| 文献 | - Gan, P., Hiroyama, R., Tsushima, A., Masuda, S., Shibata, A., Ueno, A., Kumakura, N., Narusaka, M., Hoat, T.X., Narusaka, Y., Takano, Y. and Shirasu, K. (2021). Telomeres and a repeat-rich chromosome encode effector gene clusters in plant pathogenic Colletotrichum fungi. Environmental Microbiology 23(10): 6004-6018. [10.1111/1462-2920.15490]
- Gan, P., Ikeda, K., Irieda, H., Narusaka, M., O'Connell, R.J., Narusaka, Y., Takano, Y., Kubo, Y. and Shirasu, K. (2013). Comparative genomic and transcriptomic analyses reveal the hemibiotrophic stage shift of Colletotrichum fungi. New Phytologist 197(4): 1236-1249. [10.1111/nph.12085]
- Hirayama, Y., Asano, S., Okayama, K., Ohki, S.T. and Tojo, M. (2018). Weeds as the potential inoculum source of Colletotrichum fructicola responsible for strawberry anthracnose in Nara, Japan. Journal of General Plant Pathology 84(1): 12-19. [10.1007/s10327-017-0753-4]
- Hirayama, Y., Asano, S., Watanabe, K., Sakamoto, Y., Ozaki, M., Okayama, K., Ohki, S.T., Tojo, M. (2016). Control of Colletotrichum fructicola on strawberry with a foliar spray of neutral electrolyzed water through an overhead irrigation system. Journal of General Plant Pathology 82(4): 186-189. [10.1007/s10327-016-0667-6]
- Narusaka, M., Ohtani, M., Demura, T., Shimada, R., Shirasu, K. and Narusaka, Y. (2012). Development of a model system comprising Populus as a model tree and Colletotrichum gloeosporioides as a model pathogen for studying host-pathogen interactions. Plant Biotechnology 29(5): 511-514. [10.5511/plantbiotechnology.12.0924a]
- 岡山健夫・平山喜彦 (2011). イチゴ炭疽病の育苗培養土汚染による発生と薬剤防除効果. 日本植物病理学会報 77(2): 83-87. [10.3186/jjphytopath.77.83]
- 岡山健夫・平山喜彦 (2013). イチゴ苗の長期冷蔵処理による炭疽病菌(Glomerella cingulata)潜在感染株の低減. 日本植物病理学会報 79(4): 269-274. [10.3186/jjphytopath.79.269]
- 岡山健夫・平山喜彦・西崎仁博 (2007). 選択培地によるベノミル剤耐性イチゴ炭疽病菌 Glomerella cingulata の潜在感染株及び育苗培養土からの検出. 日本植物病理学会報 73(3): 155-161. [10.3186/jjphytopath.73.155]
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