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甘蔗黄叶病及其病原分子生物学研究进展

, PP. 177-184

Keywords: 甘蔗黄叶病,甘蔗黄叶病毒,抗病育种

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Abstract:

甘蔗黄叶病是由甘蔗黄叶病毒(Sugarcaneyellowleafvirus,SCYLV)引起的一种病毒病害,在全球主要甘蔗种植国家或地区普遍发生,危害日益严重。SCYLV经甘蔗蚜虫以持久性方式传播,在寄主植株内主要侵染韧皮部组织。该病毒起源于黄症病毒科属间基因重组,被国际病毒分类命名委员会确认为黄症病毒科马铃薯卷叶病毒属成员。文章综述了甘蔗黄叶病毒生物学特征、病害发生和危害、病原鉴定和检测、分子进化和遗传多样性、基因组结构和基因功能以及抗病转基因等方面研究进展,并对甘蔗黄叶病抗病育种和防治措施作了讨论。

References

[1]  Schenck S. Yellow leaf syndrome - a new sugarcane disease. Hawaiian Sugar Planters Association: Annual Report, 1990: 38
[2]  Cronjé C P R, Tymon A M, Jones P, et al. Association of a phytoplasma with yellow leaf syndrome of sugarcane in Africa. Annals of Applied Biology, 1998, 133(2): 177-186
[3]  Arocha Y, Gonzalez L, Peralta E L, et al. First report of virus and phytoplasma pathogens associated with yellow leaf syndrome of sugarcane in Cuba. Plant Disease, 1999, 83(12): 1177
[4]  Aljanabi S M, Parmessur Y, Moutia Y, et al. Further evidence of the association of a phytoplasma and a virus with yellow leaf syndrome in sugarcane. Plant Pathology, 2001, 50(5): 628-636
[5]  Parmessur Y, Aljanabi S, Saumtally S, et al. Sugarcane yellow leaf virus and sugarcane yellows phytoplasma: elimination by tissue culture. Plant Pathology, 2002, 51(5): 561-566
[6]  Gaur R K, Raizada R, Rao G P. Sugarcane yellow leaf phytoplasma associated for the first time with sugarcane yellow leaf syndrome in India. Plant Pathology, 2008, 57(4): 772
[7]  Rott P, Comstock J C, Croft B J, et al. Advances and challenges in sugarcane pathology: a review of the 2003 pathology workshop. Proceedings of the International Society of Sugarcane Technologists Congress, 2005, 25(2): 607-614
[8]  许东林, 李俊光, 周国辉. 广东甘蔗黄叶病田间调查及病原病毒的分子检测. 植物病理学报, 2006, 36(5): 404-406
[9]  更多...
[10]  Viswanathan R. Ratoon stunting disease infection favours severity of yellow leaf syndrome caused by sugarcane yellow leaf virus in sugarcane. Sugar Cane International, 2004, 22(2): 3-7
[11]  Komor E. Susceptibility of sugarcane, plantation weeds and grain cereals to infection by Sugarcane yellow leaf virus and selection by sugarcane breeding in Hawaii. European Journal of Plant Pathology, 2011, 129(3): 379-388
[12]  Lehrer A T, Schenck S, Yan S L, et al. Movement of aphid-transmitted Sugarcane yellow leaf virus (ScYLV) within and between sugarcane plants. Plant Pathology, 2007, 56(4): 711-717
[13]  Chatenet M, Delage C, Ripolles M. Detection of Sugarcane yellow leaf virus in quarantine and production of virus-free sugarcane by apical meristem culture. Plant Disease, 2001, 85(11): 1177-1180
[14]  高三基, 潘永保, 陈如凯. 抗原直接包被间接ELISA检测甘蔗黄叶病毒. 热带作物学报, 2010, 31(8): 1356-1361
[15]  Rassaby L, Girard J C, Lemaire O, et al. Spread of Sugarcane yellow leaf virus in sugarcane plants and fields on the island of Réunion. Plant Pathology, 2004, 53(1): 117-125
[16]  Daugrois J H, Edon-Jock C, Bonoto S, et al. Spread of Sugarcane yellow leaf virus in initially disease-free sugarcane is linked to rainfall and host resistance in the humid tropical environment of Guadeloupe. European Journal of Plant Pathology, 2011, 129(1): 71-80
[17]  Grisham M P, Eggleston G, Hoy J W, et al. The effect of Sugarcane yellow leaf virus infection on yield of sugarcane in Louisiana. Sugar Cane International, 2009, 27(3): 91-94
