
稻曲病研究进展
网络出版日期: 2019-09-20
基金资助
浙江省自然科学基金(LQ19C140004;LQ19C130007);浙江省重点研发项目(2019C02018)
Research Progress of Rice False Smut
陈旭,邱结华,熊萌,舒亚洲,黄世文,寇艳君* . 稻曲病研究进展[J]. 中国稻米, 2019 , 25(5) : 30 -36 . DOI: 10.3969/j.issn.1006-8082.2019.05.007
Rice false smut, caused by Ustilaginoidea virens, results in seriously yield losses and grain quality reduction in rice. Recently, it has risen from a minor disease to one of the most devastating fungal diseases of rice. With the deepening of the research on the U. virens, a better understanding of the pathogenic mechanism of U. virens was acquired and the new prevention and disease control technologies were developed. In this review, the harm, biological characteristics and pathogenic mechanism of rice false smut were summarized in order to provide a theoretical basis for the continuous and in-depth study of rice false smut and a reference for the development of new method for the control of rice false smut.
Key words: rice false smut; rice; biological characteristics; infection mechanism
[1] TANAKA E, ASHIZAWA T S, TANAKA C.Villosiclava virens gen. nov., comb. nov., teleomorph of Ustilaginoidea virens, the causal agent of rice false smut[J]. Mycotaxon, 2008, 106: 491-501.
[2] RUSH M C, AKM S, JONES J P, et al. Outbreak of false smut of rice in Louisiana[J]. Plant Disease, 2007, 84(1): 100-105.
[3] GUO X , LI Y , FAN J , et al. Progress in the study of false smut disease in rice[J]. JAST, 2012, 11: 1211-1217.
[4] IKEGAMI H. Studies on the false smut of rice.Ⅸ. Occurrence and development of sclerotia of the rice false smut fungus [J]. Research Bulletin of the Faculty of Agriculture, Gifu University, 1963, 18: 47-53.
[5] KOISO Y, LI Y, IWASAKI S, et al. Ustiloxins, antimitotic cyclic peptides from false smut balls on rice panicles caused by Ustilaginoidea virens[J]. J Antibiot, 1994, 47(7): 765-773.
[6] 田鸿,陶家凤. 水稻稻曲病菌厚垣孢子萌发特性及稻曲病菌毒素对水稻、玉米、小麦种子萌发的影响[J].西南农业学报,2000,13(3):113-116.
[7] IKEGAMI H. Studis on the false smut of rice, IV. Infection of the false smut due to inoculation with chlamydospores and ascospores at the booting stage of rice plants[J]. Research Bulletin of the Faculty of Agriculture, Gifu University, 1960, 45-51.
[8] WANG G. The sexual stage of Ustilaginoidea virens and the infection process of asscospores on rice[J]. Journal of Zhejiang Wanli University, 1995, 4(1): 1-7.
[9] TANG Y, JIN J, HU D, et al. Elucidation of the infection process of Ustilaginoidea virens (teleomorph: Villosiclava virens) in rice spikelets[J]. Plant Pathol, 2013, 62(1): 1-8.
[10] FAN J, GUO XY, LI L, et al. Infection of Ustilaginoidea virens intercepts rice seed formation but activates grain-filling-related genes[J]. J Integr Plant Biol, 2015, 57(6): 14-16.
[11] SUZ UKI M, KETTERLING M G, LI Q B, et al. Viviparous1 alters global gene expression patterns through regulation of abscisic acid signaling[J]. Plant Physiol, 2003, 132(3): 1 664-1 677.
[12] 陈月娣,王超,徐铁平,等. 籼粳交超级晚粳稻稻曲病药剂控制时机的探讨[J]. 浙江农业科学,2013(11):1 451-1 453.
[13] KOISO Y, MORISAKI N, YAMASHITA Y, et al. Isolation and structure of an antimitotic cyclic peptide, ustiloxin F: chemical interrelation with a homologous peptide, ustiloxin B[J]. J Antibiot, 2010, 29(39): 15-21.
