Colletotrichum spaethianum
- Category
- fungi
- Primary role
- pathogen fungal
- Class
- Sordariomycetes
- Order
- Glomerellales
- Family
- Glomerellaceae
- Genus
- Colletotrichum
Fungi | Ascomycota | Sordariomycetes | Glomerellales | Glomerellaceae | Colletotrichum
External: GBIF #7551169
0 AI-consensus-verified claims .
No verified claims involving this entity yet.
Genus-level evidence
25 claims where the source named the organism only at the genus or collective level (e.g. Colletotrichum sp.) and did not determine the species. Listed separately because they apply to the genus, not specifically to Colletotrichum spaethianum.
- pathogen pressure · Colletotrichum spp. → Coffea arabica · effect: harmful
“leaf diseases such as rust, brown spot, and Colletotrichum spp”
Buck L.E., Lassoie J.P., Fernandes E.C.M. (1999) · Agroforestry in Sustainable Agricultural Systems #6492346 - pathogen pressure · Colletotrichum spp. → Capsicum annuum · effect: harmful
“eggplant and pepper may be attacked in a similar manner”
Unknown (Unknown) · History of Plant Pathology and Early Significant Plant Diseases (Chapter 1 Introduction) · p. 489 #6494301 - pathogen pressure · Colletotrichum spp. → Solanum melongena · effect: harmful
“eggplant and pepper may be attacked in a similar manner”
Unknown (Unknown) · History of Plant Pathology and Early Significant Plant Diseases (Chapter 1 Introduction) · p. 489 #6494302 - pathogen pressure · Colletotrichum spp. → Manihot esculenta · effect: harmful
“important staple food crops, including bananas, cassava and sorghum”
Dean R., van Kan J.A.L., Pretorius Z.A., Hammond-Kosack K.E., Di Pietro A., Spanu P.D., Rudd J.J., Dickman M., Kahmann R., Ellis J., Foster G.D. (2012) · The Top 10 fungal pathogens in molecular plant pathology · p. 423 #6495782 - pathogen pressure · Colletotrichum spp. → Capsicum annuum · effect: harmful
“water-soaked lesions that become sunken and tan; salmon-colored conidia spores”
Shieh H., Lin S., Lin L., Sheu Z., Tsai W., Srinivasan R., Kumar S. (2021) · International Cooperators' Guide: Procedures for Sweet Pepper Variety Field Trials (#14-775) · p. 9 #6496038 - pathogen pressure · Colletotrichum spp. → Capsicum annuum · effect: harmful
“water-soaked lesions that become sunken and tan; salmon-colored conidia spores”
Lin S., Shieh H., Lin L., Sheu Z., Kenyon L., Srinivasan R., Kumar S. (2021) · International Cooperators' Guide: Procedures for Chili Pepper Variety Field Trials (#14-784) · p. 8 #6496045 - pathogen pressure · Colletotrichum spp. → Capsicum annuum · effect: harmful
“Les principales maladies du piment sont l'anthracnose”
- pathogen pressure · Colletotrichum sp. → Carica papaya · effect: harmful
“Papaya Anthracnose (Colletotricum)”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 88 #6735004 - pathogen pressure · Colletotrichum sp. → Brassica rapa subsp. pekinensis · effect: harmful
“Chinese Cabbage ... Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 144 #6735048 - pathogen pressure · Colletotrichum sp. → Cucumis sativus · effect: harmful
“Cucumber ... Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 148 #6735086 - pathogen pressure · Colletotrichum sp. → Solanum melongena · effect: harmful
“Eggplant ... Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 150 #6735109 - pathogen pressure · Colletotrichum sp. → Cucurbitaceae (family) · effect: harmful
“Gourds ... Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 153 #6735134 - pathogen pressure · Colletotrichum sp. → Psidium guajava · effect: harmful
“Guava ... Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 157 #6735175 - pathogen pressure · Colletotrichum sp. → Cucumis melo subsp. melo · effect: harmful
“Honeydew ... Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 159 #6735192 - pathogen pressure · Colletotrichum sp. → Lactuca sativa var. capitata · effect: harmful
“Lettuce, Head ... Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 167 #6735253 - pathogen pressure · Colletotrichum sp. → Lactuca sativa var. crispa · effect: harmful
“Lettuce, Leaf ... Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 169 #6735270 - pathogen pressure · Colletotrichum sp. → Mangifera indica · effect: harmful
“Mango ... Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 172 #6735301 - pathogen pressure · Colletotrichum sp. → Cucumis melo · effect: harmful
“Muskmelon ... Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 174 #6735320 - pathogen pressure · Colletotrichum sp. → Abelmoschus esculentus · effect: harmful
“Okra ... Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 177 #6735348 - pathogen pressure · Colletotrichum sp. → Solanum lycopersicum · effect: harmful
“Tomato … Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 206 #6735393 - pathogen pressure · Colletotrichum sp. → Citrullus lanatus · effect: harmful
“Watermelon … Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 208 #6735424 - pathogen pressure · Colletotrichum sp. → Dioscorea sp. · effect: harmful
“Yam … Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 209 #6735434 - pathogen pressure · Colletotrichum sp. → Bauhinia variegata · effect: harmful
“Orchid tree Colletotrichum sp. Leaf spot”
University of Guam, College of Natural and Applied Sciences (2022) · Index of Plant Diseases in Guam · p. 48 #6735503 - pathogen pressure · Colletotrichum sp. → Carica papaya · effect: harmful
“Colletotrichum sp. Anthracnose Fruit spot”
University of Guam, College of Natural and Applied Sciences (2022) · Index of Plant Diseases in Guam · p. 49 #6735508 - pathogen pressure · Colletotrichum sp. → Capsicum annuum · effect: harmful
“Pepper Colletotrichum sp. Anthracnose”
University of Guam, College of Natural and Applied Sciences (2022) · Index of Plant Diseases in Guam · p. 49 #6735530
Aggregated via GloBI — not independently verified by AgroEco.