[18]  Lehrer A T, Wu K K, Komor E. Impact of Sugarcane yellow leaf virus on growth and sugar yield of sugarcane. Journal of General Plant Pathology, 2009, 75(4): 288-296
[19]  Rassaby L, Girard J C, Letourmy P, et al. Impact of Sugarcane yellow leaf virus on sugarcane yield and juice quality in Réunion Island. European Journal of Plant Pathology, 2003, 109(5): 459-466
[20]  Goncalves M C, Vega J, Oliveira J G, et al. Sugarcane yellow leaf virus infection leads to alterations in photosynthetic efficiency and carbohydrate accumulation in sugarcane leaves. Fitopatologia Brasileira, 2005, 30(1): 10-16
[21]  Korimbocus J, Coates D, Barker I, et al. Improved detection of Sugarcane yellow leaf virus using a real-time fluorescent (TaqMan) RT-PCR assay. Journal of Virological Methods, 2002, 103(2): 109-120
[22]  Goncalves M C, Klerks M M, Verbeek M, et al. The use of molecular beacons combined with NASBA for the sensitive detection of Sugarcane yellow leaf virus. European Journal of Plant Pathology, 2002, 108(5): 401-407
[23]  高三基, 杨帆, 陈平华, 等.甘蔗黄叶病毒外壳蛋白基因克隆及其实时荧光RT-PCR检测. 植物病理学报, 2011, 41(3): 262-269
[24]  Xie Y J, Wang M Q, Xu D L, et al. Simultaneous detection and identification of four sugarcane by one-step RT-PCR. Journal of Virological Methods, 2009, 162(1/2): 64-68
[25]  Grisham M P, Johnson R M, Zimba P V. Detecting Sugarcane yellow leaf virus infection in asymptomatic leaves with hyperspectral remote sensing and associated leaf pigment changes. Journal of Virological Methods, 2010, 167(2): 140-145
[26]  Maia I G, Goncalves M C, Arruda P, et al. Molecular evidence that sugarcane yellow leaf virus (SCYLV) is a member of the Luteoviridae family. Archives of Virology, 2000, 145(5): 1009-1019
[27]  高三基, 郭晋隆, 孟岩, 等. 甘蔗黄叶病毒的RT-PCR检测技术.福建农林大学学报(自然科学版), 2006, 35(5): 466-470
[28]  高三基, 林彦铨, 邓祖湖, 等. 我国甘蔗主要杂交亲本黄叶病病原鉴定及田间发病率. 植物保护学报, 2011, 38(3): 240-246
[29]  Scagliusi S M, Lockhart B E L. Transmission, characterization and serology of a luteovirus associated with yellow leaf syndrome of sugarcane. Phytopathology, 2000, 90(2): 120-124
[30]  Mayo M A. Changes to virus taxonomy 2004. Archives of Virology, 2005, 150(1): 189-198
[31]  Schenck S, Lehrer A T. Factors affecting the transmission and spread of Sugarcane yellow leaf virus. Plant Disease, 2000, 84(10): 1085-1088
[32]  Comstock J C, Miller J D, Schnell R J. Incidence of sugarcane yellow leaf virus in clones maintained in the world collection of sugarcane and related grasses at the United States National Repository in Miami, Florida. Sugar Tech, 2001, 3(4): 128-133
[33]  周国辉, 李俊光, 许东林, 等. 华南地区甘蔗黄叶病发生及甘蔗绵蚜传毒特性研究. 中国农业科学, 2006, 39(10): 2023-2027
[34]  Vega J, Scagliusi S M M, Ulian E C. Sugarcane yellow leaf disease in Brazil: evidence of association with a luteovirus. Plant Disease, 1997, 81(1): 21-26
[35]  高三基, 郭晋隆, 陈如凯, 等. 福州地区甘蔗黄叶病病原分子鉴定及电镜检测. 作物学报, 2007, 33(7): 1210-1213
[36]  Comstock J C, Irey M S, Lockhart B E L, et al. Incidence of yellow leaf syndrome in CP cultivars based on polymerase chain reaction and serological techniques. Sugar Cane, 1998, 4: 21-24
[37]  Viswanathan R. Sugarcane yellow leaf syndrome in India: incidence and effect on yield parameters. Sugar Cane International, 2002, 20(5): 17-23
