Metarhizium anisopliae
- Category
- fungi
- Primary role
- biocontrol
- Class
- Sordariomycetes
- Order
- Hypocreales
- Family
- Clavicipitaceae
- Genus
- Metarhizium
Fungi | Ascomycota | Sordariomycetes | Hypocreales | Clavicipitaceae | Metarhizium
External: GBIF #2562645
3 AI-consensus-verified claims across 1 interaction category.
Related entities
Top entities sharing the most verified claims with Metarhizium anisopliae.
biocontrol 3 claims
- This entity is the subject of biocontrol on Cleonus punctiventris · effect: beneficial
“mass produce the fungus Metarhizium anisopliae...against the sugar beet curculio”
pathogenOf ✓ 2/2 AI critics agreed - This entity is the subject of biocontrol on Cleonus punctiventris · effect: beneficial
“mass produce the fungus Metarhizium anisopliae for use in the field against the sugar beet curculio”
pathogenOf ✓ 2/2 AI critics agreed - This entity is the subject of biocontrol on Adoretus sinicus (中曝商盒龟) · effect: beneficial
“A fungus found in soil, Metarrhizium anisoplia, infects and destroys many beetles”
pathogenOf ✓ 2/2 AI critics agreedHara A., Niino-DuPonte R. (2015) · Hawai'i Landscape Plant Pest Guide: Chewing Insects · p. 4 #6495687
Aggregated via GloBI — not independently verified by AgroEco.
biocontrol 8
- GloBI pathogenOf Popillia japonica Humber, R.A. 1992. Collection of entomopathogenic fungal cultures: catolog of strains, 1992. U.S. Department of Agriculture, Agriculture Research Service. ARS-110. 177pp. (Plant Protection Research Unit, U.S. Plant, Soil, and Water Laboratory, Tower Rd., Ithaca, N. Y. 14853-0331.); Krueger, S., Villani, M.G., Martins, A.S., and Roberts, D.W. 1992. Efficacy of soil applications of Metarhizium anisopliae Sorokin conidia, and standard lyophilized mycelial particles against scarab grubs. J. Invertebr. Pathol. 59:54-60.; Hanula, J. L., and Andreadis, T. G. 1988. Parasitic micro-organisms of Japanese beetle (Coleoptera: Scarabaeidae) and associated scarab larvae in Connecticut soils. Environmental Entomology 17: 709-714.; Hadley, C. H. 1939. Status of the Japanese beetle in the older area of infestation. Rep. Ent. Soc. Ont. 69: 18-21.; Humber, R.A. 1999? Collection of entomopathogenic fungal cultures (unpublished) U.S. Department of Agriculture, Agriculture Research Service, Plant Protection Research Unit, U.S. Plant, Soil, and Water Laboratory, Tower Rd., Ithaca, N. Y. 14853-0331.
- GloBI pathogenOf Chalcodermus aeneus Humber, R.A. 1992. Collection of entomopathogenic fungal cultures: catolog of strains, 1992. U.S. Department of Agriculture, Agriculture Research Service. ARS-110. 177pp. (Plant Protection Research Unit, U.S. Plant, Soil, and Water Laboratory, Tower Rd., Ithaca, N. Y. 14853-0331.); Doane, C.C., 1971. Field application of a Streptococcus causing brachyosis in larvae of Portheria dispar. J. Invertebr. Pathol. 17: 303-307.; HETRICK, L. A., 1946. On the biology of the cowpea curculio in Virginia. J. Econ. Ent. 39: 405.; Veen, K. H. 1968. Recherches sur la maladie due a Metarrhizium anisopliae chez le criquet pelerin. [In ] Thesis, Meded. Landbauwhogeschool l’Universite Agronomique Wageningen.
- GloBI pathogenOf Forficula auricularia BARSS, H. P. and STEARNS, H. C., 1925. The green muscardine fungus (Oospora destructor (METSCH.) DELACROIX) on European earwig and other insects in Oregon. Phytopathology 15:729.; Veen, K. H. 1968. Recherches sur la maladie due a Metarrhizium anisopliae chez le criquet pelerin. [In ] Thesis, Meded. Landbauwhogeschool l’Universite Agronomique Wageningen.
