東京大学 植物病理学研究室

「創造する破壊者ファイトプラズマ」参照文献リスト

1章

秋谷寛蔵 (1931) 桑の萎縮病原に關する一考察. 日蚕雑 2:199-200
Alvarez E, Pardo JM, Mejia JF, Bertaccini A, Thanh ND, Hoat TX (2013) Detection and identification of ‘Candidatus Phytoplasma asteris’-related phytoplasmas associated with a witches’ broom disease of cassava in Vietnam. Phytopathogenic Mollicutes 3:77-81
Alvarez E, Mejía JF, Llano GA, Loke JB, Calari A, Duduk B, Bertaccini A (2009) Characterization of a phytoplasma associated with frogskin disease in cassava. Plant Dis 93:1139-1145
Alvarez E, Pardo JM, Dufour D, Moreno JL, Alvarez E (2014a) The metabolism of carbohydrates in roots of cassava (Manihot esculenta Crantz) infected with frogskin disease. Phytopathology 104:7
Alvarez E, Pardo JM (2014b) First report of hypovirulence between a reovirus and phytoplasma 16SrIII-L associated with frogskin disease of cassava (Manihot esculenta Crantz). Phytopathology 104:7
Alvarez E, Pardo JM, Truke MJ (2014c) Detection and identification of ‘Candidatus Phytoplasma asteris’-related phytoplasma associated with a witches’ broom disease of cassava in Cambodia. Phytopathology 104:7
Arocha Y, Piñol P, Almeida R, Acosta K, Quiñones M, Zayas T, Varela M, Marrero Y, Boa E, Lucas A (2009a) First report of phytoplasmas affecting organoponic crops in central and eastern Cuba. Plant Pathol 58:793
Arocha Y, Echodu R, Talengera D, Muhangi J, Rockefeller E, Asher O, Nakacwa R, Serugga R, Gumisiriza G, Tripathi J, Kabuye D, Otipa M, Vutseme K, Lukanda M, Boa E (2009b) Occurrence of ‘Candidatus Phytoplasma aurantifolia’(16SrII group) in cassava and four other species in Uganda. Plant Pathol 58:390
Davis RA, Arocha Y, Jones P, Malau A (2005) First report of the association of phytoplasmas with Plant diseases in the territory of Wallis and Futuna. Australasian Plant Pathology 34:417-418
Davis RI, Kokoa P, Jones LM, Mackie J, Constable FE, Rodoni BC, Gunna TG, Rossel JB (2012) A new wilt disease of banana plants associated with phytoplasmas in Papua New Guinea (PNG). Australasian Plant Dis Notes 7:91-97
de Souza AN, da Silva FN, Bedendo IP, Carvalho CM (2014) A phytoplasma belonging to a 16SrIII-A subgroup and dsRNA virus associated with Cassava frogskin disease in Brazil. Plant Dis 98:771-779
Dharmananda S (2016) White peony, red peony, and moutan: three Chinese herbs derived from Paeonia http://www.itmonline.org/arts/peony.htm
土居養二・寺中理明・興良清・明日山秀文 (1967) クワ萎縮病, ジャガイモてんぐ巣病, Aster yellows 感染ペチュニアならびにキリてんぐ巣病の罹病茎葉師部に見いだされたMycoplasma様 (あるいはPLT様)微生物について. 日植病報 33:259-266
Flôres D, Haas IC, Canale MC, Bedendo IP (2013) Molecular identification of a 16SrIII-B phytoplasma associated with cassava witches’ broom disease. Eur J Plant Pathol 137:237-242
福士貞吉・四方英四郎・塩田弘行・関山英吉・田中一郎・大島信行・西尾美明 (1955) 馬鈴薯天狗巣病の伝染径路に関する研究. 日植病報 20:103
Goncalves RD, Normanha RS, Boock OJ (1942) O superbrotamento ou envassouramento da mandioca. Bol Secr Agric Ind e Com 8 pp
Gurr GM, Johnson AC, Ash GJ, Wilson BAL, Ero MM, Pilotti CA, Dewhurst CF, You MS (2016) Coconut lethal yellowing diseases: A Phytoplasma threat to Palms of global economic and social significance. Front Plant Sci 7:1521
Hill AV (1943) Insect transmission and host plants of virescence (big bud of tomato). J Counc Sci industry Res Aust 16:85-90
飯田俊武・新海昭 (1950) 稻黄萎病のツマグロヨコバイによる傳染. 日植病報 14:113-114
