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稻瘟病菌T-DNA插入方法优化及其突变体分析
引用本文:李宏宇,潘初沂,陈涵,赵长江,鲁国东,王宗华.稻瘟病菌T-DNA插入方法优化及其突变体分析[J].生物工程学报,2003,19(4):419-423.
作者姓名:李宏宇  潘初沂  陈涵  赵长江  鲁国东  王宗华
作者单位:1. 福建农林大学生命科学学院,福州,350002;福建农林大学植物保护学院,福州,350002;中国人民解放军军需大学,长春,130062
2. 福建农林大学植物保护学院,福州,350002
3. 福建农林大学生命科学学院,福州,350002
4. 福建农林大学生命科学学院,福州,350002;福建农林大学植物保护学院,福州,350002
基金项目:国家自然科学基金 (No.30 0 0 0 111),福建省“百千万”人才工程资助~~
摘    要:优化了农杆菌介导转化稻瘟病菌获得T-DNA插入突变的条件,包括选择转化子的潮霉素B用量,抑制农杆菌的抗生素头孢噻肟钠和羧苄青霉素的配比,不同转化阶段培养基的选择等。转化1×106个孢子平均可获得约500个左右的转化子,PCR和TAILPCR检测表明约85%转化子中含T-DNA插入。对1520个突变体进行形态变异观察,发现菌落颜色突变的有15个;随机取58个突变体进行比较,发现产孢量减少的4个,孢子萌发率降低的8个,附着胞形成率降低的9个;还获得对水稻品种C101LAC(Pi-1)和751127(Pi-9)致病的突变体,为进一步克隆相应的无毒基因奠定了基础。

关 键 词:稻瘟病菌,  T-DNA,  插入突变,  功能基因组学
文章编号:1000-3061(2003)04-0419-05
修稿时间:2003年1月28日

Optimization of T-DNA Insertional Mutagenesis and Analysis of Mutants of Magnaporthe grisea
LI Hong-Yu , PAN Chu-Yi CHEN Han ZHAO Chang-Jiang LU Guo-Dong WANG Zong-Hua.Optimization of T-DNA Insertional Mutagenesis and Analysis of Mutants of Magnaporthe grisea[J].Chinese Journal of Biotechnology,2003,19(4):419-423.
Authors:LI Hong-Yu    PAN Chu-Yi CHEN Han ZHAO Chang-Jiang LU Guo-Dong WANG Zong-Hua
Institution:School of Life Sciences, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Abstract:The rice blast fungus Magnaporthe grisea causes one of the most destructive diseases of rice around the world. Significant progresses have been made recently in genomics studies of the fungus, opening new era of the functional genomics which requires to generate a large scale of gene knockout mutants. It has been demonstrated that T-DNA insertional mutagenesis is a powerful tool of functional genomics not only for plants but also for fungi. In this paper, we optimized the conditions for T-DNA insertional mutagenesis of M. grisea using Agrobacterium tumefaciens-mediated transformation (ATMT) approach. We employed the binary vector pBHtl constructed by Dr. S. Kang's laboratory at the Pennsylvania State University, which carries the bacterial hygromycin B phosphotransferase gene (hph) under the control of the Aspergillus nidulans trpC promoter as a selectable marker to transform the conidia of M. grisea. We optimized the conditions for T-DNA insertional mutagenesis including the medium, dosage of hygromycin B, cefotaxime and carbenicillin to select the transformants and inhibit the growth of A. tumefaciens after co-culturing. The dosage to inhibit non-transformants could vary from 200-600microg/mL among different M. grisea isolates so that the optimal dosage of the antibiotics should be decided according to isolates. Rice polished agar medium was found the best selection medium which would facilitate the mutant sporulation and minimize the contamination chance. In average, about 500 transformants could be obtained when transforming 1 x 10(6) spores at the optimum condition, among which 85% had T-DNA insertion detected by polymerase chain reaction (PCR) and thermal asymmetric interlaced polymerase chain reaction (TAIL-PCR). Fifteen out of 1520 transformants showed mutation in colony morphology. Within 58 randomly selected mutants, it was found that there were 4 sporulation-decreased mutants, 8 less germination mutants and 9 appressorium defective mutants. Several virulent mutants to C101LAC(Pi-1)and 75-1-127(Pi-9)were also obtained which would facilitate cloning the corresponding avirulence genes.
Keywords:Maganaporthe grisea  T-DNA  insertional mutagenesis  functional genomics
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