mutualism 10
- GloBI symbiontOf Colletotrichum spaethianum Benitez, M. S., Ewing, P. M., Osborne, S. L. and Lehman, R. M., 2021. Rhizosphere microbial communities explain positive effects of diverse crop rotations on maize and soybean performance. Soil Biology and Biochemistry. doi:10.1016/j.soilbio.2021.108309 DOI
- GloBI symbiontOf Colletotrichum spaethianum Fan, K., Weisenhorn, P., Gilbert, J.A. and Chu, H., 2018. Wheat rhizosphere harbors a less complex and more stable microbial co-occurrence pattern than bulk soil.. Soil Biology and Biochemistry. doi:10.1016/j.soilbio.2018.07.022 DOI
- GloBI symbiontOf Colletotrichum spaethianum Benitez, M. S., Ewing, P. M., Osborne, S. L. and Lehman, R. M., 2021. Rhizosphere microbial communities explain positive effects of diverse crop rotations on maize and soybean performance. Soil Biology and Biochemistry. doi:10.1016/j.soilbio.2021.108309 DOI
- GloBI symbiontOf Colletotrichum spaethianum 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 Colletotrichum spaethianum Sun, X., Li, J.L., He, C., Li, X.C. and Guo, L.D., 2021. Specific network and phylosymbiosis pattern in endophyte community of coastal halophytes. Fungal Ecology. doi:10.1016/j.funeco.2021.101088 DOI
- GloBI symbiontOf Colletotrichum spaethianum 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 Colletotrichum spaethianum 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 Colletotrichum spaethianum 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 Colletotrichum spaethianum 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 Colletotrichum spaethianum 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
crop interaction 10
- GloBI symbiontOf Colletotrichum spaethianum Benitez, M. S., Ewing, P. M., Osborne, S. L. and Lehman, R. M., 2021. Rhizosphere microbial communities explain positive effects of diverse crop rotations on maize and soybean performance. Soil Biology and Biochemistry. doi:10.1016/j.soilbio.2021.108309 DOI
- GloBI symbiontOf Colletotrichum spaethianum Fan, K., Weisenhorn, P., Gilbert, J.A. and Chu, H., 2018. Wheat rhizosphere harbors a less complex and more stable microbial co-occurrence pattern than bulk soil.. Soil Biology and Biochemistry. doi:10.1016/j.soilbio.2018.07.022 DOI
- GloBI symbiontOf Colletotrichum spaethianum Benitez, M. S., Ewing, P. M., Osborne, S. L. and Lehman, R. M., 2021. Rhizosphere microbial communities explain positive effects of diverse crop rotations on maize and soybean performance. Soil Biology and Biochemistry. doi:10.1016/j.soilbio.2021.108309 DOI
- GloBI symbiontOf Colletotrichum spaethianum 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 Colletotrichum spaethianum Sun, X., Li, J.L., He, C., Li, X.C. and Guo, L.D., 2021. Specific network and phylosymbiosis pattern in endophyte community of coastal halophytes. Fungal Ecology. doi:10.1016/j.funeco.2021.101088 DOI
- GloBI symbiontOf Colletotrichum spaethianum 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 Colletotrichum spaethianum 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 Colletotrichum spaethianum 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 Colletotrichum spaethianum 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 Colletotrichum spaethianum 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