帮助 关于我们

返回检索结果

Bio-PCR方法检测葫芦科作物种子携带西瓜嗜酸菌的特异性引物筛选
Screening of specific primers for detection of Acidovorax citrulli from cucurbits seed by Bio-PCR

查看参考文献16篇

阚玉敏 1   云晓敏 2   李玉文 1   李健强 1   罗来鑫 1 *  
文摘 由西瓜嗜酸菌(Acidovorax citrulli)引起的细菌性果斑病是一种毁灭性的种传病害,可为害多种葫芦科作物并造成重大经济损失.该病原菌为检疫性有害生物,种子带菌是田间病害发生的最重要初侵染来源,因此,种子健康检测成为病害综合防控过程中的重要环节.Bio-PCR是当前种子携带细菌检测的常用方法,而特异性引物的选择和使用是检测的关键.本研究使用已报道的7对引物对17株西瓜嗜酸菌、10株嗜酸菌属其它种的菌株和6株其它属的植物病原细菌进行了Bio- PCR检测,筛选出对西瓜嗜酸菌特异性最好的引物为SEQID4m /SEQID5.研究表明:使用该引物对西瓜嗜酸菌MH21纯菌菌悬液的检测限度为102 CFU·mL~(-1);在人工添加菌悬液的模拟带菌西瓜种子中,使用ASCM和EBBA两种半选择性培养基结合引物SEQID4m /SEQID5进行Bio-PCR检测,ASCM对种子中带菌量的检测限度可达到0.01 CFU·g~(-1),EBBA对种子中带菌量的检测限度为0.1 CFU·g~(-1).
其他语种文摘 Bacterial fruit blotch (BFB ),caused by Acidovorax citrulli,is one of the most destructive seed-borne diseases of watermelon and other cucurbits. This seed-borne quarantine disease has been reported in most watermelon and melon producing regions worldwide. Since the infected seeds are the most important primary inoculum source of BFB,seed health testing (SHT)and subsequent elimination of the contaminated seeds is one of the most effective methods to control the disease. Bio-PCR is widely used in SHT for the detection of A. citrulli. As A. citrulli has abundant genetic diversity and many other closely related species,specific and sensitive primers are very important for the success of the seed health testing. To screen the best primers for detection of A. citrulli by Bio-PCR,33 bacterial strains including 17 strains of A. citrulli,10 strains of other Acidovorax species and 6 strains of other genera of plant pathogenic bacteria were chosen to evaluate 7 pairs of primers reported so far. Results indicated that the primer pair SEQID4~m /SEQID5 had the best specificity that could distinguish all the tested strains of A. citrulli from those of other species and genera. The sensitivity of this primer pair was further tested with the Bio-PCR assay of A. citrulli. Results showed that the detection limit of the assay was 102 CFU·mL~(-1) for the pure bacterial culture,while for watermelon seeds the detection limit were 0.01 CFU·g~(-1) and 0.1 CFU·g~(-1) when seed extracts were cultured on semi-selective media ASCM and EBBA,respectively.
来源 植物病理学报 ,2018,48(2):263-270 【核心库】
DOI 10.13926/j.cnki.apps.000130
关键词 西瓜嗜酸菌 ; Bio-PCR ; 引物 ; 特异性 ; 灵敏度
地址

1. 中国农业大学植物病理学系, 种子病害检验与防控北京市重点实验室, 北京, 100193  

2. 北京市种子管理站, 北京, 100088

语种 中文
文献类型 研究性论文
ISSN 0412-0914
学科 植物保护
基金 北京市农作物种子专项资金
文献收藏号 CSCD:6220431

参考文献 共 16 共1页

1.  Zhao W. Rapid on-site detection of Acidovorax avenae subsp. citrulli by gold-labeled DNA strip sensor. Biosensors and Bioelectronics,2011,26(10):4241-4244 CSCD被引 2    
2.  Bahar O. Bacterial fruit blotch: A threat to the cucurbit industry. Israel Journal of Plant Sciences,2010,58(1):19-31 CSCD被引 10    
3.  Burdman S. Acidovorax citrulli: generating basic and applied knowledge to tackle a global threat to the cucurbit industry. Molecular Plant Pathology,2012,13(8):805-815 CSCD被引 20    
4.  Shavit R. The vapB-vapC operon of Acidovorax citrulli functions as a bona-fide toxin-antitoxin module. Frontiers in Microbiology,2016,6(1):1-12 CSCD被引 1    
5.  Tian Y L. Specific detection of Acidovorax avenae subsp. citrulli by PCR (in Chinese). 江苏农业学报,2010,26(3):512-516 CSCD被引 1    
6.  Rane K K. Bacterial fruit blotch of watermelon: association of the pathogen with seed. Plant Disease,1992,76(1):509-512 CSCD被引 22    
7.  Walcott R R. Detection of Acidovorax avenae subsp. citrulli in watermelon seed using immunomagnetic separation and the polymerase chain reaction. Plant Disease,2000,84(4):470-474 CSCD被引 32    
8.  Dutta B. Location of Acidovorax citrulli in infested watermelon seeds is influenced by the pathway of bacterial invasion. Phytopathology,2012,102(5):461-468 CSCD被引 3    
9.  Yan S S. Genetic diversity analysis of Acidovorax citrulli in China. European Journal of Plant Pathology,2013,136(1):171-181 CSCD被引 11    
10.  Hopkins D L. Chemical control of bacteria fruit blotch of watermelon. Proceedings of the Florida State Horticulture Society. 104(1),1991:270-272 CSCD被引 1    
11.  Schaad N W. A combined biological and enzymatic amplification (BIOPCR) technique to detect Pseudomonas syringae pv. phaseolicola in bean seed extracts. Phytopathology,1995,85(2):243-248 CSCD被引 8    
12.  Schaad N W. PCR primers for detection of plant pathogenic species and subspecies of Acidovorax,2000 CSCD被引 1    
13.  Bahar O. New subspeciesspecific polymerase chain reaction-based assay for the detection of Acidovorax avenae subsp. citrulli. Plant Pathology,2008,57(4):754-763 CSCD被引 11    
14.  Zhang X L. Sequence analysis of 16S rDNA and specified primers design of Acidovorax avenae subsp. citrulli (in Chinese). 植物病理学报,2007,37(3):225-231 CSCD被引 1    
15.  Chen X K. Detection the pathogen of bacterial fruit blotch of watermelon by polymerase chain reaction (in Chinese),2010 CSCD被引 1    
16.  Qiu X J. Evaluation of PCR-based protocols for the detection of Acidovorax citrulli (in Chinese),2012 CSCD被引 1    
引证文献 1

1 于海博 辽宁西瓜和甜瓜细菌性果斑病的病原鉴定 沈阳农业大学学报,2019,50(3):345-350
CSCD被引 3

显示所有1篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号