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1.
 由腐皮镰刀菌(Fusarium solani)引起的生姜枯萎病是一种毁灭性真菌土传病害,其病原菌的快速高效检测,有助于枯萎病的早期诊断及预警。通过回接试验、形态学观测以及系统进化树分析,对湖北生姜产区分离的菌株进行鉴定,获得生姜腐皮镰刀菌(F. solani)。基于镰刀菌属通用引物TEF-1αF/TEF-1αR基因序列,以腐皮镰刀菌基因组DNA为模板进行扩增测序,根据序列信息设计筛选出一对腐皮镰刀菌特异性引物,构建了基于普通PCR的快速高效分子检测方法,并对接种过病菌的生姜植株和土壤进行检测验证。通过病原菌的菌落形态、孢子显微结构观察、真菌通用引物ITS1/ITS4鉴定和致病性测定,确定引起生姜枯萎病的病原菌为腐皮镰刀菌(F. solani)。用设计的特异性引物F8/R8进行PCR,特异扩增获得约381 bp的目标条带,检测灵敏度为454 pg·μL-1,利用该引物对带菌生姜幼苗和土壤进行检测验证,证实可从发病生姜幼苗和带菌土壤中特异性检测到腐皮镰刀菌(F. solani)。本研究明确了引起湖北生姜枯萎病的病原菌为腐皮镰刀菌(F. solani),并建立了PCR快速检测方法。该检测方法简便、灵敏、高效,可用于生姜枯萎病的早期诊断与预防。  相似文献   

2.
一种改进的尖孢镰刀菌的实时荧光定量PCR检测方法   总被引:1,自引:0,他引:1  
为实现荧光定量PCR对土壤病原真菌数量更为高效、灵敏的检测,本研究将液体培养的孢子悬浮液和长年耕作的水稻土制作成孢子浓度为4×10~1~4×10~6 spore/g的带菌土,采用MoBio PowerSoil@DNA Isolation Kit提取模拟带菌土壤总DNA,引入常规PCR预扩增包含qPCR目标序列的1 446bp片段,以预PCR产物为模板进行qPCR,构建荧光定量PCR标准曲线。研究结果表明:以试剂盒提取的带菌土壤总DNA为模板绘制的qPCR标准曲线相关系数r为0.985,检测下限为4×10~3 spore/g土;引入预PCR后,qPCR标准曲线相关系数r为0.974,检测下限为4×10~2 spore/g土,较未引入时提高了10倍,结合不同土壤病原真菌的特异性引物,该检测方法可为土壤病原真菌的有效定量检测提供技术支撑。  相似文献   

3.
实时荧光定量PCR法检测十字花科细菌性黑斑病菌   总被引:2,自引:2,他引:0  
为有效防控我国的检疫性有害生物十字花科细菌性黑斑病菌Pseudomonas syringae pv.maculicola在国内的传播与蔓延,通过设计1对特异性引物3539,利用132株靶标和非靶标菌为模板进行PCR扩增,建立了实时荧光定量PCR法,并进行了模拟种子带菌试验。结果显示,引物3539为只针对十字花科细菌性黑斑病菌扩增出的特异性产物;在模拟种子带菌检测中,常规PCR对菌悬液的检测限为10~5CFU/m L,实时荧光定量PCR的检测限为10~3CFU/m L,其中10~8CFU/m L菌液的Ct值最低,为22.90,10~3CFU/m L菌液的Ct值最高,为35.73,且不同浓度菌液间的Ct值均有显著差异;不同带菌率模拟种子的检测结果表明,常规PCR和实时荧光定量PCR能检测到的带菌率分别为0.5%和0.1%。研究表明,实时荧光定量PCR法不仅可用于病种的检测,也可用于病害的早期诊断。  相似文献   

4.
 建立了土壤中芸薹根肿菌荧光定量PCR(qPCR)快速检测及风险预警体系。确定了芸薹根肿菌qPCR检测的特异性引物PbF/PbR,对根肿菌质粒DNA的检测灵敏度为1.612×10-6 ng·μL-1,比普通PCR高出1 000倍;对土壤和基质中芸薹根肿菌孢子的最低检测下限均为10 个·g-1,而土壤和基质带菌的发病阈值分别为100和1 000 个·g-1,高于该浓度时根肿病发生风险大。本研究建立的芸薹根肿菌qPCR技术体系检测下限远低于发病阈值,可以快速、准确、定量地检测出采自四川绵阳、湖北恩施、江苏无锡、山东青岛、辽宁沈阳、山西运城、内蒙古巴彦淖尔和宁夏固原等8个地区的27份田间土壤中芸薹根肿菌的数量,实现对十字花科根肿病的监测预警,为制定产前病害防控方案提供依据。  相似文献   

