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1.
冬生疫霉(Phytophthora hibernalis)的快速分子检测   总被引:4,自引:1,他引:3  
 由冬生疫霉(Phytophthora hibernalis)引起的疫病是一类植物检疫性病害。为建立该病原菌的快速检测技术,本文比较分析了冬生疫霉和其它疫霉的ITS序列,在此基础上设计了一对检测冬生疫霉的特异性引物751F/752R,该对引物从冬生疫霉中扩增得到一条616bp的条带,而其它19种疫霉和其它真菌菌株均无扩增条带,表明该对引物对冬生疫霉具有特异性。在25μL PCR反应体系中,引物751F/752R检测灵敏度为10龟基因组DNA;而以卵菌ITS区通用引物ITS1/ITS4和751F/752R进行套式PCR扩增,能够检测到10ag的基因组DNA,使检测灵敏度提高了1000倍。该检测体系对灭菌水中游动孢子的检测灵敏度可达0.5个游动孢子。结合快速碱裂解法提取发病组织的DNA,采用该PCR检测技术,在1个工作日内即可从人工接种发病的植物组织中特异性的检测到该病原菌。表明本研究建立的检测方法可用于冬生疫霉的快速分子检测。  相似文献   

2.
根据实验室设计的栎枯萎病菌的特异性引物CF01/CF02和2004年Hayden等设计的栎树疫霉猝死病菌特异性引物Phyto1/Phyto4,组合并优化出了可以同时检测2种病原菌的多重PCR检测体系,经PCR扩增可以分别得到687bp和280bp两条特异性条带,利用菌丝DNA检测,灵敏度为10pg基因组DNA。  相似文献   

3.
红掌胶胞炭疽菌的分子检测   总被引:6,自引:0,他引:6  
 胶胞炭疽菌是引起红掌炭疽病的病原菌。根据GenBank中炭疽属不同种的ITS序列差异,设计了胶胞炭疽菌的特异性引物E1/E2,由此建立的PCR检测体系可以从38个胶胞炭疽菌菌株中扩增得到329 bp的特异性条带,而扩增其它近似或相关菌株时没有相应的特异性条带。该检测体系对胶胞炭疽菌基因组DNA的扩增灵敏度达到10 pg。将引物E1/E2与ITS区通用引物进行套式PCR扩增后,检测灵敏度至少提高10 000倍。当土中胶胞炭疽菌分生孢子达到200个/g土时可检测出。进一步利用此检测体系对携带病原菌的灌溉水、发病组织进行检测,均能快速稳定地检测出病原菌。  相似文献   

4.
李属植物检疫性丁香疫霉和栗黑水疫霉的三重PCR分子检测   总被引:2,自引:2,他引:0  
为建立我国禁止进境的2种检疫性真菌丁香疫霉Phytophthora syringae和栗黑水疫霉P.cambivora的同步分子检测方法,根据疫霉属的18S rRNA、HSP90和Ypt1基因分别设计通用引物、丁香疫霉和栗黑水疫霉的特异性引物,建立三重PCR检测方法,并进行灵敏度测试和模拟带菌试验。结果表明,可同时检测李属植物上丁香疫霉和栗黑水疫霉的特异三重PCR检测体系为:最佳引物浓度组合18SUF/18SUR、PCSF/PCSR和PSSF/PSSR依次为0.2、0.8、1.0μL,最佳退火温度为63℃,最佳退火时间为20 s。该体系扩增丁香疫霉出现884 bp的18S rRNA条带和683 bp的HSP90基因特异条带,扩增栗黑水疫霉出现884 bp的18S rRNA条带和314 bp的Ypt1基因特异条带,对照菌只出现18S rRNA条带;三重PCR反应体系检测灵敏度低于单重PCR;模拟带菌试验可同时扩增出3个片段。表明该三重PCR检测方法能实现丁香疫霉和栗黑水疫霉的同步特异性检测,可有效改进李属类水果及其种苗上检疫性疫霉的快速检测。  相似文献   