[38]  Lehrer A T, Komor E. Symptom expression of yellow leaf disease in sugarcane cultivars with different degrees of infection by Sugarcane yellow leaf virus. Plant Pathology, 2008, 57(1): 178-189
[39]  Izaguirre-Mayoral M L, Carballo O, Aleste C, et al. Physiological performance of asymptomatic and yellow leaf syndrome-affected sugarcanes in Venezuela. Journal of Phytopathology, 2002, 150(1): 13-19
[40]  Fontaniella B, Vicente C, Legaz M E, et al. Yellow leaf syndrome modifies the composition of sugarcane juices in polysaccharides, phenols and polyamines. Plant Physiology and Biochemistry, 2003, 41(11/12): 1027-1036
[41]  Yan S L, Lehrer A T, Hajirezaei M R, et al. Modulation of carbohydrate metabolism and chloroplast structure in sugarcane leaves which were infected by Sugarcane yellow leaf virus (SCYLV). Physiological and Molecular Plant Pathology, 2009, 73(4/5): 78-87
[42]  高三基, 陈平华, 洪健, 等. 感染甘蔗黄叶病毒后甘蔗叶组织超微结构的病变. 福建农林大学学报(自然科学版), 2010, 39(1): 6-9
[43]  Lockhart B E L, Irey M S, Comstock J C. Sugarcane bacilliform virus, sugarcane mild mosaic virus, and sugarcane yellow leaf syndrome. // Croft B J, Piggin C T, Wallis E S, et al (eds). Sugarcane germplasm conservation and exchange. Canberra: Australian Centre for International Agricultural Research (ACIAR), 1996: 108-112
[44]  Schenck S, Hu J S, Lockhart B E. Use of a tissue blot immunoassay to determine the distribution of sugarcane yellow leaf virus in Hawaii. Sugar Cane, 1997, 4: 5-8
[45]  Berry S, Brune A E, Rutherford R S. Development of new methods for diagnosing yellow leaf syndrome. Proceedings of the South African Sugar Technologists\' Association, 2002, 76: 590-592
[46]  Zhu Y J, Lim S T S, Schenck S, et al. RT-PCR and quantitative real-time RT-PCR detection of Sugarcane yellow leaf virus (SCYLV) in symptomatic and asymptomatic plants of Hawaiian sugarcane cultivars and the correlation of SCYLV titre to yield. European Journal of Plant Pathology, 2010, 127(2): 263-273
[47]  Joomun N, Dookun-Saumtally A. Occurrence of three genotypes of Sugarcane yellow leaf virus in a variety collection in Mauritius. Sugar Tech, 2010, 12(3/4): 312-316
[48]  Moonan F, Molina J, Mirkov T E. Sugarcane yellow leaf virus: an emerging virus that has evolved by recombination between luteoviral and poleroviral ancestors. Virology, 2000, 269(1): 156-171
[49]  Smith G R, Borg Z, Lockhart B E L, et al. Sugarcane yellow leaf virus: a novel member of the Luteoviridae that probably arose by inter-species recombination. Journal of General Virology, 2000, 81(7): 1865-1869
[50]  Pagán I, Holmes E C. Long-term evolution of the Luteoviridae: time scale and mode of virus speciation. Journal of Virology, 2010, 84(12): 6177-6187
[51]  Moonan F, Mirkov T E. Analyses of genotypic diversity of North, South and Central American isolates of Sugarcane yellow leaf virus: evidence for colombian origins and for intraspecific spatial phylogenetic variation. Journal of Virology, 2002, 76(3): 1339-1348
[52]  Abu Ahmad Y, Rassaby L, Royer M, et al. Yellow leaf of sugarcane is caused by at least three different genotypes of sugarcane yellow leaf virus, one of which predominates on the Island of Reunion. Archives of Virology, 2006, 151(7): 1355-1371
[53]  Abu Ahmad Y, Royer M, Daugrois J H, et al. Geographical distribution of four Sugarcane yellow leaf virus genotypes. Plant Disease, 2006, 90(9): 1156-1160
