| 文献 | - Hamana, K., Matsuzaki, S., Sakana, T. and Yokota, A. (1993). Three biovars of Agrobacterium show distinct polyamine distribution patterns. Microbios 73: 257-260.
- Arafat, H.H., Tanaka, K., Sawada, H. and Suzuki, K. (2009). Variation of lipopolysaccharide among the three major Agrobacterium species and the effect of environmental stress on the lipopolysaccharide profile. Plant Pathology Journal 8(1): 1-8. [10.3923/ppj.2009.1.8]
- Bautista-Zapanta, J., Arafat, H.H., Tanaka, K., Sawada, H. and Suzuki, K. (2009). Variation of 16S-23S internally transcribed spacer sequence and intervening sequence in rDNA among the three major Agrobacterium species. Microbiological Research 164(6): 604-612. [10.1016/j.micres.2007.08.003]
- Chen, L.-H., Hata, T., Yamakawa, Y. and Suzuki, Y. (1995). The effects of preservation temperatures and periods on hairy roots inducing ability of Agrobacterium rhizogenes. Plant Tissue Culture Letters 12(1): 94-96. [10.5511/plantbiotechnology1984.12.94]
- Hamana, K., Minamisawa, K. and Matsuzaki, S. (1990). Polyamines in Rhizobium, Bradyrhizobium, Azorhizobium and Agrobacterium. FEMS Microbiology Letters 71: 71-76. [10.1111/j.1574-6968.1990.tb03800.x]
- Kang, B., Maeshige, T., Okamoto, A., Kataoka, Y., Yamamoto, S., Rikiishi, K., Tani, A., Sawada, H. and Suzuki, K. (2020). The presence of the hairy-root-disease-inducing (Ri) plasmid in wheat endophytic rhizobia explains a pathogen reservoir function of healthy resistant plants. Applied and Environmental Microbiology 86(17): e00671-20. [10.1128/AEM.00671-20]
- Sawada, H. and Ieki, H. (1992). Phenotypic characteristics of the genus Agrobacterium. Japanese Journal of Phytopathology (Annals of the Phytopathological Society of Japan) 58(1): 37-45. [10.3186/jjphytopath.58.37]
- Sawada, H., Ieki, H. and Matsuda, I. (1995). PCR detection of Ti and Ri plasmids from phytopathogenic Agrobacterium strains. Applied and Environmental Microbiology 61(2): 828-831. [aem.asm.org]
- Sawada, H., Imada, J. and Ieki, H. (1992). Serogroups of Agrobacterium tumefaciens biovar 3 determined using somatic antigens. Japanese Journal of Phytopathology (Annals of the Phytopathological Society of Japan) 58(1): 52-57. [10.3186/jjphytopath.58.52]
- Sawada, H., Takikawa, Y. and Ieki, H. (1992). Fatty acid methyl ester profiles of the genus Agrobacterium. Japanese Journal of Phytopathology (Annals of the Phytopathological Society of Japan) 58(1): 46-51. [10.3186/jjphytopath.58.46]
- Sonoda, H., Suzuki, K. and Yoshida, K. (2002). Gene cluster for ferric iron uptake in Agrobacterium tumefaciens MAFF301001. Genes and Genetic Systems 77(3): 137-146. [10.1266/ggs.77.137]
- Suzuki, K., Hattori, Y., Uraji, M., Ohta, N., Iwata, K., Murata, K., Kato, A. and Yoshida, K. (2000). Complete nucleotide sequence of a plant tumor-inducing Ti plasmid. Gene 242(1-2): 331-336. [10.1016/S0378-1119(99)00502-8]
- Suzuki, K., Iwata, K. and Yoshida, K. (2001). Genome analysis of Agrobacterium tumefaciens: construction of physical maps for linear and circular chromosomal DNAs, determination of copy number ratio and mapping of chromosomal virulence genes. DNA Research 8(4): 141-152. [10.1093/dnares/8.4.141]
- Tan, B.S., Yabuki, J., Matsumoto, S., Kageyama, K. and Fukui, H. (2003). PCR primers for identification of opine types of Agrobacterium tumefaciens in Japan. Journal of General Plant Pathology 69(4): 258-266. [10.1007/s10327-003-0044-0]
- Tanaka, K., Arafat, H.H., Urbanczyk, H., Yamamoto, S., Moriguchi, K., Sawada, H. and Suzuki, K. (2009). Ability of Agrobacterium tumefaciens and A. rhizogenes strains, inability of A. vitis and A. rubi strains to adapt to salt-insufficient environment, and taxonomic significance of a simple salt requirement test in the pathogenic Agrobacterium species. The Journal of General and Applied Microbiology 55(1): 35-41. [10.2323/jgam.55.35]
- Ueda, N., Kojima, M., Suzuki, K. and Sakakibara, H. (2012). Agrobacterium tumefaciens tumor morphology root plastid localization and preferential usage of hydroxylated prenyl donor is important for efficient gall formation. Plant Physiology 159(3): 1064-1072. [10.1104/pp.112.198572]
- 澤田宏之 (1994). Agrobacterium属細菌の系統および分類に関する研究. 果樹試験場報告 5: 1-110. [agriknowledge.affrc.go.jp]
- 澤田宏之 (2006). 第1回 いわゆる「アグロバクテリウム」について─(1)プロフィールの紹介 ─. 日本微生物資源学会誌 22(2): 117-121. [jsmrs.jp]
- 澤田宏之 (2007). 第2回 いわゆる「アグロバクテリウム」について─(2)分類の現状─. 日本微生物資源学会誌 23(1): 29-34. [jsmrs.jp]
- 澤田宏之 (2015). コロニーダイレクトのマルチプレックスPCRによる植物病原性Rhizobium属細菌(旧Agrobacterium属細菌)の菌種同定. 日本植物病理学会報 81(4): 332-340. [10.3186/jjphytopath.81.332]
- 澤田宏之・家城洋之・小林省蔵・生山 巌 (1992). 根頭がんしゅ病菌のTiプラスミドに関連した表現形質による類別. 日本植物病理学会報 58(2): 244-252. [10.3186/jjphytopath.58.244]
- 澤田宏之・富岡啓介・永井利郎・青木孝之・遠藤眞智子・廣岡裕吏・佐藤豊三 (2007). 第3回 いわゆる「アグロバクテリウム」について─(3)今後の分類を考えるための視点─. 日本微生物資源学会誌 23(2): 95-99. [jsmrs.jp]
- 澤田宏之・山﨑福容・竹谷 勝・青木孝之 (2014). 植物病原性Rhizobium属細菌の分類の変遷とジーンバンクにおける対応. 日本微生物資源学会誌 30(1): 13-27. [jsmrs.jp]
- 澤田宏之・瀧川雄一・牧野孝宏 (2015). 根頭がんしゅ病菌・毛根病菌における最新学名への読み替え. 植物防疫 69(2): 106-112. [jppa.or.jp]
- 澤田宏之・須崎浩一・川口 章 (2016). コロニーダイレクトのマルチプレックスPCRによる植物病原性Rhizobium属細菌(旧Agrobacterium属細菌)のプラスミド型別. 日本植物病理学会報 82(2): 116-124. [10.3186/jjphytopath.82.116]
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