Monochaetia dimorphospora
- Category
- fungi
- Primary role
- pathogen fungal
- Class
- Sordariomycetes
- Order
- Xylariales
- Family
- Amphisphaeriaceae
- Genus
- Monochaetia
Fungi | Ascomycota | Sordariomycetes | Amphisphaeriales | Amphisphaeriaceae | Monochaetia
External: GBIF #5254424
0 AI-consensus-verified claims .
No verified claims involving this entity yet.
Aggregated via GloBI — not independently verified by AgroEco.
mutualism 9
- GloBI symbiontOf Monochaetia dimorphospora Cregger, M.A., Veach, A.M., Yang, Z.K., Crouch, M.J., Vilgalys, R., Tuskan, G.A. and Schadt, C.W., 2018. The Populus holobiont: dissecting the effects of plant niches and genotype on the microbiome.. Microbiome. doi:10.1186/s40168-018-0413-8 DOI
- GloBI symbiontOf Monochaetia dimorphospora Oono, R., Rasmussen, A. and Lefevre, E., 2017. Distance decay relationships in foliar fungal endophytes are driven by rare taxa.. Environmental Microbiology. doi:10.1111/1462-2920.1379 DOI
- GloBI symbiontOf Monochaetia dimorphospora Lee, M. R. and Hawkes, C. V., 2020. Plant and soil drivers of whole-plant microbiomes: variation in switchgrass fungi from coastal to mountain sites. Phytobiomes Journal. doi:10.1094/PBIOMES-07-20-0056-FI DOI
- GloBI symbiontOf Monochaetia dimorphospora Cordier, T., Robin, C., Capdevielle, X., Desprez-Loustau, M.L. and Vacher, C., 2012. Spatial variability of phyllosphere fungal assemblages: genetic distance predominates over geographic distance in a European beech stand (Fagus syluatica).. Fungal Ecology. doi:10.1016/j.funeco.2011.12.004 DOI
- GloBI symbiontOf Monochaetia dimorphospora Fukasawa, Y., Matsukura, K., Stephan, J.G., Makoto, K., Suzuki, S.N., Kominami, Y., Takagi, M., Tanaka, N., Takemoto, S., Kinuura, H. and Okano, K., 2021. Patterns of community composition and diversity in latent fungi of living Quercus serrata trunks across a range of oak wilt prevalence and climate variables in Japan. Fungal Ecology. doi:10.1016/j.funeco.2021.101095 DOI
- GloBI symbiontOf Monochaetia dimorphospora Griffin, E. A., Harrison, J. G., McCormick, M. K., Burghardt, K. T. and Parker, J. D., 2019. Tree Diversity Reduces Fungal Endophyte Richness and Diversity in a Large-Scale Temperate Forest Experiment.. Diversity. doi:10.3390/d11120234 DOI
- GloBI symbiontOf Monochaetia dimorphospora Pellitier, P. T., Zak, D. R. and Salley, S. O., 2019. Environmental filtering structures fungal endophyte communities in tree bark.. Molecular Ecology. doi:10.1111/mec.15237 DOI
- GloBI symbiontOf Monochaetia dimorphospora Rudgers, J.A., Fox, S., Porras-Alfaro, A., Herrera, J., Reazin, C., Kent, D.R., Souza, L-. Chung, Y.A. and Jumpponen, A., 2021. Biogeography of root-associated fungi in foundation grasses of North American plains.. Journal of Biogeography. doi:10.1111/jbi.14260 DOI
- GloBI symbiontOf Monochaetia dimorphospora U’Ren, J.M., Lutzoni, F., Miadlikowska, J., Zimmerman, N.B., Carbone, I., May, G. and Arnold, A.E., 2019. Host availability drives distributions of fungal endophytes in the imperilled boreal realm.. Nature Ecology & Evolution. doi:10.1038/s41559-019-0975-2 DOI
crop interaction 9
- GloBI symbiontOf Monochaetia dimorphospora Cregger, M.A., Veach, A.M., Yang, Z.K., Crouch, M.J., Vilgalys, R., Tuskan, G.A. and Schadt, C.W., 2018. The Populus holobiont: dissecting the effects of plant niches and genotype on the microbiome.. Microbiome. doi:10.1186/s40168-018-0413-8 DOI
- GloBI symbiontOf Monochaetia dimorphospora Oono, R., Rasmussen, A. and Lefevre, E., 2017. Distance decay relationships in foliar fungal endophytes are driven by rare taxa.. Environmental Microbiology. doi:10.1111/1462-2920.1379 DOI
- GloBI symbiontOf Monochaetia dimorphospora Lee, M. R. and Hawkes, C. V., 2020. Plant and soil drivers of whole-plant microbiomes: variation in switchgrass fungi from coastal to mountain sites. Phytobiomes Journal. doi:10.1094/PBIOMES-07-20-0056-FI DOI
- GloBI symbiontOf Monochaetia dimorphospora Cordier, T., Robin, C., Capdevielle, X., Desprez-Loustau, M.L. and Vacher, C., 2012. Spatial variability of phyllosphere fungal assemblages: genetic distance predominates over geographic distance in a European beech stand (Fagus syluatica).. Fungal Ecology. doi:10.1016/j.funeco.2011.12.004 DOI
- GloBI symbiontOf Monochaetia dimorphospora Fukasawa, Y., Matsukura, K., Stephan, J.G., Makoto, K., Suzuki, S.N., Kominami, Y., Takagi, M., Tanaka, N., Takemoto, S., Kinuura, H. and Okano, K., 2021. Patterns of community composition and diversity in latent fungi of living Quercus serrata trunks across a range of oak wilt prevalence and climate variables in Japan. Fungal Ecology. doi:10.1016/j.funeco.2021.101095 DOI
- GloBI symbiontOf Monochaetia dimorphospora Griffin, E. A., Harrison, J. G., McCormick, M. K., Burghardt, K. T. and Parker, J. D., 2019. Tree Diversity Reduces Fungal Endophyte Richness and Diversity in a Large-Scale Temperate Forest Experiment.. Diversity. doi:10.3390/d11120234 DOI
- GloBI symbiontOf Monochaetia dimorphospora Pellitier, P. T., Zak, D. R. and Salley, S. O., 2019. Environmental filtering structures fungal endophyte communities in tree bark.. Molecular Ecology. doi:10.1111/mec.15237 DOI
- GloBI symbiontOf Monochaetia dimorphospora Rudgers, J.A., Fox, S., Porras-Alfaro, A., Herrera, J., Reazin, C., Kent, D.R., Souza, L-. Chung, Y.A. and Jumpponen, A., 2021. Biogeography of root-associated fungi in foundation grasses of North American plains.. Journal of Biogeography. doi:10.1111/jbi.14260 DOI
- GloBI symbiontOf Monochaetia dimorphospora U’Ren, J.M., Lutzoni, F., Miadlikowska, J., Zimmerman, N.B., Carbone, I., May, G. and Arnold, A.E., 2019. Host availability drives distributions of fungal endophytes in the imperilled boreal realm.. Nature Ecology & Evolution. doi:10.1038/s41559-019-0975-2 DOI