[14] WANG X, WANG J, LAI D, et al. Ustiloxin G, a new cyclopeptide mycotoxin from rice false smut balls[J]. Toxins, 2017, 9(2): 54-60.
[15] LIN X, BIAN Y, MOU R, et al. Isolation, identification, and characterization of Ustilaginoidea virens from rice false smut balls with high ustilotoxin production potential[J]. J Basic Microbiol, 2018,58(8): 647-716.
[16] SUN W, WANG A, XU D, et al. New Ustilaginoidins from rice false smut balls caused by Villosiclava virens and their phytotoxic and cytotoxic activities[J]. J Agric Food Chem, 2017, 65(25): 5 151-5 162.
[17] SUN W, DONG X, XU D, et al. Preparative separation of main Ustilaginoidins from rice false smut balls by high-speed counter-current chromatography[J]. Toxins, 2016, 8(1): 20-25.
[18] MENG J, SUN W, MAO Z, et al. Main Ustilaginoidins and their distribution in rice false smut balls[J]. Toxins, 2015, 7(10): 4 023 - 4 034.
[19] LU S, SUN W, MENG J, et al. Bioactive bis-naphtho-γ-pyrones from rice false smut pathogen Ustilaginoidea virens[J]. J Agric Food Chem, 2015, 63(13): 3 501-3 508.
[20] 季宏平. 水稻稻曲病产量损失及药剂防治的初步研究[J]. 黑龙江农业科学,2000 (4):8-19.
[21] 谢子正,赵帅锋,许渭根,等. 籼粳杂交稻稻曲病病情分级标准研究[J]. 中国稻米,2018,24 (1):64-67.
[22] 饶汉宗,谢子正,李阳,等. 浙南山区单季杂交稻稻曲病发生与气候的关系及防控[J]. 中国稻米,2018,24(5):85-92.
[23] 陆明红,刘万才,朱凤. 稻曲病近年流行规律及治理对策探讨[J]. 中国植保导刊,2018,38(5):45-48.
[24] 张宝棣,黎毓干,康必鉴. 广东稻曲病的研究稻曲菌生理特性及厚垣孢子微观特征[J]. 云南农业大学学报,1995,10(1):35-39.
[25] 邓启得. 菌核在稻曲病菌生活史中的作用研究[D]. 杭州:浙江大学,2015.
[26] KIM KW, PARK E W. Ultrastructure of spined conidia and hyphae of the rice false smut fungus Ustilaginoidea virens[J]. Micron, 2007, 38(6): 626-631.
[27] 燕玮婷,刘二明,邓林伟,等. 稻曲病菌不同颜色厚垣孢子超微结构比较[J]. 植物病理学报,2010,40(5):538-542.
[28] 王疏,白元俊,周永力. 稻曲病菌的病原学[J]. 植物病理学报,1998,28(1):20-25.
[29] 吕建平,缪巧明,杨虹,等. 稻曲病厚垣孢子在侵染循环中的作用[J]. 西南农业学报,1994,(4):93-97.
[30] 王疏,白元俊,周永力,等. 稻曲病菌的病原学[J]. 植物病理学报,1998,28(1):19-24.
[31] MULDER J L, HOLLIDAY P. Ustilaginoidea virens descriptions of fungi and bacteria[J]. Imi Descriptions of Fungi & Bacteria, 1971, 30: 299-306.
[32] 张君成,张炳欣,陈志谊,等. 稻曲病菌分生孢子的生物学研究[J]. 植物病理学报,2003,33(1):44-47.
[33] 周永力,章琦. 稻曲病菌分离技术的初探[J]. 中国水稻科学,1999,13(3):186-188.
[34] 谭小平,宋建伟,刘二明,等. 湖南稻曲病菌群体遗传多样性分析[J]. 湖南农业大学学报(自然科学版),2008,34(6):694-697.
