Nyvall R F. Field crop diseases (3rd edition). Iowa, USA: Iowa State University Press, 1999
[2]
Logrieco A, Mulè G, Moretti A, et al. Toxigenic Fusarium species and mycotoxins associated with maize ear rot in Europe. European Journal of Plant Pathology, 2002, 108(7): 597-609
[3]
Li Wei, Hu Yingchun, Chen Ying, et al. Phylogenetic analysis, chemotype diversity, and pathogenicity of the Fusarium graminearum clade in the Yangtze basin. Mycosystema, 2010, 29(1): 51-58 (in Chinese) [李伟, 胡迎春, 陈莹, 等. 长江流域禾谷镰孢菌群部分菌株系统发育学、产毒素化学型及致病力研究. 菌物学报, 2010, 29(1): 51-58]
[4]
更多...
[5]
Nicholson P, Simpson D R, Weston G, et al. Detection and quantification of Fusarium culmorum and Fusarium graminearum in cereals using PCR assays. Physiological and Molecular Plant Pathology, 1998, 53(1): 17-37
[6]
Aliakbari F, Mirabolfathy M, Emami M, et al. Natural occurrence of Fusarium species in maize kernels at Gholestan Province in northern Iran. Asian Journal of Plant Sciences, 2007, 6(8): 1276-1281
[7]
Gale L R, Harrison S A, Ward T J, et al. Nivalenol-type populations of Fusarium graminearum and F. asiaticum are prevalent on wheat in southern Louisiana. Phytopathology, 2011, 101(1): 124-134
[8]
Ma L J, van der Does H C, Borkovich K A, et al. Comparative genomics reveals mobile pathogenicity chromosomes inFusarium. Nature, 2010, 464(7287): 367-373
[9]
White D G. Compendium of corn diseases (3rd edition). Minnesota, USA: APS Press, 1999
[10]
Wang Xiaoou, Shi Jie, Jin Qiming, et al. Manual of plant diseases and insect pests in the corn field. Beijing: China Agricultural Science and Technology Press, 2010 (in Chinese) [王晓鸣, 石洁, 晋齐鸣, 等. 玉米病虫害田间手册. 北京: 中国农业科学技术出版社, 2010]
[11]
Wang J H, Ndoye M, Zhang J B, et al. Population structure and genetic diversity of the Fusarium graminearum species complex. Toxins (Basel), 2011, 3(8): 1020-1037
[12]
Munkvold G P. Epidemiology of Fusariumdiseases and their mycotoxins in maize ears. European Journal of Plant Pathology, 2003, 109(7): 705-713
[13]
Li Honglian, Zhang Xin, Yuan Hongxia, et al. Identification of pathogens causing ear and seed rot in corn hybrids. Journal of Plant Protection, 1999, 26(4): 305-308 (in Chinese) [李洪连, 张新, 袁红霞, 等. 玉米杂交种穗粒腐病原鉴定. 植物保护学报, 1999, 26(4): 305-308]
[14]
Zhang Xiaofei, Zou Chengjia, Cui Lina, et al. Identification of pathogen causing maize ear rot and inoculation technique in southwest China. Southwest China Journal of Agricultural Sciences, 2012, 25(6): 2078-2082 (in Chinese) [张小飞, 邹成佳, 崔丽娜, 等. 西南地区玉米穗腐病病原分离鉴定及接种方法研究. 西南农业学报, 2012, 25(6): 2078-2082]
[15]
Watanabe M, Yonezawa T, Lee K I, et al. Molecular phylogeny of the higher and lower taxonomy of the Fusarium genus and differences in the evolutionary histories of multiple genes. BMC Evolutionary Biology, 2011, 11: 322#
[16]
O\\'Donnell K, Ward T J, Aberra D, et al. Multilocus genotyping and molecular phylogenetics resolve a novel head blight pathogen within the Fusarium graminearum species complex from Ethiopia. Fungal Genetics and Biology, 2008, 45(11): 1514-1522
[17]
Sarver B A, Ward T J, Gale L R, et al. Novel Fusarium head blight pathogens from Nepal and Louisiana revealed by multilocus genealogical concordance. Fungal Genetics and Biology, 2011, 48(12): 1096-1107
[18]
Lee S H, Lee J K, Nam Y J, et al. Population structure of Fusarium graminearum from maize and rice in 2009 in Korea. The Plant Pathology Journal, 2010, 26(4): 321-327
[19]
Boutigny A L, Ward T J, Ballois N, et al. Diversity of the Fusarium graminearum species complex on French cereals. European Journal of Plant Pathology, 2014, 138(1): 133-148
[20]
Sampietro D A, Díaz C G, Gonzalez V, et al. Species diversity and toxigenic potential of Fusarium graminearum complex isolates from maize fields in northwest Argentina. International Journal of Food Microbiology, 2011, 145(1): 359-364
[21]
Shen C M, Hu Y C, Sun H Y, et al. Geographic distribution of trichothecene chemotypes of the Fusarium graminearumspecies complex in major winter wheat production areas of China. Plant Disease, 2012, 96(8): 1172-1178
[22]
Zhao Hao, Zhang Zheng, Xu Jingsheng, et al. A rapid and simple method for obtaining single-spore isolates of Fusarium species-agar dilution lineation separation. Plant Protection, 2008, 34(6): 134-136 (in Chinese) [张昊, 张争, 许景升, 等. 一种简单快速的赤霉病菌单孢分离方法―平板稀释画线分离法. 植物保护, 2008, 34(6): 134-136]
[23]
Leslie J F, Summerell B A. The Fusarium laboratory manual. Iowa, USA: Blackwell Publishing Professional, 2006
[24]