5.
实时荧光定量环介导等温扩增方法检测马铃薯黑胫病菌   总被引:2,自引:2,他引:0  
正由马铃薯黑胫果胶杆菌Pectobacterium atrosepticum引起的生产上日趋严重的马铃薯黑胫病,其初侵染来源是带菌种薯(Mattinen et al.,2008),种薯带菌数量直接决定田间病害发生的严重程度。因此,播种前明确种薯中马铃薯黑胫果胶杆菌的含量至关重要。目前国内外应用实时荧光定量PCR方法对病原菌进行定量检测已有很多(娄兵海等,2014),但还未见利用实时荧光定量环介导等温扩增  相似文献   

6.
柑桔溃疡病菌实时荧光定量PCR检测与应用   总被引:1,自引:1,他引:1       下载免费PDF全文
根据地毯草黄单孢Xac306菌株(Xanthomonas axonopodis pv.citri,Xac306)已知全基因组中独有蛋白基因序列设计的特异性引物对和探针,建立并优化SYBR Green I(SGI)荧光染料和Taq-Man探针实时荧光定量PCR检测体系,用于柑桔溃疡病早期诊断鉴定。结果表明,建立的两种定量PCR体系均能特异地检出Xac的细胞和其基因组DNA,而对其它测试的植物病原菌和柑桔表面的腐生黄单孢菌都不能检出。SGI法和TaqMan探针法对Xac细菌悬浮液的检测灵敏度均可达到1~5个细菌/反应,对Xac靶标片段DNA的检测灵敏度可达1fg/μL。两种定量PCR检测方法比常规PCR灵敏度高2~3个数量级。对田间采集的328个柑桔显症、疑似症状和无症带菌材料富集培养样品进行了实际检测,结果表明,实时荧光PCR适合柑桔无症带菌样品的早期检测。  相似文献   

7.
通过克隆马铃薯环腐病菌和晚疫病菌转录间隔区(ITS)序列,并对测序结果进行同源性比较,选取差异位点分别设计了两对引物P.IN1/P.IN2和C.IN1/C.IN2,并检测了引物的特异性及方法的灵敏度。引物P.IN1/P.IN2可扩增出1条363bp马铃薯晚疫病菌的特异性条带,在DNA水平上其灵敏度达18fg/μL;引物C.IN1/C.IN2可扩增出1条218bp马铃薯环腐病菌的特异性条带,在细菌数上检测灵敏度为104 cfu/mL。混合这两对引物构建双重PCR反应体系,能从马铃薯环腐病菌和晚疫病菌的混合DNA及感染这两种菌的马铃薯植株中同时扩增到363bp和218bp的特异片段。实现了同时对马铃薯晚疫病菌和环腐病菌的快速可靠检测。  相似文献   

8.
番茄细菌性溃疡病菌的实时荧光PCR检测   总被引:10,自引:0,他引:10  
 由Clavibacter michiganensis subsp.michiganensis(Cmm)引起的番茄细菌性溃疡病是一种严重危害番茄生产的种传细菌性病害。根据ITS序列多态性设计引物及TaqMan探针进行实时荧光PCR检测的结果表明,这组引物一探针能检测出所有供试的Cmm菌,对照菌均未检测到荧光信号。用接种但未显示症状的番茄苗叶片及人工处理的带菌种子提取的核酸作为模板,均能检测到病菌,其检测灵敏度比常规PCR高约100倍。实验中不需病原菌的分离培养及PCR的后续处理。该方法快速、简便、安全、准确,适用于出入境检验检疫及种子、种苗健康检测领域。  相似文献   