[35] 李阳. 稻曲病菌的生物学、侵染特性及遗传多样性研究[D]. 华中农业大学,2007.
[36] 周永力,樊金娟,曾超珍,等. 稻曲病菌遗传多样性与群体结构的初步分析[J]. 植物病理学报,2004,34(5):442-448.
[37] 陈元平. 四川稻曲病菌群体多样性研究[D]. 成都:四川农业大学,2008.
[38] 王梅. 水稻对稻曲病的田间抗性及稻曲病菌群体遗传结构研究[D]. 乌鲁木齐:新疆农业大学,2007.
[39] 潘雅姣,樊金娟,付彬英,等. 采用AFLP技术分析稻曲病菌的遗传多样性Ⅰ:同一块稻田中稻曲病菌的遗传结构[J]. 植物病理学报,2006,36(4):337-341.
[40] 张敏,李竞生,刘坚,等. 四川省籼稻区水稻稻曲病菌遗传多样性分析[J]. 植物保护学报,2009,36(2):113-118.
[41] WANG W B, ZHANG R S, LUO C P, et al. Biological characteristics and genetic diversity of Ustilaginoidea virens from rice regions in China[J]. Scientia Agricultura Sinica, 2014,47(14): 2 762-2 773.
[42] WANG F, ZHANG S, LIU M G, et al. Genetic diversity analysis reveals that geographical environment plays a more important role than rice cultivar in Villosiclava virens population selection[J]. Appl Environ Microbiol, 2014, 80(9):2 811-2 820.
[43] SUN X, KANG S, ZHANG Y, et al. Correction: genetic diversity and population structure of rice pathogen Ustilaginoidea virens in China[J]. Plos One, 2013, 8(9):1-10.
[44] 尹小乐,陈志谊,于俊杰,等. 江苏省水稻区域试验品种对稻曲病的抗性评价及稻曲病菌致病力分化研究[J]. 西南农业学报,2014,27(4):1 459-1 465.
[45] WANG G L. Studies on the infection period and the infection gate of the chlamydospores of Ustilaginoidea virens (Cooke) Tak. on rice[J]. J Plant Protect, 1992, 51(6): 425-426.
[46] FAN J, GUO X Y, HUANG F, et al. Epiphytic colonization of Ustilaginoidea virens on biotic and abiotic surfaces implies the widespread presence of primary inoculum for rice false smut disease[J]. Plant Pathol, 2014, 63(4): 937-945.
[47] FAN R H, WANG Y Q, LIU B, et al. The process of asexual spore formation and examination of chlamydospore germination of Ustilaginoidea virens[J]. Mycosystema, 2010, 6(3): 77-78.
[48] SINGH R A and DUBEY K S. Effect of different treatments on the dormancy of sclerotia of Claviceps oryzae-sativae[J]. Curr Sci, 1980, 3: 115-116.
[49] MINGLI Y, QIDE D, LINLIN F, et al. The role of Ustilaginoidea virens sclerotia in increasing incidence of rice false smut disease in the subtropical zone in China[J]. EurJ Plant Pathol, 2018, 150(3): 669-677.
[50] 金敏忠,黎煜. 水稻稻曲病菌菌核田间发生情况调查[J]. 浙江农业科学,1987(5): 238-239.
[51] FAN L L, YONG M L, LI D Y, et al. Effect of temperature on the development of sclerotia in Villosiclava virens[J]. J Integr Agr, 2016, 15(11): 2 550-2 555.
[52] 李丹阳,邓启得,雍明丽,等. 稻曲病菌菌核降解微生物的筛选与作用机制分析[J]. 中国生物防治学报,2016,32(2):258-264.
[53] SHETTY S A, SHETTY H S. An alternative host for Ustilaginoidea virens (Cke.) Tak[J]. Intern Rice Res Newsl, 1985.