- GloBI pathogenOf Helicoverpa armigera CHARLES, V. K., 1941. A preliminary check list of the entomogenous fungi of North America. Insect Pest Surv. Bull. U.S. 21:707-785.; Veen, K. H. 1968. Recherches sur la maladie due a Metarrhizium anisopliae chez le criquet pelerin. [In ] Thesis, Meded. Landbauwhogeschool l’Universite Agronomique Wageningen.
- GloBI pathogenOf Ostrinia nubilalis Humber, R.A. 1992. Collection of entomopathogenic fungal cultures: catolog of strains, 1992. U.S. Department of Agriculture, Agriculture Research Service. ARS-110. 177pp. (Plant Protection Research Unit, U.S. Plant, Soil, and Water Laboratory, Tower Rd., Ithaca, N. Y. 14853-0331.)
- GloBI pathogenOf Diabrotica longicornis CHARLES, V. K., 1941. A preliminary check list of the entomogenous fungi of North America. Insect Pest Surv. Bull. U.S. 21:707-785.; Veen, K. H. 1968. Recherches sur la maladie due a Metarrhizium anisopliae chez le criquet pelerin. [In ] Thesis, Meded. Landbauwhogeschool l’Universite Agronomique Wageningen.
- GloBI pathogenOf Petrusa epilepsis CAMUNAS, M., 1919. Report of the commissioner of agriculture and labour. 19th Ann. Rept. Gov. P. R. Secy. War. App. IX: 685-707.; Veen, K. H. 1968. Recherches sur la maladie due a Metarrhizium anisopliae chez le criquet pelerin. [In ] Thesis, Meded. Landbauwhogeschool l’Universite Agronomique Wageningen.
- GloBI pathogenOf Rhagoletis completa CHARLES, V. K., 1941. A preliminary check list of the entomogenous fungi of North America. Insect Pest Surv. Bull. U.S. 21:707-785.; Veen, K. H. 1968. Recherches sur la maladie due a Metarrhizium anisopliae chez le criquet pelerin. [In ] Thesis, Meded. Landbauwhogeschool l’Universite Agronomique Wageningen.
mutualism 36
- GloBI symbiontOf Metarhizium anisopliae Wu, C., Wang, F., Ge, A., Zhang, H., Chen, G., Deng, Y., Yang, J., Chen, J. and Ge, T., 2021. Enrichment of microbial taxa after the onset of wheat yellow mosaic disease. Agriculture, Ecosystems & Environment. doi:10.1016/j.agee.2021.107651 DOI
- GloBI symbiontOf Metarhizium anisopliae Kirkman, E.R., Hilton, S., Sethuraman, G., Elias, D.M., Taylor, A., Clarkson, J., Soh, A.C., Bass, D., Ooi, G.T., McNamara, N.P. and Bending, G.D., 2022. Diversity and Ecological Guild Analysis of the Oil Palm Fungal Microbiome Across Root, Rhizosphere, and Soil Compartments.. Frontiers in microbiology. doi:10.3389/fmicb.2022.792928 DOI
- GloBI symbiontOf Metarhizium anisopliae Kamutando, C.N., Vikram, S., Kamgan-Nkuekam, G., Makhalanyane, T.P., Greve, M., Le Roux, J.J., Richardson, D.M., Cowan, D. and Valverde, A., 2017. Soil nutritional status and biogeography influence rhizosphere microbial communities associated with the invasive tree Acacia dealbata.. Scientific Reports. doi:10.1038/s41598-017-07018-w DOI