9.
双重PCR检测马铃薯晚疫病菌和青枯病菌方法的建立及应用   总被引:3,自引:0,他引:3  
 利用真菌通用引物ITS1和ITS4扩增马铃薯晚疫病菌转录间隔区并进行序列测定,通过序列比较,设计了1对马铃薯晚疫病菌的特异引物INF1/INF2,并对15种不同真菌、细菌和7种疫霉属和腐霉属卵菌基因组DNA进行PCR扩增,结果只有不同来源的马铃薯晚疫病菌株可获得324 bp的特异带。将引物INF1/INF2与卵菌通用引物进行巢式PCR扩增后,其检测灵敏度在DNA水平上可达30 fg。运用设计的引物与马铃薯青枯病菌特异引物结合建立了双重PCR体系,能从马铃薯晚疫病菌和马铃薯青枯病菌总基因组DNA以及人工接种和自然发病的马铃薯植株中分别或同时扩增到324 bp和281 bp的特异片段。实现了同时对马铃薯晚疫病菌和马铃薯青枯病菌的快速可靠检测。  相似文献   

10.
马铃薯青枯病的PCR检测   总被引:4,自引:0,他引:4       下载免费PDF全文
以我国11个省(市、区)和6种不同寄主植物的43个青枯菌Ralstonia solanacearum代表性菌株和4个国外青枯菌菌株为试材,采用15条随机引物进行了RAPD分析,筛选到了1条青枯菌所特有的DNA片段,根据其碱基序列,设计了特异PCR引物,对不同青枯菌DNA进行扩增,并以马铃薯的其它病原细菌为对照,只有青枯菌可获得773bp的DNA扩增产物.经过对PCR反应模板制备程序的简化和优化,利用本研究设计的特异引物,直接对马铃薯病块茎的DNA粗提液进行扩增,获得了773bp片段.此技术可望用于马铃薯种薯青枯病菌的检测,大大缩短检测时间,提高检测效率.  相似文献   

11.
云南省马铃薯疮痂病致病链霉菌种类组成研究   总被引:4,自引:0,他引:4  
 为明确云南省马铃薯疮痂病病原菌(Streptomyces spp.)的种类及其生物学特征,自2013年从云南省13个马铃薯主产区采集疮痂病病样,共分离到200株链霉菌,通过温室盆栽致病性试验筛选出67株致病菌。通过形态学、生理生化指标、致病性测定及16S rDNA序列分析对获得的菌株进行鉴定。结果显示,引起云南地区马铃薯疮痂病的病原为10种链霉菌,分别为S. caviscabiesS. anulatusS. scabiesS. turgidiscabiesS. acidiscabiesS. europaeiscabieiS. luridiscabieiS. enissocaesilisS. griseusS. aureofaciens。其中S. enissocaesilisS. anulatus为优势种群,S. caviscabiesS. anulatusS. luridiscabiei为国内首次报道的病原菌。因此,认为云南省马铃薯疮痂病菌种类复杂多样。  相似文献   

12.
The effects of soil inoculum level and three environmental factors (soil type, soil moisture regime and temperature) on the incidence and severity of powdery scab caused by Spongospora subterranea were investigated in potato plants grown under controlled environmental conditions. Symptoms of powdery scab on tubers were assessed visually, after which DNA was extracted from tuber peelings and quantified in a real-time polymerase chain reaction assay using primers and a TaqMan® probe specific to S. subterranea to establish tuber infection levels. Soil inoculum concentration of S. subterranea did not significantly affect the incidence and severity of either tuber infection or powdery scab symptoms at maturity. No significant differences in disease incidence and severity were found between sandy, loamy and clay soils, although the two lighter soils yielded more powdery scab than clay soil. Constant dampness of the soil resulted in significantly more disease than a fluctuating moisture regime. Infection and disease levels were high at all three temperatures tested (9, 12 and 17°C), but symptoms were most severe at 12°C. The percentage of plants with infected tubers did not increase after tuber initiation, although the amount of S. subterranea DNA detected in tubers and the severity of powdery scab symptoms increased in mature plants. Latent tuber infections were found to be common, especially under conditions suboptimal for disease development. This new information may be important for the prevention of powdery scab in potato-growing areas around the world.  相似文献   