[54] SHETTY S A, SHETTY H S. Role of Panicum trypheron in annual recurrence of false smut of rice[J]. Transactions of the British Mycological Society, 1987, 88(3): 409-411.
[55] ASHIZAWA T, TAKAHASHI M, ARAI M, et al. Rice false smut pathogen, Ustilaginoidea virens, invades through small gap at the apex of a rice spikelet before heading[J]. J Gen Plant Pathol, 2012, 78(4): 255-259.
[56] IKEGAMI H. Studies on the false smut of Rice. Y. Seedling inoculation with the chlamydospores of the false smut fungus[J]. Jpn J Phytopathol, 1962, 27: 16-23.
[57] SCHROUD P, TEBEEST D O. Germination and infection of rice roots by spores of Ustilaginoidea virens[J]. AAES Res Ser, 2005, 540: 143-151.
[58] LI W, LI L, FENG A, et al. Rice false smut fungus, inhibits pollen germination and degrades the integuments of rice ovule[J]. Am J Plant Sci, 2013, 4(12): 2 295-2 304.
[59] 邓根生,陈嘉孚,杨治华,等. 稻曲病菌厚垣孢子在侵染循环中作用的研究[J]. 中国农学通报,1990,6(2):20-22.
[60] 杜毅,褚茗莉,王疏,等. 稻曲病发生规律与栽培防治研究初报[J]. 辽宁农业科学,1990(6):11-14.
[61] JING F, GUO X Y, LIANG L, et al. Infection of Ustilaginoidea virens intercepts rice seed formation but activates grain‐filling‐related genes[J]. J Integr Plant Biol, 2015, 57(6):14-19.
[62] HU M, LUO L, WANG S, et al. Infection processes of Ustilaginoidea virens during artificial inoculation of rice panicles[J]. Eur J Plant Pathol, 2014, 139(1): 67-77.
[63] 杨秀娟,王舒婷,阮宏椿,等. 水稻稻曲病室内人工接种技术[J]. 植物保护学报,2011,38(5):395-400.
[64] 王舒婷. 水稻稻曲病人工接种技术及病菌遗传多样性研究[D]. 福州:福建农林大学,2012.
[65] ZHANG Y, ZHANG K, FANG A, et al. Specific adaptation of Ustilaginoidea virens in occupying host florets revealed by comparative and functional genomics[J]. Nat Commun, 2014, 5: 1 156-1 163.
[66] ZHANG K, LI Y, LI T, et al. Pathogenicity genes in Ustilaginoidea virens revealed by a predicted protein-protein interaction network[J]. J Proteome Res, 2017, 16(3): 12-19.
[67] YU J J, NIE Y F, YU M N, et al. Characterization of T-DNA insertion flanking genes of enhanced-conidiation Ustilaginoidea virens mutant A2588[J]. Scientia Agricultura Sinica, 2013, 46(24): 5 132-5 141.
[68] HUANG L, YU M, HU J, et al. Analysis of biological phenotypes and molecular cloning of T-DNA integration flanking sequences of Ustilaginoidea virens mutant strain B-726[J]. Scientia Agricultura Sinica, 2013, 46(16): 3 344-3 353.
[69] YU M, YU J, HU J, et al. Identification of pathogenicity-related genes in the rice pathogen Ustilaginoidea virens through random insertional mutagenesis[J]. Fungal Genet Biol, 2015, 76: 10-19.
[70] WANG Y H, LIU Y F, LU F, et al. Molecular characterization of T-DNA integration into Ustilaginoidea virens mutant B1464[J]. Chin J Rice Sci, 2015, 29(3): 311-318.
[71] LV B, ZHENG L, LIU H, et al. Use of random T-DNA mutagenesis in identification of gene UvPRO1, a regulator of conidiation, stress response, and virulence in Ustilaginoidea virens[J]. Front Microbiol, 2016, 7(100): 2 086-2 089.