[54]  Abu Ahmad Y, Costet L, Daugrois J H, et al. Variation in infection capacity and in virulence exists between genotypes of Sugarcane yellow leaf virus.Plant Disease, 2007, 91(3): 253-259
[55]  Viswanathan R, Balamuralikrishnan M, Karuppaiah R. Identification of three genotypes of Sugarcane yellow leaf virus causing yellow leaf disease from India and their molecular characterization. Virus Genes, 2008, 37(3): 368-379
[56]  Singh D, Rao G P. Molecular detection of two strains of Sugarcane yellow leaf virus in India and their secondary spread in nature through aphids. Acta Phytopathologica et Entomologica Hungarica, 2011, 46(1): 17-26
[57]  Miller W A, Dinesh-Kumar S P, Paul C P. Luteovirus gene expression. Critical Reviews in Plant Science, 1995, 14(3): 179-211
[58]  Roth B M, Pruss G J, Vance V B. Plant viral suppressors of RNA silencing. Virus Research. 2004, 102(1): 97-108
[59]  Burgyán J, Havelda Z. Viral suppressors of RNA silencing. Trends in Plant Science, 2011, 16(5): 265-272
[60]  Schenck S, Lehrer A T, Wu K K. Yellow leaf syndrome. Hawaii Agriculture Research Center Pathology Report, 2001, 68:1-6
[61]  Sanford J C, Johnston S A. The concept of parasite-derived resistance deriving resistance genes from the parasite’s own genome. Journal of Theoretical Biology, 1985, 113(2): 395-405
[62]  Comstock J C, Miller J D. Yield comparisons: disease-free tissue-culture versus bud-propagated sugarcane plants and healthy versus yellow leaf infected plants. Journal of the American Society of Sugar Cane Technologists, 2004, 24: 31-40
[63]  Wang M Q, Zhou G H. A near-complete genome sequence of a distinct isolate of Sugarcane yellow leaf virus from China, representing a sixth new genotype. Virus Genes, 2010, 41(2): 268-272
[64]  ElSayed A I, Weig A R, Komor E. Molecular characterization of Hawaiian Sugarcane yellow leaf virus genotypes and their phylogenetic relationship to strains from other sugarcane-growing countries. European Journal of Plant Pathology, 2011, 129(3): 399-412
[65]  Wang M Q, Xu D L, Li R, et al. Genotype identification and genetic diversity of Sugarcane yellow leaf virus in China. Plant Pathology, 2012, doi: 10.1111/j. 1365-3059. 2012. 02591.x
[66]  Mangwende T, Wang M L, Borth W, et al. The P0 gene of Sugarcane yellow leaf virus encodes an RNA silencing suppressor with unique activities. Virology, 2009, 384(1): 38-50
[67]  Gilbert R A, Glynn N C, Comstock J C, et al. Agronomic performance and genetic characterization of sugarcane transformed for resistance to sugarcane yellow leaf virus. Field Crops Research, 2009, 111(1/2): 36-46
[68]  Glynna N C, Gilbert R A, Comstock J C, et al. Transmission of a Sugarcane yellow leaf virus resistance transgene to sexual progeny and screening by kanamycin inoculation. Field Crops Research, 2010, 119(2/3): 308-313
[69]  Zhu Y J, McCafferty H, Osterman G, et al. Genetic transformation with untranslatable coat protein gene of sugarcane yellow leaf virus reduces virus titers in sugarcane. Transgenic Research, 2011, 20(3): 503-512
[70]  Fitch M M M, Lehrer A T, Komor E, et al. Elimination of Sugarcane yellow leaf virus from infected sugarcane plants by meristem tip culture visualized by tissue blot immunoassay. Plant Pathology, 2001, 50(6): 676-680

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