13.
A time-saving and cost-effective polymerase chain reaction (PCR)-based method was developed for species-specific detection of the scab pathogens ( Streptomyces scabies and S. turgidiscabies ) prevalent in potato ( Solanum tuberosum ) in northern Scandinavia. Species specificity of primers was verified using a collection of previously characterized Streptomyces strains isolated from potato scab lesions in Finland and Sweden. A total of 1245 scab lesions was tested from potato cvs Matilda and Sabina grown in the field in two geographic regions of Finland in 2000 and 2001. Freshly harvested or stored potato tubers were incubated at room temperature (18–21°C) under humid conditions for a few days. Bacterial growth was collected from scab lesions for DNA isolation and PCR. The two scab pathogens were detected in the same potato fields, tubers and scab lesions. The relative incidence of S. scabies was high in freshly harvested tubers but was much lower than that of S. turgidiscabies following storage. Both pathogens were seed-transmitted in Matilda and Sabina after 24 weeks of storage at 4°C.  相似文献   

14.
An environmentally friendly measure to control potato powdery scab caused by a protozoan pathogen Spongospora subterranea f.sp. subterranea (Sss) was developed by focusing on antagonistic microorganisms that were considered compatible with potato root. Five hundred and eight soil fungi, isolated from potato root cultivated in soil suspensions from four potato fields in Hokkaido, were screened for suppressiveness of root infection by Sss in a hydroponic culture system and for powdery scab severity in greenhouse and field experiments. Antagonistic isolate Im6-50, identified as Aspergillus versicolor, was selected as a potent biological control agent. In a 3-year field test, A. versicolor Im6-50 suppressed powdery scab with a protection value of 54–70 (100?=?complete protection) when applied directly on seed tubers compared with a protection value of 77–93 by the synthetic fungicide fluazinam. A. versicolor Im6-50 was detected from the surface of daughter tubers and from the soil in which the inoculated seed tubers were cultivated by PCR using species-specific primers. The establishment of A. versicolor Im6-50 on the stolon of inoculated potato plants and in the rhizosphere is considered to contribute to the mechanism for disease suppression.  相似文献   

15.
 为了准确检测病残体内茄匍柄霉菌(Stemphylium solani)DNA含量在土壤内的动态变化,本研究根据三磷酸甘油醛脱氢酶(GAPDH)基因序列,设计并筛选特异性引物Stem-g7F/Stem-g7R,能从靶标基因组 DNA 中特异性扩增出大小为 150 bp 的目的片段。建立的Stemphylium solani实时荧光定量PCR(Real-time quantitative PCR, qRT-PCR)检测体系的灵敏度比常规 PCR 高 1 000 倍,且特异性良好。标准曲线循环阈值与模板浓度呈良好的线性关系,相关系数为 0.992。利用所建立的qRT-PCR方法对病残体进行检测发现,病残体DNA初始拷贝数为3.69 × 109 拷贝数/g,经过温度27℃、80%湿度下处理30 d病残体DNA含量下降至1.21 × 106 拷贝数/g,而在温度27℃、20%湿度下含量为1.29 × 1010 拷贝数/g。因此,建立的S. solani的qRT-PCR检测体系具有特异性强、灵敏度高的特点,可以快速准确地定量检测病残体 S. solani 的含量,为番茄匍柄霉叶斑病的早期预防和流行监测提供有效的技术手段。  相似文献   

16.
Colletotrichum coccodes is the causal agent of the potato blemish disease black dot. Two PCR primer sets were designed to sequences of the ribosomal internal transcribed spacer (ITS1 and ITS2) regions for use in a nested PCR. The genus-specific outer primers (Cc1F1/Cc2R1) were designed to regions common to Colletotrichum spp., and the species-specific nested primers (Cc1NF1/Cc2NR1) were designed to sequences unique to C . coccodes . The primer sets amplified single products of 447 bp (Cc1F1/Cc2R1) and 349 bp (Cc1NF1/Cc2NR1) with DNA extracted from 33 European and North American isolates of C. coccodes. The specificity of primers Cc1NF1/Cc2NR1 was confirmed by the absence of amplified product with DNA of other species representing the six phylogenetic groups of the genus Colletotrichum and 46 other eukaryotic and prokaryotic plant pathogenic species. A rapid procedure for the direct extraction of DNA from soil and potato tubers was used to verify the PCR assay for detecting C. coccodes in environmental samples. The limit of sensitivity of PCR for the specific detection of C. coccodes when inoculum was added to soils was 3·0 spores per g, or the equivalent of 0·06 microsclerotia per g soil, the lowest level of inoculum tested. Colletotrichum coccodes was also detected by PCR in naturally infested soil and from both potato peel and peel extract from infected and apparently healthy tubers. Specific primers and a TaqMan fluorogenic probe were designed to perform quantitative real-time (TaqMan) PCR to obtain the same levels of sensitivity for detection of C. coccodes in soil and tubers during a first-round PCR as with conventional nested PCR and gel electrophoresis. This rapid and quantitative PCR diagnostic assay allows an accurate estimation of tuber and soil contamination by C. coccodes .  相似文献   

