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Fukuhara, H., Minakawa, Y., Akao, S., amd Minamisawa K.: The involvement of indole-3-acetic acid produced by Bradyrhzobium elkanii in nodule formation. Plant Cell Physiol. 35: 12361-1265 (1984) [pdf]

Minamisawa, K., Seki, T., Onodera, S., Kubota, M. and Asami T.: Genetic relatedness of Bradyrhizobium japonicum field isolates as revealed by repeated sequences and various other characteristics. Appl. Environ. Microbiol., 58, 2832-2839 (1992) [pdf]

Minamisawa, K. and Fukai K.: Production of indole-3-acetic acid by Bradyrhizobium japonicum: A correlation with genotype grouping and rhizobitoxine production. Plant Cell Physiol., 32, 1-9 (1991) [pdf]

Minamisawa, K., Fukai, K. and Asami, T. Rhizobitoxine inhibition of hydrogenase synthesis in free-living Bradyrhizobiun japonicum. J. Bacteriol., 172, 4505-4509 (1990) [pdf]

Minamisawa, K.: Division of rhizobitoxime-producing and hydrogen-uptake positive strains of Bradyrhizobium japonicum by nifDKE sequence divergence. Plant Cell Physiol., 31, 81-89 (1990) [pdf]

Minamisawa, K. Comparison of extracellular polysaccharide composition, rhizobitoxine production, and hydrogenase phenotype among various strains of Bradyrhizobium japonicum. Plant Cell Physiol., 30, 877-884 (1989) [pdf]

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Minamisawa, K. and Watanabe, H.: Serinol (2-amino-1, 3-propanediol) and 3-amino-1,2-propanediol in soybean nodules., Plant Cell Physiol., 27, 1109-1116 (1987) [pdf]

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Minamisawa, K., Arima, Y. and Kumazawa, K.: Unidentified compound specifically accumulated in soybean nodules formed with H2-uptake negative Rhizobium japonicum strains., Soil Sci. Plant Nutr., 30, 435-444 (1984)

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