Alternaria japonica
- Category
- fungi
- Primary role
- pathogen fungal
- Class
- Dothideomycetes
- Order
- Pleosporales
- Family
- Pleosporaceae
- Genus
- Alternaria
Fungi | Ascomycota | Dothideomycetes | Pleosporales | Pleosporaceae | Alternaria
External: GBIF #2616196
0 AI-consensus-verified claims .
No verified claims involving this entity yet.
Genus-level evidence
30 claims where the source named the organism only at the genus or collective level (e.g. Alternaria sp.) and did not determine the species. Listed separately because they apply to the genus, not specifically to Alternaria japonica.
- pathogen pressure · Alternaria spp. → Cucurbitaceae (family) · effect: harmful
“leaf spot and fruit spot on cucurbits and onions”
Unknown (Unknown) · History of Plant Pathology and Early Significant Plant Diseases (Chapter 1 Introduction) · p. 453 #6494116 - pathogen pressure · Alternaria spp. → Allium cepa · effect: harmful
“leaf spot and fruit spot on cucurbits and onions”
Unknown (Unknown) · History of Plant Pathology and Early Significant Plant Diseases (Chapter 1 Introduction) · p. 453 #6494117 - pathogen pressure · Alternaria spp. → Malus domestica · effect: harmful
“core rot of apple”
Unknown (Unknown) · History of Plant Pathology and Early Significant Plant Diseases (Chapter 1 Introduction) · p. 453 #6494118 - pathogen pressure · Alternaria spp. → Citrus spp. · effect: harmful
“rot of lemons and oranges”
Unknown (Unknown) · History of Plant Pathology and Early Significant Plant Diseases (Chapter 1 Introduction) · p. 453 #6494119 - pathogen pressure · Alternaria spp. → Prunus cerasus · effect: harmful
“fruit rot on cherry and sour cherry”
Unknown (Unknown) · History of Plant Pathology and Early Significant Plant Diseases (Chapter 1 Introduction) · p. 453 #6494120 - pathogen pressure · Alternaria sp. → Amaranthus cruentus · effect: harmful
“Alternaria leaf spot occurs on A. cruentus in Tanzania”
- pathogen pressure · Alternaria sp. → Brassica oleracea var. italica · effect: harmful
“Broccoli Cabbage Cauliflower ... Alternaria Leaf Spot”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 19 #6734828 - pathogen pressure · Alternaria sp. → Daucus carota · effect: harmful
“Alternaria (Late) Blight”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 20 #6734830 - pathogen pressure · Alternaria sp. → Allium cepa · effect: harmful
“Onions (Dry bulb) Garlic ... Purple Blotch”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 51 #6734834 - pathogen pressure · Alternaria sp. → Carica papaya · effect: harmful
“Papaya Alternaria Fruit Spot Anthracnose Stem End Rot”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 51 #6734835 - pathogen pressure · Alternaria sp. → Solanum lycopersicum · effect: harmful
“Tomato Fruit: ... Alternaria Fruit Rot (Black Mold)”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 24 #6734839 - pathogen pressure · Alternaria sp. → Brassica oleracea var. capitata · effect: harmful
“Black Leaf Spot (Alternaria)”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 58 #6734847 - pathogen pressure · Alternaria sp. → Cucumis melo · effect: harmful
“Melon: ... Alternaria Leaf Spot Anthracnose”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 87 #6734895 - pathogen pressure · Alternaria sp. → Brassica oleracea var. botrytis · effect: harmful
“Cauliflower ... Alternaria Leaf Spot”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 142 #6735032 - pathogen pressure · Alternaria sp. → Brassica oleracea var. botrytis · effect: harmful
“Cauliflower ... Black Leaf Spot”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 142 #6735033 - pathogen pressure · Alternaria sp. → Brassica rapa subsp. pekinensis · effect: harmful
“Chinese Cabbage ... Alternaria Leaf Spot”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 144 #6735047 - pathogen pressure · Alternaria sp. → Cucumis sativus · effect: harmful
