Tomofumi Mochizuki

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Publications of Tomofumi Mochizuki (23 listed):

Journal of General Plant Pathology (2022) 88, 105-127
Shin-ichi Fuji, Tomofumi Mochizuki, Mitsuru Okuda, Shinya Tsuda, Satoshi Kagiwada, Ken-Taro Sekine, Masashi Ugaki, Keiko T. Natsuaki, Masamichi Isogai, Tetsuo Maoka, Minoru Takeshita, Nobuyuki Yoshikawa, Kazuyuki Mise, Takahide Sasaya, Hideki Kondo, Kenji Kubota, Yasuyuki Yamaji, Toru Iwanami, Kazusato Ohshima, Kappei Kobayashi, Tatsuji Hataya, Teruo Sano and Nobuhiro Suzuki (2022)
Plant viruses and viroids in Japan

Viruses (2021) 13 (10 - 1931)
Miki Fukunishi, Shinsaku Sasai, Motoaki Tojo and Tomofumi Mochizuki (2021)
Novel fusari- and toti-like viruses, with probable different origins, in the plant pathogenic oomycete Globisporangium ultimum

European Journal of Plant Pathology (2019) 154, 555-563
Mami Ebata, Yosuke Matsushita, Masayuki Morimoto and Tomofumi Mochizuki (2019)
Distribution of Chrysanthemum chlorotic mottle viroid in shoot meristem and flower buds of chrysanthemum

Journal of Virology (2018) 92 (21 - e01007-18)
Tomofumi Mochizuki, Rie Ohara and Marilyn J. Roossinck (2018)
Large-scale synonymous substitutions in Cucumber mosaic virus RNA 3 facilitate amino acid mutations in the coat protein

Journal of General Plant Pathology (2017) 83, 189-196
Tomofumi Mochizuki, Itsuki Iwamoto, Aya Atarashi, Satoshi T. Ohki and Hiroyuki Kikukawa (2017)
Rapid and low-cost diagnosis of Japanese yam mosaic virus infection in Chinese yam (Dioscorea polystachya) leaves by a print-capture RT-PCR

Archives of Virology (2016) 161, 2683-2692
Tomofumi Mochizuki, Shinya Nobuhara, Miho Nishimura, Bo-Song Ryang, Masaki Naoe, Tadashi Matsumoto, Yoshitaka Kosaka and Satoshi T. Ohki (2016)
The entry of Cucumber mosaic virus into cucumber xylem is facilitated by co-infection with Zucchini yellow mosaic virus

Phytopathology (2014) 104, 1001-1006
Ryusuke Kawamura, Hanako Shimura, Tomofumi Mochizuki, Satoshi T. Ohki and Chikara Masuta (2014)
Pollen transmission of Asparagus virus 2 (AV-2) may facilitate mixed infection by two AV-2 isolates in asparagus plants

Molecular Plant Pathology (2014) 15, 242-254
Tomofumi Mochizuki, Yoshiyuki Ogata, Yuki Hirata and Satoshi T. Ohki (2014)
Quantitative transcriptional changes associated with chlorosis severity in mosaic leaves of tobacco plants infected with Cucumber mosaic virus

Archives of Virology (2013) 158, 1979-1985
Atsushi Usami, Tomofumi Mochizuki, Shinya Tsuda and Satoshi T. Ohki (2013)
Large-scale codon de-optimisation of the p29 replicase gene by synonymous substitutions causes a loss of infectivity of melon necrotic spot virus

Molecular Plant Pathology (2012) 13, 217-225
Tomofumi Mochizuki and Satoshi T. Ohki (2012)
Cucumber mosaic virus: viral genes as virulence determinants

Journal of General Plant Pathology (2012) 78, 49-53
Tomofumi Mochizuki, Ayami Hojo-Kanda, Takehiro Ohki, Masato Kawabe and Shinya Tsuda (2012)
Comparisons of ribosomal DNA-internal transcribed spacer sequences and biological features among Olpidium bornovanus isolates from Cucurbitaceae-cultivating soil in Japan

Journal of General Plant Pathology (2012) 78, 2-7
Kumiko Oka, Tomofumi Mochizuki and Satoshi T. Ohki (2012)
Detection of Carrot red leaf virus-RNA in carrot seeds by multiplex RT-nested PCR

Archives of Virology (2011) 156, 881-886
Tomofumi Mochizuki and Satoshi T. Ohki (2011)
Single amino acid substitutions at residue 129 in the coat protein of Cucumber mosaic virus affect symptom expression and thylakoid structure

Australasian Plant Pathology (2011) 40, 215-221
Anurag Sunpapao, Tomofumi Mochizuki and Satoshi T. Ohki (2011)
Relationship between viral distribution in the leaf primordia/young developing leaves and symptom severity in the fully expanded leaves of tobacco plants infected with Cucumber mosaic virus

European Journal of Plant Pathology (2010) 126, 117-122
Fang Dong, Tomofumi Mochizuki and Satoshi T. Ohki (2010)
Tobacco ringspot virus persists in the shoot apical meristem but not in the root apical meristem of infected tobacco

Journal of General Virology (2009) 90, 3015-3021
Anurag Sunpapao, Takashi Nakai, Fang Dong, Tomofumi Mochizuki and Satoshi T. Ohki (2009)
The 2b protein of Cucumber mosaic virus is essential for viral infection of the shoot apical meristem and for efficient invasion of leaf primordia in infected tobacco plants

European Journal of Plant Pathology (2008) 121, 189-194
Kazutaka Kido, Tomofumi Mochizuki, Kazutoshi Matsuo, Chika Tanaka, Kenji Kubota, Takehiro Ohki and Shinya Tsuda (2008)
Functional degeneration of the resistance gene nsv against melon necrotic spot virus at low temperature

Phytopathology (2008) 98, 181-186
K. Kido, C. Tanaka, T. Mochizuki, K. Kubota, T. Ohki, J. Ohnishi, L.M. Knight and S. Tsuda (2008)
High temperatures activate local viral multiplication and cell-to-cell movement of melon necrotic spot virus but restrict expression of systemic symptoms

Phytopathology (2008) 98, 1165-1170
Takehiro Ohki, Isamu Sako, Ayami Kanda, Tomofumi Mochizuki, Yohachiro Honda and Shinya Tsuda (2008)
A new strain of melon necrotic spot virus that is unable to systemically infect Cucumis melo

Journal of Virology (2008) 82, 3250-3260
Katsuyuki Hirai, Kenji Kubota, Tomofumi Mochizuki, Shinya Tsuda and Tetsuo Meshi (2008)
Antiviral RNA silencing is restricted to the marginal region of the dark green tissue in the mosaic leaves of Tomato mosaic virus-infected tobacco plants

Journal of General Plant Pathology (2008) 74, 176-181
Tomofumi Mochizuki, Jun Ohnishi, Takehiro Ohki, Ayami Kanda and Shinya Tsuda (2008)
Amino acid substitution in the coat protein of melon necrotic spot virus causes loss of binding to the surface of Olpidium bornovanus zoospores

Journal of General Plant Pathology (2005) 71, 326-332
Tomofumi Mochizuki and Satoshi T. Ohki (2005)
Amino acid 129 in the coat protein of Cucumber mosaic virus primarily determines invasion of the shoot apical meristem of tobacco plants

Journal of General Plant Pathology (2004) 70, 363-366
Tomofumi Mochizuki and Satoshi T. Ohki (2004)
Shoot meristem tissue of tobacco inoculated with Cucumber mosaic virus is infected with the virus and subsequently recovers from infection by RNA silencing