Booth C. The genus Fusarium. Kew, Surrey, UK: Commonwealth Mycological Institute, 1971
[25]
Bluhm B H, Flaherty J E, Cousin M A, et al. Multiplex polymerase chain reaction assay for the differential detection of trichothecene and fumonisin producing species of Fusarium in cornmeal. Journal of Food Protection, 2002, 65(12): 1955-1961
[26]
Mishra P K, Fox R T V, Culham A. Development of a PCR-based assay for rapid and reliable identification of pathogenic Fusaria. FEMS Microbiology Letters, 2003, 218(2): 329-332
[27]
Mulè G, Susca A, Stea G, et al. A species-specific PCR assay based on the calmodulin partial gene for identification of Fusarium verticillioides, F.proliferatum andF.subglutinans. European Journal of Plant Pathology, 2004, 110(5/6): 495-502
[28]
Mesterházy ?, Lemmens M, Reid L M. Breeding for resistance to ear rots caused byFusariumspp. in maize―a review. Plant Breeding, 2012, 131(1): 1-19
[29]
Schaafsm A W, Nicol R W, Reid L M. Evaluating commercial maize hybrids for resistance to gibberella ear rot. European Journal of Plant Pathology, 1997, 103(8): 737-746
[30]
Goertz A, Zuehlke S, Spiteller M, et al. Fusarium species and mycotoxin profiles on commercial maize hybrids in Germany. European Journal of Plant Pathology, 2010, 128(1): 101-111
[31]
Folcher L, Delos M, Marengue E, et al. Lower mycotoxin levels in Bt maize grain. Agronomy for Sustainable Development, 2010, 30(4): 711-719
[32]
Small I M, Flett B C, Marasas W F O, et al. Resistance in maize inbred lines to Fusarium verticillioides and fumonisin accumulation in South Africa. Plant Disease, 2012, 96(6): 881-888
[33]
Ivic D, Cabric M, Palaversic B, et al. No correlation between pericarp thickness and Fusarium ear rot (Fusarium verticillioides) in Croatian maize hybrids and lines. Maydica, 2008, 53(3/4): 297-301
[34]
Stumpf R, dos Santos J, Gomes L B, et al. Fusarium species and fumonisins associated with maize kernels produced in Rio Grande do Sul State for the 2008/09 and 2009/10 growing seasons. Brazilian Journal of Microbiology, 2013, 44(1): 89-95
[35]
Presello D A, Reid L M, Mather D E. Resistance of Argentine maize germplasm to Gibberella and Fusarium ear rots. Maydica, 2004, 49(2): 73-81
[36]
Guo Cheng, Wei Hongyu, Guo Manku. Isolation,identification and biological characteristics of Fusarium verticillioides from maize ear rot samples in Gansu Province. Acta Phytopathologica Sinica, 2014, 44(1): 17-25 (in Chinese) [郭成, 魏宏玉, 郭满库, 等. 甘肃玉米穗腐病样品中轮枝镰孢菌的分离鉴定及生物学特性. 植物病理学报, 2014, 44(1): 17-25]
[37]
Li Xinfeng, Wang Jianming, Zhang Zuogang, et al. Isolation and identification of the pathogen Fusarium causing maize ear rot in Shanxi Province. Journal of Shanxi Agricultural University, 2012, 32(3): 218-223 (in Chinese) [李新凤, 王建明, 张作刚, 等. 山西省玉米穗腐病病原镰孢菌的分离与鉴定. 山西农业大学学报(自然科学版), 2012, 32(3): 218-223
[38]
Ma Bingyuan, Long Shusheng, Li Yaling, et al. Identification and pathogenicity of the pathogens of corn ear or kernel rot. Journal of Plant Protection, 1998, 25(4): 300-304 (in Chinese) [马秉元, 龙书生, 李亚玲, 等. 玉米穗粒腐病的病原菌鉴定及致病性测试. 植物保护学报, 1998, 25(4): 300-304]
[39]
Ren Xu, Zhu Zhendong, Li Hongjie, et al. SSR marker development and analysis of genetic diversity of Fusarium verticillioides isolated from maize in China. Scientia Agricultura Sinica,2012,45(1):52-66 (in Chinese) [任旭, 朱振东, 李洪杰, 等. 轮枝镰孢SSR标记开发及在玉米分离群体遗传多样性分析中的应用. 中国农业科学, 2012, 45(1): 52-66]
[40]
Desjardins A E, Proctor R H. Genetic diversity and trichothecene chemotypes of the Fusarium graminearum clade isolated from maize in Nepal and identification of a putative new lineage. Fungal Biology, 2011, 115(1): 38-48
[41]
Boutigny A L, Ward T J, van Coller G J, et al. Analysis of the Fusarium graminearum species complex from wheat, barley and maize in South Africa provides evidence of species-specific differences in host preference. Fungal Genetics and Biology, 2011, 48(9): 914-920
[42]
Scoz L B, Astolfi P, Reartes D S, et al. Trichothecene mycotoxin genotypes of Fusarium graminearum sensu stricto and Fusarium meridionalein wheat from southern Brazil. Plant Pathology, 2008, 58(2): 344-351
[43]
Coleman J J, Wasmann C C, Usami T, et al. Characterization of the gene encoding pisatin demethylase (FoPDA1) in Fusarium oxysporum. Molecular Plant-Microbe Interactions, 2011, 24(12): 1482-1491
[44]
Vos L De, van der Merwe N A, Wingfield M J, et al. Transmission ratio distortion in an interspecific cross between Fusarium circinatum and Fusarium subglutinans.Genes & Genomics, 2013, 35(2): 177-183