[72] ZHENG D, YI W, YU H, et al. UvHOG1 is important for hyphal growth and stress responses in the rice false smut fungus Ustilaginoidea virens[J]. Sci Rep, 2016, 6(1): 24 824-24 827.
[73] ZHENG M T, DING H, HUANG L, et al. Low-affinity iron transport protein Uvt3277 is important for pathogenesis in the rice false smut fungus Ustilaginoidea virens[J]. Curr Genet, 2016, 63(1): 1-14.
[74] LIANG Y, HAN Y, WANG C, et al. Targeted deletion of the USTA and UvSLT2 Genes efficiently in Ustilaginoidea virens with the CRISPR-Cas9 System[J]. Front Plant Sci, 2018, 9: 699-703.
[75] FANG A, HAN Y, ZHANG N, et al. Identification and characterization of plant cell death-inducing secreted proteins from Ustilaginoidea virens[J]. MPMI, 2016, 29(5): 405-409.
[76] 姜慎. 34个水稻品种对稻曲病的抗性评价及抗相关稻曲病的生化分析[D]. 海口:海南大学,2010.
[77] 刘永锋,陆凡,陈志谊. 江苏省水稻主栽及后备品种对稻曲病的抗性[J]. 作物杂志,2000(6):11-13.
[78] 黄桃翠,范玉刚,李贤勇. 水稻稻曲病抗性育种研究进展[J]. 农业科技通讯,2017(5):207-211.
[79] LI Y S, HUANG S D, YANG J. Analysis of quantitative trait loci for resistance to rice false smut[J]. Acta Agronomica Sinica, 2011, 37(5): 778-783.
[80] 李余生,朱镇,张亚东,等. 水稻稻曲病抗性的主基因+多基因混合遗传模型分析[J]. 作物学报,2008,34(10):1 728-1 733.
[81] 徐建龙,薛庆中,罗利军,等. 近等基因导入系定位水稻抗稻曲病数量性状位点的研究初报[J]. 浙江农业学报,2002,14(1):16-21.
[82] 李余生,黄胜东,杨娟,等. 水稻抗稻曲病数量性状座位及效应分析[J]. 作物学报,2011,37(5):778-783.
[83] 郑先武,翟文学,李晓兵,等. 水稻NBS—LRR类R基因同源序列[J]. 中国科学,2001,31(1):43-51.
[84] 余育超. 全球水稻微核心种质抗病基因同源序列多态性及与稻曲病抗性关联的分析[D]. 成都:四川师范大学,2012.
[85] 汪爱娟,王国荣,孙磊,等. 稻曲病防治药剂筛选及防控技术研究[J]. 中国稻米,2015,21(6):45-51.
[86] 乐丽红,陈忠平,程飞虎. 南方粳稻稻曲病防治药剂及防治适期探讨[J]. 中国稻米,2018,24 (2):60-63.
[87] 王庆庆,黄典平,任功平,等. 水稻稻曲病的发生机理与防治[J]. 农业科技通讯,2017(10):177-179.
[88] 胡东维,梁五生,赖朝晖. 稻曲病菌成灾机制与防控技术研究进展[J]. 植物保护学报,2018,1:1-5.
[89] 刘邮洲,陈志谊,傅锡敏,等. 生物杀菌剂纹曲宁田间高效使用技术研究[J]. 江苏农业科学,2006(3):76-77.
[90] 石华. 防治稻曲病——生防杀菌剂研制成功[N]. 农民日报,2014-02-29(4版).
[91] 梁志怀,魏林,安哲宇,等. 生防木霉菌耐三唑类杀菌剂菌株的选育[J]. 中国生物防治学报,2010,26(1):60-65.
[92] 邵敏,吴智丹,陈宝君,等. 转hrf1基因水稻对稻曲病抗性分析[J]. 中国生物防治学报,2008,24(4):335-338.
[93] 马佳,张薇,耿雷跃,等. 水稻稻曲病生物防治研究进展[J]. 河北农业科学,2016,20(5):59-62.
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