Molecular markers for genotyping anastomosis groups and understanding the population biology of Rhizoctonia species.
Author:
Affiliation:
1. Faculty of Agriculture, Meijo University
Publisher
The Phytopathological Society of Japan
Subject
General Medicine
Reference50 articles.
1. Ahvenniemi, P., Wolf, M., Lehtonen, M.J., Wilson, P., German-Kinnari, M. and Valkonen, J.P.T. (2009). Evolutionary diversification indicated by compensatory base changes in ITS2 secondary structures in a complex fungal species, Rhizoctonia solani. J. Mol. Evol. 69: 150–163.
2. Anderson, N. (1982). The genetics and pathology of Rhizoctonia solani. Annu. Rev. Phytopathol. 20: 329–347.
3. Arakawa, M. and Inagaki, K. (2014). Molecular markers for genotyping anastomosis groups and understanding the population biology of Rhizoctonia species. J. Gen. Plant Pathol. 80: 401–407.
4. Bernardes de Assis, J., Peyer, P., Rush, M.C., Zala, M., McDonald, B.A. and Ceresini, P.C. (2008). Divergence between sympatric rice- and soybean-infecting populations of Rhizoctonia solani anastomosis group-1 IA. Phytopathology 98: 1326–1333.
5. Bernardes-de-Assis, J., Storari, M., Zala, M., Wang, W., Jiang, D., Shidong, L., Jin, M., McDonald, B.A. and Ceresini, P.C. (2009). Genetic structure of populations of the rice-infecting pathogen Rhizoctonia solani AG-1 IA from China. Phytopathology 99: 1090–1099.
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1. ネジバナと菌根菌の関係を探る;KAGAKU TO SEIBUTSU;2017-11-20
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