17.
正近年来,随着气候条件、耕作制度的变化和水肥条件的改善,小麦纹枯病在我国危害日趋严重,现已成为长江中下游麦区和黄淮麦区主要病害,每年造成严重经济损失[1]。小麦纹枯病常与小麦根茎部病害如根腐病、茎基腐病混合发生,发病早期症状相似,影响病害的早期诊断和防治。目前,小麦纹枯病菌快速检测方法主要基于常规PCR和Real-time PCR [3,4]。常规PCR和Real-time PCR具备检测准确、灵敏度高的优点,但这两种检测技术对仪器设备和  相似文献   

18.
Rhizoctonia cerealis is a soil-borne phytopathogenic fungus that causes wheat sharp eyespot, resulting in serious economic losses. In this study, the recombinase polymerase amplification combined with lateral-flow dipstick technology (Rc-RPA-LFD) was developed for the rapid and sensitivity detection of R. cerealis. The Rc-RPA-LFD assay could be completed at isothermal temperature of 38°C within 30 min without PCR thermal cyclers. The RPA primers and probe designed based on ITS region, showed high specificity to R. cerealis. The detection limit of Rc-RPA-LFD assay was 1 pg·μL-1 fungal genomic DNA, showed an equal sensitivity to that of conventional PCR. In addition, the Rc-RPA-LFD assay could detect R. cerealis from field soil samples, showing no significant differences compared to conventional PCR assay. The simplicity, rapidly and practicability all indicated that Rc-RPA-LFD assay will be a promising molecular diagnosis for the accurate and rapid detection of R. cerealis.  相似文献   

19.
Qu X  Wanner LA  Christ BJ 《Phytopathology》2008,98(4):405-412
The phytotoxin thaxtomin, produced by plant pathogenic Streptomyces species, is the only known pathogenicity determinant for common scab diseases of potato and other root and tuber crops. Genes encoding thaxtomin synthetase (txtAB) are found on a pathogenicity island characteristic of genetically diverse plant pathogenic Streptomyces species. In this study, an SYBR Green quantitative real-time polymerase chain reaction (PCR) assay using primers designed to anneal to the txtAB operon of Streptomyces was developed to quantify pathogenic bacterial populations in potatoes and soil. The real-time PCR assay was specific for pathogenic Streptomyces strains. The detection limit of the assay was 10 fg of the target DNA, or one genome equivalent. Cycle threshold (Ct) values were linearly correlated with the concentration of the target DNA (correlation coefficient R(2) = 0.99) and were not affected by the presence of plant DNA extracts, indicating the usefulness of the assay for quantitative analyses of the pathogenic bacteria in plant tissues. The amount of pathogenic Streptomyces DNA in total DNA extracts from 1 g asymptomatic and symptomatic tubers was quantified using the assay and ranged from 10(1) to 10(6) pg. A standard curve was established to quantify pathogenic Streptomyces in soil. Using the standard curve, numbers of pathogenic Streptomyces colony forming units were extrapolated to range from 10(3) to 10(6) per gram of soil from potato fields where common scab was found. This real-time PCR assay using primers designed from the txtAB operon allows rapid, accurate, and cost effective quantification of pathogenic Streptomyces strains in potato tubers and in soil.  相似文献   

20.
为探明马铃薯疮痂病菌在植株和土壤中的分布情况及种群动态变化特点,利用常规PCR和定量PCR(qPCR)技术对不同环境的马铃薯疮痂病株和田间植株不同生育期的土壤样品进行病原菌的定性定量检测.结果 表明,病田、温室盆栽和微型薯苗床中马铃薯疮痂病重度发病植株的根、匍匐茎、块茎、地上茎、叶片等组织样品均可检测到184 bp的疮...  相似文献   

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