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植物几丁质酶及其在抗真菌病害中的应用 被引量:15

Plant chitinases and its application in resistance to fungal disease
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摘要 植物几丁质酶的研究是抗真菌基因工程的热点之一。几丁质酶能够水解真菌细胞壁的主要成分几丁质,在植物抗真菌病害反应中发挥重要的作用。介绍了几丁质酶的基本生物学特性、基因的诱导表达,并对植物几丁质酶基因在抗真菌病害基因工程中的应用进行了阐述。 Studies of plant chitinase is a hot point of genetic engineering of plant resistance to diseases recently.Chitinase can hydrolyse chitin,which is the main components of fungal cell walls,and play an important roles in resistance to fun-gal diseases.In this paper,the biological characteristics and gene expression of chitinase were summarizsed,as well as its application in genetic engineering of resistance to fungal diseases was demonstrated.
作者 孟亮 崔德才
出处 《生物技术通讯》 CAS 2004年第4期420-422,共3页 Letters in Biotechnology
关键词 植物 几丁质酶 真菌病害 生物学特性 基因工程 plant chitinase biological character fungal disease
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参考文献30

  • 1高必达.转几丁质酶基因防植物病害研究:进展、问题与展望[J].生物工程进展,1999,19(2):21-28. 被引量:52
  • 2杜良成,王钧.稻瘟菌诱导的水稻几丁酶、β-1.3-葡聚糖酶活性及分布[J].植物生理学报(0257-4829),1992,18(1):29-36. 被引量:67
  • 3陈三凤,刘德虎,李季伦.植物几丁质酶的结构、基因及其表达[J].生物工程进展,1998,18(2):33-36. 被引量:29
  • 4欧阳石文,谢丙炎,赵开军,冯兰香.转几丁质酶基因研究进展[J].生物技术通报,2001,17(3):28-31. 被引量:8
  • 5Kunze I, Nilsson C, Adler K, et al. Correct targeting of a vacuolar tobacco chitinase in Saccharomyces cerevisiae post-translational modifications are dependent on the host rain[J]. Biochim Biophys Acta, 1998,1395(3):329
  • 6Mauch F. Antifungal hydralases in pea tissue Ⅰ. Purifacation and characterization of two chitinases and two β-1,3-glucanases differentially regulated during development and in response to fungal infection [J]. Plant Physiol,1988,87:325
  • 7Bowles DJ. Defense-related proteins in higher plants[J]. Annu Rev Biochem,1990,59:873
  • 8Jean-Maec N, Liliane S. A short C-terminal sequence is necessary and sufficient for the targeting of chitinase to the plant vacuole [J]. Proc Natl Acad Sci USA, 1991,88:10362
  • 9Lamb CJ.Signals and transduction mechanismsfor activation of plant defenses against microbial attack[J]. Cell, 1989,56:215
  • 10Schlumbaum A, Mauch F, Vogel U. Plant chitinases are potent inhibitors of fungal growth[J]. Nature, 1986,25(324):365

二级参考文献23

  • 1陈三凤,李季伦.几丁质酶研究历史和发展前景[J].微生物学通报,1993,20(3):156-160. 被引量:82
  • 2高必达.植物几丁酶的分子生物学研究进展[J].湖南农业大学学报(自然科学版),1996,22(6):587-602. 被引量:16
  • 3[13]Baek JM, et al. Current Genetics, 1999,35:41~50.15.Logemann JH, et al. Abstr. 4th. Congr proteins Symbiosis, 1994,8:33 ~46.16.Tabaeuzadeh Z, et al. Plant Cell Reprot, 1999,19(2):197~202.17.Agharbaoui Z, et al. Hortacience, 1995, 30(4): 878.18.Raharjo SHT, et al. Plant Cell Rep,1996,15(8): 591~596.19.Tabei Y, et at. Plant Cell Rep, 1998,17(3):159~164.20.Raharjo SHT,et at. Phytopathology, 1992, 82(10): 116721.Punja ZK, et al.Plant Disease,1996,80(9):999~1005.22.Tigelaar H, et al. Phytopathology, 1996,86 (11): 557.23.Gilbert MO, et al. In Vitro Plant, 1996, 32(3):171~78.24.Reisch BI, et al. Am J Enol Vitic, 1996, 47(2): 229~230.25.Grison R, et al. Nat Biotechnol, 1996,14(5):643 ~ 646.26.Bums JA, et al. In Vitro, 1996,32(3)2, 99A Pt.100A27.Gatehouse AMR, et al. Mol Breeding, 1997,3:49~63.28.Gatehouse AMR, et al. Entomaol Exp Appl, 1996,79:295~307.29.Lorito M, et al. Proc Natl Acad Sci USA,1998, 5(14) :7860~ 7865.30.Lin W, et al. Bio/Technology, 1995,13(7):686~691.31.Nishizawa Y, et al. Theortical and Applied Genetics,1999,99(3~4):383 ~ 390.32.Chen WP, et al. Theoretical Applied Genetics, 1998,97(8):33.Bliffeld M, et al. Theoretical and Applied Genetics, 1999,98(6~7):1079 ~ 1086.34.Sautter C, et al. Experientia, 1996,52,Suppl. :A24.35.da Costa Seabra R, et al.In Vitro, 1997, 33(3) Pt.2, 63A36.Bolar JP, et al. Phytopatho.2000,90(1):72~77.37.Marchant R, et al.Mol. Breedinng, 1998,4(3):187~194.38.Terakawa T,et al.Plant Cell Rep.,1997,16(7): 439~443.39. Garcia I,et al. Phytopathology, 1997, 87(6): Suppl,S32.40.Lorito M,et al.Phytopathology, 1997,87(6):Suppl, S59.41.Ding XF,et al.Transgenic Research, 1998,7(2):77~84.42.Hart CM, et al.Mol Gen Genet, 1992 235(23):179~188.43.Broglie KE,et al. Science, 1991, 254:1194~ 1197.44.Zhu Q,et al. Bio/Technol, 1991, 12:807~812.45.Does MP,et al. Plant Scienc,1999,148(2):121~129.46.Jach G,et al. Plant J, 1995, 81:97~109.47.Masoud SA,et al.Plant Mol Biol, 1993,21:655~663.48.Iseli B,et al. Plant Physiol, 1993,103:221~226.
  • 4[1]Chemin LS, et al. Appl Environ Microbiol, 1997,63(3): 834~ 839.
  • 5[2]Sela Buurlage MB. Ph D thesis, 1996,142~157.
  • 6[3]Ikeda S,et al. Nippon Shokubutsu Byori Gakkaiho,1996,62:11~16.(CA1996; 124:308896)
  • 7[4]Wiwat C,et al. Gene,1996,179:119~126.
  • 8[5]Koby S,et al.Gene,1994,147(1):81~83.
  • 9[6]Tantimavanich S, et al.J Gen Appl Microbiol, 1997,43:341 ~ 347.
  • 10[7]Watanalai P, et al. Biotechnil Sustainable Util Resource Trop, 1997,11 :252 ~ 258. (CA 1999; 130: 181532. )

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