- GloBI symbiontOf Metarhizium anisopliae Liu, Y., Zhang, X., Yang, M.L. and Wang, S.M., 2020. Study on the correlation between soil microbial diversity and ambient environmental factors influencing the safflower distribution in Xinjiang. Journal of basic microbiology. doi:10.1002/jobm.201900626 DOI
- GloBI symbiontOf Metarhizium anisopliae Longley, Reid; Noel, Zachary A.; Benucci, Gian Maria Niccolo; Chilvers, Martin, I; Trail, Frances; Bonito, Gregory, 2020. Crop Management Impacts the Soybean (Glycine max) Microbiome. FRONTIERS IN MICROBIOLOGY. doi:10.3389/fmicb.2020.01116 DOI
- GloBI symbiontOf Metarhizium anisopliae Tian, L., Yu, S., Zhang, L., Dong, K. and Feng, B., 2022. Mulching practices manipulate the microbial community diversity and network of root‑associated compartments in the Loess Plateau. Soil and Tillage Research. doi:10.1016/j.still.2022.105476 DOI
- GloBI symbiontOf Metarhizium anisopliae Tan, L., Zeng, W.A., Xiao, Y., Li, P., Gu, S., Wu, S., Zhai, Z., Feng, K., Deng, Y. and Hu, Q., 2021. Fungi-bacteria associations in wilt diseased rhizosphere and endosphere by interdomain ecological network analysis. Frontiers in Microbiology. doi:10.3389/fmicb.2021.722626 DOI
- GloBI symbiontOf Metarhizium anisopliae Tong, A.Z., Liu, W., Liu, Q., Xia, G.Q., 2021. Diversity and composition of the Panax ginseng rhizosphere microbiome in various cultivation modesand ages. BMC microbiology. doi:10.1186/s12866-020-02081-2 DOI
- GloBI symbiontOf Metarhizium anisopliae 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 Metarhizium anisopliae 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 Metarhizium anisopliae del Pilar Martínez-Diz, M., Andrés-Sodupe, M., Bujanda, R., Díaz-Losada, E., Eichmeier, A. and Gramaje, D., 2019. Soil-plant compartments affect fungal microbiome diversity and composition in grapevine.. Fungal Ecology. doi:10.1016/j.funeco.2019.07.003 DOI
- GloBI symbiontOf Metarhizium anisopliae Ma, J., Ma, K., Liu, J. and Chen, N, 2022. Rhizosphere Soil Microbial Community Under Ice in a High-Latitude Wetland: Different Community Assembly Processes Shape Patterns of Rare and Abundant Microbes. Frontiers in microbiology. doi:10.3389/fmicb.2022.783371 DOI
- GloBI symbiontOf Metarhizium anisopliae Sternhagen, E.C., Black, K.L., Hartmann, E.D., Shivega, W.G., Johnson, P.G., McGlynn, R.D., Schmaltz, L.C., Asheim Keller, R.J., Vink, S.N. and Aldrich-Wolfe, L., 2020. Contrasting Patterns of Functional Diversity in Coffee Root Fungal Communities Associated with Organic and Conventionally Managed Fields. Applied and Environmental Microbiology. doi:10.1128/AEM.00052-20 DOI
- GloBI symbiontOf Metarhizium anisopliae Mardanova, A., Lutfullin, M., Hadieva, G., Akosah, Y., Pudova, D., Kabanov, D., Shagimardanova, E., Vankov, P., Vologin, S., Gogoleva, N., Stasevski, Z. and Sharipova, M., 2019. Structure and variation of root-associated microbiomes of potato grown in alfisol.. World Journal of Microbiology and Biotechnology.