鋳方末彦・松本鹿蔵 (1931) 桑樹萎縮病の病原について. 蚕糸学報 13:58
池田栄太郎 (1916) 實驗桑樹萎縮病豫防法
川上滝弥 (1902) 桐樹天狗巣病(桐樹萎縮病)原論
Kelly PL, Reeder R, Kokoa P, Arocha Y, Nixon T, Fox A (2011) First report of a phytoplasma identified in coconut palms (Cocos nucifera) with lethal yellowing-like symptoms in Papua New Guinea. New Dis Rep 23:
高知県立農事試験場 (1919) 高知農試業務功程 62
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小森昇 (1966) 茨城県におけるイネ萎黄病の発生と防除. 植物防疫 20:285-288
Kunkel LO (1924) Insect transmission of aster yellows (abstract). Phytopathology 14:54
La YJ, Pyun BH, Shim KJ (1968) Transmission of paulownia witches'-broom virus by tobacco leaf bug, Cyrtopeltis tenuis Reuter. Korean J Plant Prot 5:1-8
La YJ, Pyun BH, Shim KJ (1968) Transmission of paulownia witches'-broom virus by tobacco leaf bug, Cyrtopeltis tenuis Reuter. Korean J Appl Entomol 5:1-7
Lozano JC (1992) Overview of integrated control of cassava diseases. Fitopatologia Brasileira 17:18-22
前島健作・大島研郎・難波成任 (2014) 我が国におけるファイトプラズマ研究の100年. 日植病報 80:124–133
Maejima K, Oshima K, Namba S (2014) Exploring the phytoplasmas, plant pathogenic bacteria. JGPP 80:210-221
Menzies JD (1946) Witches broom of Alfalfa in north-America. Phytopathology 36:762-774
村山大記・四方英四郎・塩田弘行・関山英吉・桜井博・和賀三郎・谷津繁・島本幸典 (1967) 馬鈴薯紫染萎黄病に関する研究 (第1報) . 北海道大学農学部邦文紀要 6:231-273
中村克哉 (1963) 花序に生じたキリてんぐ巣病. 森林防疫ニュース 12:127
難波成任 (2008) ファイトプラズマによる植物の病害. 微生物の事典 朝倉書店
日本貿易振興機構(JETRO) (2015) アグロトレード・ハンドブック2015
新留伊俊・糸賀繁人 (1962) 鹿児島県におけるイネ萎黄病の発生と被害. 植物防疫 16:159-162
岡本弘 (1951) 琉球で発見されたる甘藷の新病害(仮称:甘藷の天狗巣病)について. 植物防疫 5:217-220
Oliveira SAS, Abreu EFM, Araújo TS, Oliveira EJ, Andrade EC, Garcia JMP, Alvarez E (2014) First report of a 16SrIII-L phytoplasma associated with frogskin disease in cassava (Manihot esculenta Crantz) in Brazil. Plant Dis 98:153
大島信行・根本正康 (1964) ジャガイモの新萎黄病について. 日植病報 29:25-32
Pineda B, Jayasinghe UV, Lozano JC (1983) La enfermedad cuero de sapo en yuca (Manihot esculenta Crantz). ASIAVA 4:10-12
鮫島徳造 (1967) 宮崎県におけるイネ萎黄病の発生と防除. 植物防疫 21:47-50
新海昭 (1964) 琉球政府経済局農務課特別報告
新海昭 (1964) 甘藷天狗巣病のクロマダラヨコバイによる媒介. 植物防疫 18:259-262
新海昭 (1963) 沖縄における稲黄萎病の伝染と除防. 沖縄農業 2:40-42
新海昭 (1963) 稲ウイルス病の虫媒伝染に関する研究. 日植病報 28:108
新海昭 (1960) 稲萎縮病および黄萎病の流行とツマグロヨコバイの伝染力. 植物防疫 14:146-150
新海昭 (1959) タイワンツマグロヨコバイによる稲黄萎病の媒介. 日植病報 24:36
塩田弘行・関山英吉・谷津繁 (1962a) ジャガイモ紫斑萎黄病に関する研究I. 植物防疫 16:274-276
塩田弘行・関山英吉・桜井博 (1962b) ジャガイモ紫斑萎黄病に関する研究II. 植物防疫 16:323-325
塩澤宏康・山下修一・土居養二・與良清・明日山秀文 (1979) キリてんぐ巣病MLOのクサギカメムシによるニチニチソウへの伝搬と保毒虫体内MLOの所見. 日植病報 45:130-131
Sukhov KS, Vovk AM (1948) O mekhanizme otnositelnoi ustoichivosti shtambovykh sortov tomata k stolburu. Dokl Akad Nauk SSSR 61:395-398
田中一郎・成田武四・大島信行・後藤忠則 (1955) 馬鈴薯天狗巣病について. 植物防疫 9:351-354
Téllez LC, Pardo JM, Zacher M, Torres A, Álvarez E (2016) First report of a 16SrIII phytoplasma associated with frogskin disease in cassava (Manihot esculenta) in Paraguay. Plant Dis 100:1492
Thomas KM, Krishnaswami CS (1939) Little leaf—a transmissible disease of brijal. Proc Ind Nat Sci Acad 10:201–212
Wang M, Maramorosch K (1988) Earliest historical record of a tree mycoplasma disease: beneficial effect of mycoplasma-like organims on peonies. Mycoplasma diseases of crops: basic and applied aspects pp. 349-356
吉井甫 (1953) サツマイモの萎縮病(所謂モザイク病)の傳染性について. 日植病報 18:61
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2章

