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通过导入几丁质酶基因提高荧光假单胞杆菌P5的生防效果

Improving Biocontrol Effect of Pseudomonas fluorescence P5 on Plant Diseases through Genetic Modification with Chitinase Gene

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【作者】 徐小静张力群朱有勇唐文华

【Author】 XU Xiao-Jing 1 ZHANG Li-Qun 1** ZHU You-Yong 2 TANG Wen-Hua 1(1. Department of Plant Pathology, China Agricultural University, Beijing 100094, China; 2. Key Laboratory for Plant Pathology of Yunnan Province, Yunnan Agricultural University, Kunming 650201, China)

【机构】 中国农业大学植物病理系云南农业大学云南省植物病理重点实验室中国农业大学植物病理系 北京100094北京100094昆明650201北京100094

【摘要】 从质粒pUC1965得到含有几丁质酶基因的6.5 kb DNA片断,将该基因与大肠杆菌-荧光假单胞杆菌穿梭质粒pDSK519连接,获得重组质粒pDSK51965。重组质粒转入荧光假单胞杆菌(Pseudomonasfluorescence)P5,获得工程菌株P.fluorescence P5-1。与野生菌株相比,平板拮抗实验表明, 工程菌株对小麦全蚀病(Gaeumannomycesgraminisvar. tricici)、水稻纹枯病(Rhizoctoniasalani)和棉花立枯病(R.salani )抑菌效果明显提高;盆栽防病实验表明,工程菌株显著地提高了对水稻纹枯病及棉花立枯病的防效,并提高了对小麦全蚀病的防效。

【Abstract】 Pseudomonas fluorescence P5 was isolated in Yunnan Province and proved as a biocontrol agent of plant diseases. The aim of this study was to enhance the biocontrol effect of this strain by introduction of a chitinase gene. A 6.5 kb DNA fragment containing chitinase gene was inserted into vector pDSK519 to construct a new plasmid, pDSK51965, which was introduced into P. fluorescence P5, resulting in a new strain named P5-1. Restriction digestion and chitin plate culture confirmed that P5-1 contained a functional chitinase gene. Compared with wild type P5 in pot experiment, P5-1 had increased effect against rice sheath blight and cotton damping-off caused by Rhizoctonia solani. It also increased the effect on suppression of wheat take-all caused by Gaeumannomyces graminis var. tritici.

【基金】 云南省省院省校合作项目;国家高科技研究与发展计划(863)项目(No. 2003AA241170)。
  • 【文献出处】 农业生物技术学报 ,Journal of Agricultural Biotechnology , 编辑部邮箱 ,2004年04期
  • 【分类号】S476
  • 【被引频次】14
  • 【下载频次】213
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