- GloBI symbiontOf Metarhizium anisopliae Monkai, J., Purahong, W., Nawaz, A., Wubet, T., Hyde, K.D., Goldberg, S.D., Mortimer, P.E., Xu, J. and Harrison, R.D., 2022. Conversion of rainforest to rubber plantations impacts rhizosphere soil mycobiome and alters soil biological activity. Land Degradation & Development. doi:10.1002/ldr.4395 DOI
- GloBI symbiontOf Metarhizium anisopliae Cai, Z., Wang, X., Bhadra, S. and Gao, Q., 2020. Distinct factors drive the assembly of quinoa-associated microbiomes along elevation.. Plant and Soil. doi:10.1007/s11104-019-04387-1 DOI
- GloBI symbiontOf Metarhizium anisopliae Monkai, J., Purahong, W., Nawaz, A., Wubet, T., Hyde, K.D., Goldberg, S.D., Mortimer, P.E., Xu, J. and Harrison, R.D., 2022. Conversion of rainforest to rubber plantations impacts rhizosphere soil mycobiome and alters soil biological activity. Land Degradation & Development. doi:10.1002/ldr.4395 DOI
- GloBI symbiontOf Metarhizium anisopliae Ciancio, A., Rosso, L.C., Lopez-Cepero, J. and Colagiero, M., 2022. Rhizosphere 16S-ITS Metabarcoding Profiles in Banana Crops Are Affected by Nematodes, Cultivation, and Local Climatic Variations. Frontiers in Microbiology. doi:10.3389/fmicb.2022.855110 DOI
- GloBI symbiontOf Metarhizium anisopliae Brunel C., Beifen Y., Pouteau R., Li J., van Kleunen M., 2020. Responses of Rhizospheric Microbial Communities of Native and Alien Plant Species to Cuscuta Parasitism. Microbial Ecology. doi:10.1007/s00248-019-01438-z DOI
- GloBI symbiontOf Metarhizium anisopliae Wang, C., Masoudi, A., Wang, M., Yang, J., Shen, R., Man, M., Yu, Z. and Liu, J., 2020. Community structure and diversity of the microbiomes of two microhabitats at the root-soil interface: implications of meta-analysis of the root-zone soil and root endosphere microbial communities in Xiong’an New Area.. Canadian Journal of Microbiology. doi:10.1139/cjm-2020-0061 DOI
- GloBI symbiontOf Metarhizium anisopliae Si, P., Shao, W., Yu, H., Yang, X., Gao, D., Qiao, X., Wang, Z. and Wu, G., 2018. Rhizosphere Microenvironments of Eight Common Deciduous Fruit Trees Were Shaped by Microbes in Northern China.. Frontiers in Microbiology. doi:10.3389/fmicb.2018.03147 DOI
- GloBI symbiontOf Metarhizium anisopliae Monkai, J., Purahong, W., Nawaz, A., Wubet, T., Hyde, K.D., Goldberg, S.D., Mortimer, P.E., Xu, J. and Harrison, R.D., 2022. Conversion of rainforest to rubber plantations impacts rhizosphere soil mycobiome and alters soil biological activity. Land Degradation & Development. doi:10.1002/ldr.4395 DOI
- GloBI symbiontOf Metarhizium anisopliae Dong, H., Fan, S., Sun, H., Chen, C., Wang, A., Jiang, L. and Ma, D., 2021. Rhizosphere-associated microbiomes of rice (Oryza sativa L.) under the effect of increased nitrogen fertilization.. Frontiers in Microbiology. doi:10.3389/fmicb.2021.730506 DOI
- GloBI symbiontOf Metarhizium anisopliae Liu, Y., Lu, M., Zhang, X., Sun, Q., Liu, R. and Lian, B., 2019. Shift of the microbial communities from exposed sandstone rocks to forest soils during pedogenesis.. International Biodeterioration & Biodegradation. doi:10.1016/j.ibiod.2019.03.006 DOI
- GloBI symbiontOf Metarhizium anisopliae Zhu, S., Wang, Y., Xu, X., Liu, T., Wu, D., Zheng, X., Tang, S. and Dai, Q., 2018. Potential use of high-throughput sequencing of soil microbial communities for estimating the adverse effects of continuous cropping on ramie (Boehmeria nivea L. Gaud).. PloS One. doi:10.1371/journal.pone.0197095 DOI
- GloBI symbiontOf Metarhizium anisopliae Si, P., Shao, W., Yu, H., Yang, X., Gao, D., Qiao, X., Wang, Z. and Wu, G., 2018. Rhizosphere Microenvironments of Eight Common Deciduous Fruit Trees Were Shaped by Microbes in Northern China.. Frontiers in Microbiology. doi:10.3389/fmicb.2018.03147 DOI