土居養二・寺中理明・興良清・明日山秀文 (1967) クワ萎縮病, ジャガイモてんぐ巣病, Aster yellows virus感染ペチュニアならびにキリてんぐ巣病の罹病茎葉篩部に見出されるMycoplasma様(あるいはPLT様)微生物について. 日植病報 33:259-266
Fudl-Allah AESA, Calavan EC, Igwegbe ECK (1972) Culture of a mycoplasmalike organism associated with stubborn disease of citrus. Phytopathology 62:729-731
平井篤造 (1959) 植物ウイルス病学 69 p.
石家達爾・土居養二・興良清・明日山秀文 (1967) クワ萎縮病の病徴発現におよぼすテトラサイクリン系抗生物質の影響. 日植病報 33:267-275
川北弘・石家達爾 (1970) クワ萎縮病に関する電子顕微鏡学的研究:I. ヒシモンヨコバイおよびヒシモンモドキの保毒虫体内におけるマイコプラズマ様微生物の存在. 日蚕雑 39:413-419
Kunkel LO (1926) Studies on aster yellows. Am J Bot 13:646-705
Kunkel LO (1924) Insect transmission of aster yellows (abstract). Phytopathology 14:54
Maramorosch K (1952) Multiplication of aster-yellows virus in its vector. Nature 169:194-195
奈須壮兆・杉浦己代治・脇本哲・飯田俊武 (1967) イネ黄萎病の病原について. 日植病報 33:343-344
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Williamson DL, Whitcomb RF (1975) Plant mycoplasmas: a cultivable spiroplasma causes corn stunt disease. Science 188:1018-1020