“Cucumber ... Alternaria Leaf Blight”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 148 #6735084 - pathogen pressure · Alternaria sp. → Solanum melongena · effect: harmful
“Eggplant ... Alternaria Blight”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 150 #6735108 - pathogen pressure · Alternaria sp. → Allium sativum · effect: harmful
“Garlic ... Purple Blotch”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 151 #6735125 - pathogen pressure · Alternaria sp. → Citrus x paradisi · effect: harmful
“Grapefruit ... Alternaria”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 155 #6735153 - pathogen pressure · Alternaria sp. → Cucumis melo subsp. melo · effect: harmful
“Honeydew ... Alternaria Leaf Blight”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 159 #6735190 - pathogen pressure · Alternaria sp. → Citrus x limon · effect: harmful
“Lemon ... Alternaria”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 164 #6735231 - pathogen pressure · Alternaria sp. → Citrus x aurantiifolia · effect: harmful
“Lime ... Alternaria”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 170 #6735286 - pathogen pressure · Alternaria sp. → Cucumis melo · effect: harmful
“Muskmelon ... Alternaria Leaf Blight”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 174 #6735318 - pathogen pressure · Alternaria sp. → Brassica juncea · effect: harmful
“Mustard Greens ... Alternaria Leaf Spot”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 176 #6735340 - pathogen pressure · Alternaria sp. → Citrus X sinensis · effect: harmful
“Orange ... Alternaria”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 180 #6735367 - pathogen pressure · Alternaria sp. → Solanum lycopersicum · effect: harmful
“Tomato … Alternaria Fruit Rot (Black Mold)”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 206 #6735392 - pathogen pressure · Alternaria sp. → Citrullus lanatus · effect: harmful
“Watermelon … Alternaria Leaf Blight”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 208 #6735422 - pathogen pressure · Alternaria sp. → Citrullus lanatus · effect: harmful
“Watermelon … Alternaria Leaf Spot”
University of Guam Cooperative Extension & Outreach (2024) · Guam Fruit and Vegetable Pesticide Guide, 6th Edition · p. 208 #6735423 - pathogen pressure · Alternaria sp. → Arachis hypogaea · effect: harmful
“Peanut Alternaria sp. Leaf spot”
University of Guam, College of Natural and Applied Sciences (2022) · Index of Plant Diseases in Guam · p. 49 #6735522
Aggregated via GloBI — not independently verified by AgroEco.
mutualism 11
- GloBI symbiontOf Alternaria japonica 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 Alternaria japonica 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 Alternaria japonica Fernández-González, A.J., Wentzien, N.M., Villadas, P.J., Valverde-Corredor, A., Lasa, A.V., Gómez-Lama Cabanás, C., Mercado-Blanco, J. and Fernández-López, M., 2020. Comparative study of neighboring Holm oak and olive trees-belowground microbial communities subjected to different soil management. PloS one. doi:10.1371/journal.pone.0236796 DOI
- GloBI symbiontOf Alternaria japonica Ettinger, C.L. and Eisen, J.A., 2019. Characterization of the mycobiome of the seagrass, Zostera marina, reveals putative associations with marine chytrids.. Frontiers in Microbiology. doi:10.3389/fmicb.2019.02476 DOI
- GloBI symbiontOf Alternaria japonica Schlatter, D.C., Hansen, J.C., Schillinger, W.F., Sullivan, T.S. and Paulitz, T.C., 2019. Common and unique rhizosphere microbial communities of wheat and canola in a semiarid Mediterranean environment.. Applied Soil Ecology. doi:10.1016/j.apsoil.2019.07.010 DOI
- GloBI symbiontOf Alternaria japonica Schlatter, D.C., Hansen, J.C., Schillinger, W.F., Sullivan, T.S. and Paulitz, T.C., 2019. Common and unique rhizosphere microbial communities of wheat and canola in a semiarid Mediterranean environment.. Applied Soil Ecology. doi:10.1016/j.apsoil.2019.07.010 DOI