- GloBI symbiontOf Metarhizium anisopliae Ettinger, C.L., Vann, L.E. and Eisen, J.A., 2020. Global diversity and biogeography of the Zostera marina mycobiome.. bioRxiv. doi:10.1101/2020.10.29.361022 DOI
- GloBI symbiontOf Metarhizium anisopliae 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 Metarhizium anisopliae Lankau, R.A. and Keymer, D.P., 2016. Ectomycorrhizal fungal richness declines towards the host species range edge. Molecular Ecology. doi:10.1111/mec.13628 DOI
- GloBI symbiontOf Metarhizium anisopliae Wang, C., Masoudi, A., Wang, M., Yang, J., Shen, R., Man, M., Yu, Z. and Liu, J., 2020. Community structure and diversity of the microbiomes of two microhabitats at the root-soil interface: implications of meta-analysis of the root-zone soil and root endosphere microbial communities in Xiong’an New Area.. Canadian Journal of Microbiology. doi:10.1139/cjm-2020-0061 DOI
- GloBI symbiontOf Metarhizium anisopliae Vanegas, J., Munoz-García, A., Pérez-Parra, K.A., Figueroa-Galvis, I., Mestanza, O. and Polanía, J., 2019. Effect of salinity on fungal diversity in the rhizosphere of the halophyte Avicennia germinans from a semi-arid mangrove.. Fungal Ecology. doi:10.1016/j.funeco.2019.07.009 DOI
- GloBI symbiontOf Metarhizium anisopliae Li, Y., Li, Z., Arafat, Y. and Lin, W., 2020. Studies on fungal communities and functional guilds shift in tea continuous cropping soils by high-throughput sequencing.. Annals of Microbiology. doi:10.1186/s13213-020-01555-y DOI
- GloBI symbiontOf Metarhizium anisopliae Zhou, X., Tian, L., Zhang, J., Ma, L., Li, X. and Tian, C., 2017. Rhizospheric fungi and their link with the nitrogen-fixing Frankia harbored in host plant Hippophae rhamnoides L.. Journal of Basic Microbiology. doi:10.1002/jobm.201700312 DOI
- GloBI symbiontOf Metarhizium anisopliae Si, P., Shao, W., Yu, H., Yang, X., Gao, D., Qiao, X., Wang, Z. and Wu, G., 2018. Rhizosphere Microenvironments of Eight Common Deciduous Fruit Trees Were Shaped by Microbes in Northern China.. Frontiers in Microbiology. doi:10.3389/fmicb.2018.03147 DOI
- GloBI symbiontOf Metarhizium anisopliae Otsing, E., Anslan, S., Ambrosio, E., Koricheva, J. and Tedersoo, L., 2021. Tree Species Richness and Neighborhood Effects on Ectomycorrhizal Fungal Richness and Community Structure in Boreal Forest. Frontiers in Microbiology. doi:10.3389/fmicb.2021.567961 DOI
- GloBI symbiontOf Metarhizium anisopliae Barnes, C.J., Maldonado, C., Froslev, T.G., Antonelli, A. and Ronsted, N., 2016. Unexpectedly High Beta-Diversity of Root-Associated Fungal Communities in the Bolivian Andes.. Frontiers in Microbiology. doi:10.3389/fmicb.2016.01377 DOI
biocontrol 8
- GloBI pathogenOf Popillia japonica Humber, R.A. 1992. Collection of entomopathogenic fungal cultures: catolog of strains, 1992. U.S. Department of Agriculture, Agriculture Research Service. ARS-110. 177pp. (Plant Protection Research Unit, U.S. Plant, Soil, and Water Laboratory, Tower Rd., Ithaca, N. Y. 14853-0331.); Krueger, S., Villani, M.G., Martins, A.S., and Roberts, D.W. 1992. Efficacy of soil applications of Metarhizium anisopliae Sorokin conidia, and standard lyophilized mycelial particles against scarab grubs. J. Invertebr. Pathol. 59:54-60.; Hanula, J. L., and Andreadis, T. G. 1988. Parasitic micro-organisms of Japanese beetle (Coleoptera: Scarabaeidae) and associated scarab larvae in Connecticut soils. Environmental Entomology 17: 709-714.; Hadley, C. H. 1939. Status of the Japanese beetle in the older area of infestation. Rep. Ent. Soc. Ont. 69: 18-21.; Humber, R.A. 1999? Collection of entomopathogenic fungal cultures (unpublished) U.S. Department of Agriculture, Agriculture Research Service, Plant Protection Research Unit, U.S. Plant, Soil, and Water Laboratory, Tower Rd., Ithaca, N. Y. 14853-0331.
