[1] Simmons E G. Helmonthosporium allii as type of a new genus[J]. Mycologia, 1971, 63: 380-386. [2] Braun K, Romero J, Liddell C, et al. Production of swainsonine by fungal endophytes of locoweed[J]. Mycological Research, 2003, 107(8): 980-988. [3] Wang Q, Nagao H, Li Y L, et al. Embellisia oxytropis, a new species isolated from Oxytropis kansuensis in China[J]. Mycotaxon, 2006, 95: 255-260. [4] McLain-Romero J, Creamer R, Zepeda H, et al. The toxicosis of Embellisia fungi from locoweed (Oxytropis lambertii) is similar to locoweed toxicosis in rats[J]. Journal of Animal Science, 2004, 82: 2169-2174. [5] Roopra H K, Kandanearatchi A, Maidment S L, et al. Evaluation of the effects of swainsonine, captopril, tangeretin and nobiletin on the biological behaviour of brain tumour cells in vitro[J]. Neuropathology and Applied Neurobiology, 2001, 27: 29-39. [6] Li Y Z, Nan Z B. A new species of Embellisia causing a disease of standing milk-vetch in China[J]. Mycologia, 2007, 99: 406-411. [7] Li Y Z, Nan Z B. Symptoms and etiology of new disease, yellow stunt and root rot of standing milk-vetch in Northern China[J]. Mycopathologia, 2007, 163: 327-334. [8] Pryor B M, Bigelow D M. Molecular characterization of Embellisia and Nimbya species and their relationship to Alternaria, Ulocladium, and Stemphylium[J]. Mycologia, 2003, 95(6): 1141-1154. [9] Simmons E G. An aggregation of Embellisia species[J]. Mycotaxon, 1983, 17: 216-241. [10] David J C, Coles K, Fisher J, et al. A new species of Embellisia from soil with levels of heavy metals[J]. Mycoscience, 2000, 41: 533-537. [11] Carroll F E, Carroll G C. The fine structure of conidium initiation in Ulocladium atrum[J]. Canadian Journal of Botany-revue, 1974, 52: 443-446. [12] Cole G T, Samson R A. Patterns of Development in Conidial Fungi[M]. London: Pitman, 1979. [13] 李彦忠. 沙打旺黄矮根腐病(Embellisia astragali Li and Nan)的研究[D]. 兰州大学博士学位论文, 2007. [14] Simmons E G. Alternaria themes and variations (22-26)[J]. Mycotaxon, 1986, 15(1): 287-308. [15] Simmons E G. Embellisia and related teleomorphs[J]. Mycotaxon, 1990, 38: 251-265. [16] Simmons E G. Novel dematiaceous hyphomycetes[J]. Studies in Mycology, 2004, 50: 109-118. [17] de Hoog G S, Seigle-Murandi F, Steiman R, et al. A new species of Embellisia from the North Sea[J]. Antonie van Leeuwenhoek, 1985, 51: 409-413. [18] de Hoog G S, Muller P J. A new species of Embellisia, associated with skin disease of hyacinths[J]. Netherlands Journal of Plant Pathology, 1973, 79: 85-93. [19] Bradner J R, Sidhu R K, Yee B, et al. A new microfungal isolate, Embellisia sp., associated with the Antarctic moss Bryum argenteum[J]. Polar Biology, 2000, 23: 730-732. [20] 陈伟群, 张天宇. 中国一新记录属——埃里砖格孢[J]. 真菌学报, 2004, 15(2): 152-153. [21] 曹以勤, 文玲, 陆家云. 链格孢(Alternaria Nees ex Fr.)的2个新记录种[J]. 南京农业大学学报, 1990, 13(2): 55-57. [22] 陈利军, 孙广宇, 张荣, 等. 中国油菜内生真菌一新记录种——垣孢埃里砖格孢[J]. 西北农业学报, 2004, 13(4): 61-62. [23] 时东方, 周勇, 陈小姝, 等. 