- GloBI symbiontOf Alternaria japonica Michael, P. J., Jones, D., White, N., Hane, J. K., Bunce, M., and Gibberd, M., 2020. Crop-Zone Weed Mycobiomes of the South-Western Australian Grain Belt. Frontiers in Microbiology. doi:10.3389/fmicb.2020.581592 DOI
- GloBI symbiontOf Alternaria japonica Katsoula, A., Vasileiadis, S., Karamanoli, K., Vokou, D. and Karpouzas, D.G., 2021. Factors Structuring the Epiphytic Archaeal and Fungal Communities in a Semi-arid Mediterranean Ecosystem. Microbial ecology. doi:10.1007/s00248-021-01712-z DOI
- GloBI symbiontOf Alternaria japonica 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 Alternaria japonica Zhang, J., Zhang, B., Liu, Y., Guo, Y., Shi, P. and Wei, G., 2018. Distinct large-scale biogeographic patterns of fungal communities in bulk soil and soybean rhizosphere in China.. Science of the Total Environment. doi:10.1016/j.scitotenv.2018.07.016 DOI
- GloBI symbiontOf Alternaria japonica Longa, C.M.O., Antonielli, L., Bozza, E., Sicher, C., Pertot, I. and Perazzolli, M., 2022. Plant organ and sampling time point determine the taxonomic structure of microbial communities associated to apple plants in the orchard environment.. Microbiological Research. doi:10.1016/j.micres.2022.126991 DOI
crop interaction 11
- GloBI symbiontOf Alternaria japonica 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 Alternaria japonica 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 Alternaria japonica Fernández-González, A.J., Wentzien, N.M., Villadas, P.J., Valverde-Corredor, A., Lasa, A.V., Gómez-Lama Cabanás, C., Mercado-Blanco, J. and Fernández-López, M., 2020. Comparative study of neighboring Holm oak and olive trees-belowground microbial communities subjected to different soil management. PloS one. doi:10.1371/journal.pone.0236796 DOI
- GloBI symbiontOf Alternaria japonica Ettinger, C.L. and Eisen, J.A., 2019. Characterization of the mycobiome of the seagrass, Zostera marina, reveals putative associations with marine chytrids.. Frontiers in Microbiology. doi:10.3389/fmicb.2019.02476 DOI
- GloBI symbiontOf Alternaria japonica Schlatter, D.C., Hansen, J.C., Schillinger, W.F., Sullivan, T.S. and Paulitz, T.C., 2019. Common and unique rhizosphere microbial communities of wheat and canola in a semiarid Mediterranean environment.. Applied Soil Ecology. doi:10.1016/j.apsoil.2019.07.010 DOI
- GloBI symbiontOf Alternaria japonica Schlatter, D.C., Hansen, J.C., Schillinger, W.F., Sullivan, T.S. and Paulitz, T.C., 2019. Common and unique rhizosphere microbial communities of wheat and canola in a semiarid Mediterranean environment.. Applied Soil Ecology. doi:10.1016/j.apsoil.2019.07.010 DOI
- GloBI symbiontOf Alternaria japonica Michael, P. J., Jones, D., White, N., Hane, J. K., Bunce, M., and Gibberd, M., 2020. Crop-Zone Weed Mycobiomes of the South-Western Australian Grain Belt. Frontiers in Microbiology. doi:10.3389/fmicb.2020.581592 DOI
- GloBI symbiontOf Alternaria japonica Katsoula, A., Vasileiadis, S., Karamanoli, K., Vokou, D. and Karpouzas, D.G., 2021. Factors Structuring the Epiphytic Archaeal and Fungal Communities in a Semi-arid Mediterranean Ecosystem. Microbial ecology. doi:10.1007/s00248-021-01712-z DOI
- GloBI symbiontOf Alternaria japonica 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 Alternaria japonica Zhang, J., Zhang, B., Liu, Y., Guo, Y., Shi, P. and Wei, G., 2018. Distinct large-scale biogeographic patterns of fungal communities in bulk soil and soybean rhizosphere in China.. Science of the Total Environment. doi:10.1016/j.scitotenv.2018.07.016 DOI
- GloBI symbiontOf Alternaria japonica Longa, C.M.O., Antonielli, L., Bozza, E., Sicher, C., Pertot, I. and Perazzolli, M., 2022. Plant organ and sampling time point determine the taxonomic structure of microbial communities associated to apple plants in the orchard environment.. Microbiological Research. doi:10.1016/j.micres.2022.126991 DOI