- GloBI pathogenOf Chalcodermus aeneus Humber, R.A. 1992. Collection of entomopathogenic fungal cultures: catolog of strains, 1992. U.S. Department of Agriculture, Agriculture Research Service. ARS-110. 177pp. (Plant Protection Research Unit, U.S. Plant, Soil, and Water Laboratory, Tower Rd., Ithaca, N. Y. 14853-0331.); Doane, C.C., 1971. Field application of a Streptococcus causing brachyosis in larvae of Portheria dispar. J. Invertebr. Pathol. 17: 303-307.; HETRICK, L. A., 1946. On the biology of the cowpea curculio in Virginia. J. Econ. Ent. 39: 405.; Veen, K. H. 1968. Recherches sur la maladie due a Metarrhizium anisopliae chez le criquet pelerin. [In ] Thesis, Meded. Landbauwhogeschool l’Universite Agronomique Wageningen.
- GloBI pathogenOf Forficula auricularia BARSS, H. P. and STEARNS, H. C., 1925. The green muscardine fungus (Oospora destructor (METSCH.) DELACROIX) on European earwig and other insects in Oregon. Phytopathology 15:729.; Veen, K. H. 1968. Recherches sur la maladie due a Metarrhizium anisopliae chez le criquet pelerin. [In ] Thesis, Meded. Landbauwhogeschool l’Universite Agronomique Wageningen.
- GloBI pathogenOf Helicoverpa armigera CHARLES, V. K., 1941. A preliminary check list of the entomogenous fungi of North America. Insect Pest Surv. Bull. U.S. 21:707-785.; Veen, K. H. 1968. Recherches sur la maladie due a Metarrhizium anisopliae chez le criquet pelerin. [In ] Thesis, Meded. Landbauwhogeschool l’Universite Agronomique Wageningen.
- GloBI pathogenOf Ostrinia nubilalis Humber, R.A. 1992. Collection of entomopathogenic fungal cultures: catolog of strains, 1992. U.S. Department of Agriculture, Agriculture Research Service. ARS-110. 177pp. (Plant Protection Research Unit, U.S. Plant, Soil, and Water Laboratory, Tower Rd., Ithaca, N. Y. 14853-0331.)
- GloBI pathogenOf Diabrotica longicornis CHARLES, V. K., 1941. A preliminary check list of the entomogenous fungi of North America. Insect Pest Surv. Bull. U.S. 21:707-785.; Veen, K. H. 1968. Recherches sur la maladie due a Metarrhizium anisopliae chez le criquet pelerin. [In ] Thesis, Meded. Landbauwhogeschool l’Universite Agronomique Wageningen.
- GloBI pathogenOf Petrusa epilepsis CAMUNAS, M., 1919. Report of the commissioner of agriculture and labour. 19th Ann. Rept. Gov. P. R. Secy. War. App. IX: 685-707.; Veen, K. H. 1968. Recherches sur la maladie due a Metarrhizium anisopliae chez le criquet pelerin. [In ] Thesis, Meded. Landbauwhogeschool l’Universite Agronomique Wageningen.