3章

Hashimoto M, Neriya Y, Keima T, Iwabuchi N, Koinuma H, Hagiwara-Komoda Y, Ishikawa K, Himeno M, Maejima K, Yamaji Y, Namba S (2016) EXA1, a GYF domain protein, is responsible for loss-of-susceptibility to plantago asiatica mosaic virus in Arabidopsis thaliana. Plant J 88:120-131
Hashimoto M, Ozeki J, Komatsu K, Senshu H, Kagiwada S, Mori T, Yamaji Y, Namba S (2008) Complete nucleotide sequence of asparagus virus 3. Arch Virol 153:219-221
Hidaka M, Yoshida Y, Masaki H, Namba S, Yamashita S, Tsuchizaki T, Uozumi T  (1992) Cloning and sequencing of the 3' half of a potato virus Y (O strain) genome encoding the 5k protein, protease, polymerase and coat protein. Nucleic Acids Res 20:3515
Kagiwada S, Yamaji Y, Komatsu K, Takahashi S, Mori T, Hirata H, Suzuki M, Ugaki M, Namba S (2005) A single amino acid residue of RNA-dependent RNA polymerase in the Potato virus X genome determines the symptoms in Nicotiana plants. Virus Res 110:177-182
Keima T, Hagiwara-Komoda Y, Hashimoto M, Neriya Y, Koinuma H, Iwabuchi N, Nishida S, Yamaji Y, Namba S (2017) Deficiency of the eIF4E isoform nCBP limits the cell-to-cell movement of a plant virus encoding triple-gene-block proteins in Arabidopsis thaliana. Sci Rep 7:39678
Komatsu K, Hashimoto M, Maejima K, Shiraishi T, Neriya Y, Miura C, Minato N, Okano Y, Sugawara K, Yamaji Y, Namba S (2011) A necrosis-inducing elicitor domain encoded by both symptomatic and asymptomatic Plantago asiatica mosaic virus isolates, whose expression is modulated by virus replication. MPMI 24:408-420
Komatsu K, Hashimoto M, Ozeki J, Yamaji Y, Maejima K, Senshu H, Himeno M, Okano Y, Kagiwada S, Namba S (2010) Viral-induced systemic necrosis in plants involves both programmed cell death and the inhibition of viral multiplication, which are regulated by independent pathways. MPMI 23:283-293
Komatsu K, Yamaji Y, Ozeki J, Hashimoto M, Kagiwada S, Takahashi S, Namba S (2008) Nucleotide sequence analysis of seven Japanese isolates of Plantago asiatica mosaic virus (PlAMV): a unique potexvirus with significantly high genomic and biological variability within the species. Arch Virol 153:193-198
Komatsu K, Kagiwada S, Takahashi S, Mori T, Yamaji Y, Hirata H, Ozeki J, Yoshida A, Suzuki M, Ugaki M, Namba S (2005) Phylogenetic characteristics, genomic heterogeneity and symptomatic variation of five closely related Japanese strains of Potato virus X. Virus Genes 31:99-105
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Namba S, Kashiwazaki S, Lu X, Tamura M, Tsuchizaki T (1998) Complete nucleotide sequence of wheat yellow mosaic bymovirus genomic RNAs. Arch Virol 143:631-643
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Ozeki J, Takahashi S, Komatsu K, Kagiwada S, Yamashita K, Mori T, Hirata H, Yamaji Y, Ugaki M, Namba S (2006) A single amino acid in the RNA-dependent RNA polymerase of Plantago asiatica mosaic virus contributes to systemic necrosis. Arch Virol 151:2067-2075
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Senshu H, Yamaji Y, Minato N, Shiraishi T, Maejima K, Hashimoto M, Miura C, Neriya Y, Namba S (2011) A dual strategy for the suppression of host antiviral silencing: two distinct suppressors for viral replication and viral movement encoded by potato virus M. J Virol 85:10269-10278
Senshu H, Ozeki J, Komatsu K, Hashimoto M, Hatada K, Aoyama M, Kagiwada S, Yamaji Y, Namba S (2009) Variability in the level of RNA silencing suppression caused by triple gene block protein 1 (TGBp1) from various potexviruses during infection. J Gen Virol 90:1014-1024
Sugawara K, Shiraishi T, Yoshida T, Fujita N, Netsu O, Yamaji Y, Namba S (2013) A replicase of potato virus X acts as the resistance-breaking determinant for JAX1-mediated resistance. MPMI 26:1106-111
Yamaji Y, Maejima K, Komatsu K, Shiraishi T, Okano Y, Himeno M, Sugawara K, Neriya Y, Minato N, Miura C, Hashimoto M, Namba S (2012) Lectin-mediated resistance impairs plant virus infection at the cellular level. Plant Cell 24:778-793
Yamaji Y, Kagiwada S, Nakabayashi H, Ugaki M, Namba S (2001) Complete nucleotide sequence of Tulip virus X (TVX-J): borderline between species and strains within the genus Potexvirus. Arch Virol 146:2309-2320

4章

Ahrens U, Lorenz KH, Seemuller E (1993) Genetic diversity among mycoplasmalike organisms associated with stone fruit diseases. MPMI 6:686-691
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Arocha Y, Antesana O, Montellano E, Franco P, Plata G, Jones P (2007) 'Candidatus Phytoplasma lycopersici', a phytoplasma associated with 'hoja de perejil' diseasein Bolivia. IJSEM 57:1704-1710
Arocha Y, López M, Piñol B, Fernández M, Picornell B, Almeida R, Palenzuela I, Wilson MR, Jones P (2005) 'Candidatus Phytoplasma graminis' and 'CandidatusPhytoplasma caricae', two novel phytoplasmas associated with diseases of sugarcane, weeds and papaya in Cuba. IJSEM 55:2451-2463
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Davis RE, Dally EL, Bertaccini A, Credi R, Osler R, Savino V, Carraro L, Terlizzi BD, Lee IM (1992) RFLP analysis and dot hybridizations of chromosomal DNA distinguish two mycoplasmalike organisms (MLOs) associated with grapevine yellows disease. Phytopathology 82:242
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6章

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