5.
非洲菊疫霉根腐病的快速分子诊断   总被引:1,自引:0,他引:1  
 隐地疫霉引起的根腐病是非洲菊生产上的主要病害,为发展该病的快速诊断技术,本文比较了卵菌核糖体基因ITS的序列,在此基础上设计了2条针对隐地疫霉的特异性PCR引物PC1和PC2。供试的23种不同真菌和疫霉菌的46个菌株中,利用这对引物能从隐地疫霉基因组DNA中扩增出一条分子量为620bp的特异性条带,该引物的检测灵敏度可达10pg。采用快速组织碱裂解法提取发病植物组织的DNA,结合PCR检测技术,4h内可从发病的非洲菊根部组织中特异性地检测到隐地疫霉菌。结果表明,建立的非洲菊疫霉根腐病菌分子检测方法可用于该病害的快速分子诊断。  相似文献   

6.
 利用分子标记或对特异位点的碱基序列进行分析是植物病原物分子检测的基础,可以在属和种的水平上对物种进行区分和鉴定。对疫霉属的不同种已有一系列的分子检测方法。SNARE蛋白相关基因YKT6拥有保守的侧翼编码区,适于设计疫霉属特异性的PCR引物,同时其内含子所具有的多态性可开发出几乎所有疫霉种的分子标记。利用疫霉属特异性引物对P-YKT6-F/P-YKT6-R可在31个疫霉种中特异地扩增出一条约600 bp的条带,而在腐霉或其他真菌中不能扩增出该条带。利用大豆疫霉的引物对Ps-YKT6-F/ Ps-YKT6-R和辣椒疫霉的引物对Pc-YKT6-F/Pc-YKT6-R,能分别从大豆疫霉菌株和辣椒疫霉菌株中扩增出一条399 bp和282 bp的条带,常规PCR和巢式PCR的灵敏度分别达到100 pg和10 fg。利用这些引物也可从土壤和病组织中检测到目标病原菌。此外,利用上述特异性引物开发出了大豆疫霉和辣椒疫霉的实时定量PCR检测方法。基于YKT6基因的分子标记和检测方法可用于疫霉种的调查检测和法定定量检测。  相似文献   

7.
利用分子标记或对特异位点的碱基序列进行分析是植物病原物分子检测的基础,可以在属和种的水平上对物种进行区分和鉴定。对疫霉属的不同种已有一系列的分子检测方法。SNARE蛋白相关基因YKT6拥有保守的侧翼编码区,适于设计疫霉属特异性的PCR引物,同时其内含子所具有的多态性可开发出几乎所有疫霉种的分子标记。利用疫霉属特异性引物对P-YKT6-F/P-YKT6-R可在31个疫霉种中特异地扩增出一条约600 bp的条带,而在腐霉或其他真菌中不能扩增出该条带。利用大豆疫霉的引物对Ps-YKT6-F/Ps-YKT6-R和辣椒疫霉的引物对Pc-YKT6-F/Pc-YKT6-R,能分别从大豆疫霉菌株和辣椒疫霉菌株中扩增出一条399 bp和282 bp的条带,常规PCR和巢式PCR的灵敏度分别达到100 pg和10 fg。利用这些引物也可从土壤和病组织中检测到目标病原菌。此外,利用上述特异性引物开发出了大豆疫霉和辣椒疫霉的实时定量PCR检测方法。基于YKT6基因的分子标记和检测方法可用于疫霉种的调查检测和法定定量检测。  相似文献   