棘豆蠕孢菌的固体优化培养研究[J]. 安徽农学通报, 2007, 13(11): 42-44. [24] Garon D, Krivobok S, Seigle-Murandi F. Fungal degradation of fluorine[J]. Chemosphere, 2000, 40: 91-97. [25] 赵国柱, 张天宇, 曹爱新, 等. 基于rDNA ITS序列分析Alternaria与形似属的关系及A. leucanthemi的分类地位[J]. 菌物学报, 2006, 25(2): 184-191. [26] Hong S G, Cramer R A, Lawrence C B, et al. Alt a1 allergen homologs from Alternaria and related taxa: Analysis of phylogenetic content and secondary structure[J]. Fungal Genetics and Biology, 2005, 42: 119-129. [27] Belfon R, Creamer R. RAPD-PCR analysis of fungal endophytes of locoweed[J]. Phytopathology, 2003, 93(6 Supplement): 7. [28] David J C. IMI descriptions of fungi and bacteria No. 1078 (Embellisia allii) and No. 1079 (Embellisia hyacinthi)[J]. Mycopathologia, 1991, 116: 59-62. [29] Lee H B, Jin C, Yu S H. First report of bulb canker of garlic caused by Embellisia allii in Korea[J]. Mycobiology, 2002, 30(4): 240-243. [30] 商文静, 胡小平. 大蒜蒜头黑腐病病菌鉴定[J]. 西北农林科技大学学报, 2002, 30(6): 144-146. [31] 盛红梅, 贾迎春, 陈秀蓉. 大蒜病害调查病原鉴定及其防治[J]. 甘肃农业大学学报, 2003, 38(2): 194-199. [32] Li Y Z, Nan Z B, Hou F J. The roles of an Embellisia sp. causing yellow stunt and root rot of Astragalus adsurgens and other fungi in the decline of legume pastures in northern China[J]. Australasia Plant Pathology, 2007, 36: 397-402. [33] 杨小平. 动物棘豆属疯草中毒的临床症状[J]. 武汉科技学院学报, 2002, 15(3): 25-28. [34] 李建科. 中国疯草研究现状与展望[J]. 中国农业科学, 2003, 36(9): 1091-1099. [35] 童德文, 曹光荣, 耿果霞, 等. 薄层扫描测定5种疯草中苦马豆素含量[J]. 中国兽医学报, 2003, 23(2): 183-184. [36] 郭治安, 张小辉, 赵景婵, 等. 离子抑制色谱法测定棘豆属植物提取物中的苦马豆素[J]. 色谱, 2006, 24(6): 656. [37] Roalson E H, Allred K W. Atlas of New Mexico Astragalus and Oxytropis[J]. Agricultural Experiment Station Research Report, College of Agriculture and Home Economics, New Mexico State University, 1997, 715: 1-27. [38] 吴达, 梁冰, 冯志刚, 等.苦马豆素研究进展[J]. 中国兽医杂志, 2003, 23(2): 183-184. [39] Masae S. Utilizatin of biological interactions and matter cycling in agriculture[J].草业学报, 2004, 13(4): 117-123. [40] 任继周, 侯扶江. 草业科学框架纲要[J].草业学报, 2004, 13(4): 1-6. [41] 南志标, 李春杰. 中国牧草真菌病害名录[J]. 草业科学, 1994, 11(增刊): 1-160. [42] 南志标. 建立中国的牧草病害可持续管理体系[J]. 草业学报, 2000, 9(2): 1-9. [43] 尹亚丽, 南志标, 李春杰, 等. 沙打旺病害研究进展[J]. 草业学报, 2007, 16(6): 129-135. [44] 吴金霞, 陈彦龙, 何进刚. 生物技术在牧草品质改良中的应用[J]. 草业学报, 2007, 16(1): 1-9. [45] 赵有益, 龙瑞军, 林慧龙, 等. 草地生态系统安全及其评价研究[J]. 草业学报, 2008, 17(2): 143-150. [46] 马松江. 青海海西草原有毒植物及其经济价值[J]. 草业科学, 2008, 25(5): 98-103. [47] 南志标, 李春杰. 禾草-内生真菌共生体在草地农业系统中的作用[J]. 生态学报, 2004, 24: 606-616. [48] 黄东益, 黄小龙. 禾本科牧草内生真菌的研究与应用[J].草业学报, 2008, 17(3): 128-136. [49] 郑尚珍, 孙丽萍, 沈序维. 沙打旺中两种三萜化合物[J]. 高等学校化学学报, 1992, 13(8): 1090-1091. [50] 王建华. 沙打旺饲喂畜禽的安全性探讨[J]. 畜牧兽医杂志, 1989, 4: 37-40. [51] 张桂国, 董树亭, 杨维仁, 等. 沙打旺饲喂小尾寒羊试验[J]. 草业科学, 2008, 25(3): 74-77. [52] Davis A M. Selenium uptake in Astragalus and Lupinus species[J]. Agronomy Journal, 1986, 78: 727-729. [53] 童德文, 曹光荣, 赵献军. 豆类丝核菌中生物碱的提取及苦马豆素含量测定[J]. 西北农业学报, 2001, 10(3): 1-3. [54] 王雨梅, 韩国栋, 赵萌莉. 疯草-内生真菌共生体的研究与展望[J]. 中国草地学报, 2007, 29(4): 99-103 |