 2018). "Evolutionary history of plant hosts and fungal symbionts predicts the strength of mycorrhizal mutualism". Communications Biology. 1 (1): 116. doi:10.1038/s42003-018-0120-9. PMC6123707. PMID30271996.
Simon, L.; Bousquet, J.; Lévesque, R. C.; Lalonde, M. (1993). "Origin and diversification of endomycorrhizal fungi and coincidence with vascular land plants". Nature. 363 (6424): 67–69. Bibcode:1993Natur.363...67S. doi:10.1038/363067a0. S2CID4319766.
Azcón-Aguilar, C.; Barea, J. M. (29 October 1996). "Arbuscular mycorrhizas and biological control of soil-borne plant pathogens – an overview of the mechanisms involved". Mycorrhiza. 6 (6): 457–464. doi:10.1007/s005720050147. S2CID25190159.
Kamieński, Franciszek (1882). "Les organes végétatifs de Monotropa hypopitys L."" [The vegetative organs of Monotropa hypopitys L.]. Mémoires de la Société nat. Des Sciences naturelles et mathém. De Cherbourg (in French). 3 (24).. Berch, S. M.; Massicotte, H. B.; Tackaberry, L. E. (July 2005). "Re-publication of a translation of 'The vegetative organs of Monotropa hypopitys L.' published by F. Kamienski in 1882, with an update on Monotropa mycorrhizas". Mycorrhiza. 15 (5): 323–32. Bibcode:2005Mycor..15..323B. doi:10.1007/s00572-004-0334-1. PMID15549481. S2CID3162281.
Monz, C. A.; Hunt, H. W.; Reeves, F. B.; Elliott, E. T. (1994). "The response of mycorrhizal colonization to elevated CO2 and climate change in Pascopyrum smithii and Bouteloua gracilis". Plant and Soil. 165 (1): 75–80. Bibcode:1994PlSoi.165...75M. doi:10.1007/bf00009964. S2CID34893610.
Hogan, C.M. (2011). "Phosphate". In Jorgensen, A.; Cleveland, C.J. (eds.). Encyclopedia of Earth. Washington DC: National Council for Science and the Environment. Archived from the original on 2012-10-25.