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灰葡萄孢产孢新基因的功能分析 被引量:1

Functional analysis of a novel gene related to conidiation in Botrytis cinerea
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摘要 灰葡萄孢是一种重要的植物病原真菌,其寄主范围广泛,能危害世界上230多种双子叶植物,常给农业生产造成重大的经济损失[1 3]。由灰葡萄孢引起的灰霉病是目前我国温室蔬菜生产中最主要的病害之一,一般造成全年减产20%25%,严重时达到40%以上[4]。因此,研究该病菌的致病机理对该病防治具有重要意义,并且随着灰葡萄孢基因组测序的完成,灰葡萄孢已成为发育生物学、
作者 金城
出处 《微生物学通报》 CAS CSCD 北大核心 2013年第3期532-532,共1页 Microbiology China
关键词 灰葡萄孢 孢子发育 基因 Botrytis cinerea Conidiation Gene
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参考文献6

  • 1Kauffman HF, van der Heide S, de Vries K. Botrytis cinerea: a study of the immunological properties during growth. Incidence of antibodies against B. cinerea in a group of patients with aspergillosis[J]. International Archives of Allergy and Applergy Immunology, 1987, 83(4): 359-365. 被引量:1
  • 2Giraud T, Fortini D, Levis C, et al. RFLP markers show genetic recombination in Botryotinia fuckeliana (Botrytis cinerea) and transposable elements reveal two sympatric species[J]. Molecular Biology and Evolution, 1997, 14(11): 1177-1185. 被引量:1
  • 3Levis C, Giraud T, Dutertre M, et al. Telomeric DNA of Botrytis cinerea: a useful tool for strain identification[J]. FEMS Microbiology Letters, 1997, 157(2): 267-272. 被引量:1
  • 4Williamson B, Tudzynski B, Tudzynski P, et al. Botrytis cinerea: the cause of grey mould disease[J]. Molecular Plant Pathology, 2007, 8(5): 561-580. 被引量:1
  • 5Van Kan JAL. Licensed to kill: the lifestyle of a necrotrophic plant pathogen[J]. Trends in Plant Sciences, 2006, 11(5): 247-253. 被引量:1
  • 6王璇,邢继红,赵斌,韩建民,董金皋.灰葡萄孢分生孢子产生相关基因的克隆及功能分析[J].微生物学通报,2013,40(3):533-543. 被引量:8

二级参考文献28

  • 1Kauffman HF, van der Heide S, de Vries K. Botrytis cinerea: a study of the immunological properties during growth. Incidence of antibodies against B. cinerea in a group of patients with aspergillosis[J]. International Archives of Allergy and Applergy Immunology, 1987, 83(4): 359-365. 被引量:1
  • 2Giraud T, Fortini D, Levis C, et al. RFLP markers show genetic recombination in Botryotinia fuckeliana (Botrytis cinerea) and transposable elements reveal two sympatric species[J]. Molecular Biology and Evolution, 1997, 14(11): 1177-1185. 被引量:1
  • 3Levis C, Giraud T, Dutertre M, et al. Telomeric DNA of Botrytis cinerea: a useful tool for strain identification[J]. FEMS Microbiology Letters, 1997,157(2): 267-272. 被引量:1
  • 4Williamson B, Tudzynski B, Tudzynski P, et al. Botrytis cinerea: the cause of grey mould disease[J]. Molecular Plant Pathology, 2007, 8(5): 561-580. 被引量:1
  • 5Van Kan JAL. Licensed to kill: the lifestyle of a necrotrophic plant pathogen[J]. Trends in Plant Sciences, 2006, 11(5): 247-253. 被引量:1
  • 6Choquer M, Fournier E, Kunz C, et al. Botrytis cinerea virulence factors: new insights into a necrotrophic and polyphageous pathogen[J]. FEMS Microbiology Letters, 2007, 277(1): 1-10. 被引量:1
  • 7Stahmann KP, Pielken P, Schimz KL, et al. Degradation of extracellular β-(1,3) (1,6)-d-glucan by Botrytis cinerea[J]. Applied and Environmental Microbiology, 1992, 58(10): 3347-3354. 被引量:1
  • 8Klimpel A, Gronover CS, Williamson B, et al. The adenylate cyclase (BAC) in Botrytis cinerea is required for full pathogenicity[J]. Molecular Plant Pathology, 2002, 3(6): 439-450. 被引量:1
  • 9Doehlemann G, Berndt P, Hahn M. Different signalling pathways involving a Galpha protein, cAMP and a MAP kinase control germination of Botrytis cinerea conidia[J]. Molecular Microbiology, 2006, 59(3): 821-835. 被引量:1
  • 10Rui O, Hahn M. The Slt2-type MAP kinase Bmp3 of Botrytis cinerea is required for normal saprotrophic growth, conidiation, plant surface sensing and host tissue colonization[J]. Molecular Plant Pathology, 2007, 8(2): 173-184. 被引量:1

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