- GloBI pathogenOf Rhagoletis completa CHARLES, V. K., 1941. A preliminary check list of the entomogenous fungi of North America. Insect Pest Surv. Bull. U.S. 21:707-785.; Veen, K. H. 1968. Recherches sur la maladie due a Metarrhizium anisopliae chez le criquet pelerin. [In ] Thesis, Meded. Landbauwhogeschool l’Universite Agronomique Wageningen.
crop interaction 36
- GloBI symbiontOf Metarhizium anisopliae Wu, C., Wang, F., Ge, A., Zhang, H., Chen, G., Deng, Y., Yang, J., Chen, J. and Ge, T., 2021. Enrichment of microbial taxa after the onset of wheat yellow mosaic disease. Agriculture, Ecosystems & Environment. doi:10.1016/j.agee.2021.107651 DOI
- GloBI symbiontOf Metarhizium anisopliae Kirkman, E.R., Hilton, S., Sethuraman, G., Elias, D.M., Taylor, A., Clarkson, J., Soh, A.C., Bass, D., Ooi, G.T., McNamara, N.P. and Bending, G.D., 2022. Diversity and Ecological Guild Analysis of the Oil Palm Fungal Microbiome Across Root, Rhizosphere, and Soil Compartments.. Frontiers in microbiology. doi:10.3389/fmicb.2022.792928 DOI
- GloBI symbiontOf Metarhizium anisopliae Kamutando, C.N., Vikram, S., Kamgan-Nkuekam, G., Makhalanyane, T.P., Greve, M., Le Roux, J.J., Richardson, D.M., Cowan, D. and Valverde, A., 2017. Soil nutritional status and biogeography influence rhizosphere microbial communities associated with the invasive tree Acacia dealbata.. Scientific Reports. doi:10.1038/s41598-017-07018-w DOI
- GloBI symbiontOf Metarhizium anisopliae Liu, Y., Zhang, X., Yang, M.L. and Wang, S.M., 2020. Study on the correlation between soil microbial diversity and ambient environmental factors influencing the safflower distribution in Xinjiang. Journal of basic microbiology. doi:10.1002/jobm.201900626 DOI
- GloBI symbiontOf Metarhizium anisopliae Longley, Reid; Noel, Zachary A.; Benucci, Gian Maria Niccolo; Chilvers, Martin, I; Trail, Frances; Bonito, Gregory, 2020. Crop Management Impacts the Soybean (Glycine max) Microbiome. FRONTIERS IN MICROBIOLOGY. doi:10.3389/fmicb.2020.01116 DOI
- GloBI symbiontOf Metarhizium anisopliae Tian, L., Yu, S., Zhang, L., Dong, K. and Feng, B., 2022. Mulching practices manipulate the microbial community diversity and network of root‑associated compartments in the Loess Plateau. Soil and Tillage Research. doi:10.1016/j.still.2022.105476 DOI
- GloBI symbiontOf Metarhizium anisopliae Tan, L., Zeng, W.A., Xiao, Y., Li, P., Gu, S., Wu, S., Zhai, Z., Feng, K., Deng, Y. and Hu, Q., 2021. Fungi-bacteria associations in wilt diseased rhizosphere and endosphere by interdomain ecological network analysis. Frontiers in Microbiology. doi:10.3389/fmicb.2021.722626 DOI
- GloBI symbiontOf Metarhizium anisopliae Tong, A.Z., Liu, W., Liu, Q., Xia, G.Q., 2021. Diversity and composition of the Panax ginseng rhizosphere microbiome in various cultivation modesand ages. BMC microbiology. doi:10.1186/s12866-020-02081-2 DOI
- GloBI symbiontOf Metarhizium anisopliae 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 Metarhizium anisopliae 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 Metarhizium anisopliae del Pilar Martínez-Diz, M., Andrés-Sodupe, M., Bujanda, R., Díaz-Losada, E., Eichmeier, A. and Gramaje, D., 2019. Soil-plant compartments affect fungal microbiome diversity and composition in grapevine.. Fungal Ecology. doi:10.1016/j.funeco.2019.07.003 DOI
- GloBI symbiontOf Metarhizium anisopliae Ma, J., Ma, K., Liu, J. and Chen, N, 2022. Rhizosphere Soil Microbial Community Under Ice in a High-Latitude Wetland: Different Community Assembly Processes Shape Patterns of Rare and Abundant Microbes. Frontiers in microbiology. doi:10.3389/fmicb.2022.783371 DOI
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