8.
棉花黄萎病病原菌大丽轮枝菌的快速分子检测   总被引:5,自引:0,他引:5  
大丽轮枝菌Verticillium dahliae是引起棉花黄萎病的土传病害病原真菌。快速及时地检测出大丽轮枝菌,对棉花黄萎病的早期预警及后期防治具有重要意义。采用聚合酶链式反应(polymerase chain reaction,PCR)检测技术对已报道大丽轮枝菌的检测引物进行验证、筛选和改进,获得1对改进的特异性PCR引物VDS-F/VDS-R。在优化的反应体系与扩增条件下,能特异性地从大丽轮枝菌基因组扩增出l条约520 bp的产物条带,检测灵敏度达到10~(-2)ng/μL;利用该引物可特异性地从含有大丽轮枝菌的土壤及棉花植株组织中检测出病原菌;采用巢氏PCR法对人工病土的检测灵敏度达到了10个孢子/g土。表明本引物的PCR检测体系可用于棉花黄萎病的早期快速检测。  相似文献   

9.
张静  麻文建  朱天辉 《植物保护》2015,41(5):110-115
桉树焦枯病是威胁桉树生长的首要病害,建立准确、有效的桉树焦枯病的PCR快速检测技术是桉树焦枯病前期诊断的必要手段。试验以桉树焦枯病原菌(Calonectria morganii)DNA为模板,分别以ITS和factor 1-alpha序列为靶区域,针对Calonectria属和C.morganii设计了CYS1/CYS2和EF-S-1/EF-A-1两对特异性引物,建立了基于属和种的双重PCR快速检测技术。利用引物CYS1/CYS2可以从全部Calonectria属的供试菌株中扩增出一条351bp大小的条带,单独用特异性引物EF-S-1/EF-A-1进行PCR扩增,仅病原菌扩增出197bp的条带,同时使用2对引物时,病原菌可扩增出两条明亮条带。当体系退火温度为53℃时,DNA灵敏度检测限度达到450fg/μL。野外田间时效检测结果显示,该体系能准确检测出不同发病程度桉树组织上的病原菌,完全符合田间检测的要求。这是关于桉树焦枯病快速检测的首次报道。  相似文献   

10.
根据报道的Fusariumspp.的reductase-like基因序列,设计合成了1对用于Fusarium boothii的特异性检测引物F-Fg/R-Fg。利用该对引物对包括F.boothii在内的35株镰刀菌的基因组DNA进行了扩增。结果表明:该引物特异性强,仅从F.boothii基因组DNA中扩增出300bp左右的特异性条带,其他参照菌株及阴性对照均无任何条带;灵敏度验证结果表明,该检测法可以检测出50pg F.boothii基因组DNA。  相似文献   

11.
A species-specific PCR assay was established for rapid and accurate detection of the oomycete pathogen Phytophthora tentaculata in diseased plant tissues and infected soil.A pair of species-specific primers Pt1/Pt2 were designed on the basis of Ras-related protein(Ypt1) gene sequences of the Phytophthora species.PCR amplification with the Pt primers resulted in a 386 bp product only from isolates of P.tentaculata.The detection threshold with Pt primers was 100 pg of genomic DNA.A nested PCR procedure was developed using Ypt1F/Ypt1R as the first-round amplification primers and Pt1/Pt2 as the second-round primers,which increased the detection sensitivity 100-fold to 1 pg.PCR using these Pt primers can also be used to detect P.tentaculata in naturally infected plant tissues and soil.The PCR-based method developed in this study provides a rapid and sensitive tool for detection of P.tentaculata.  相似文献   

12.
A species-specific PCR assay was developed for rapid and accurate detection of the pathogenic oomycete Phytophthora capsici in diseased plant tissues, soil and artificially infested irrigation water. Based on differences in internal transcribed spacer (ITS) sequences of Phytophthora spp. and other oomycetes, one pair of species-specific primers, PC-1/PC-2, was synthesized. After screening 15 isolates of P. capsici and 77 isolates from the Ascomycota, Basidiomycota, Deuteromycota and Oomycota, the PC-1/PC-2 primers amplified only a single PCR band of c . 560 bp from P. capsici . The detection sensitivity with primers PC-1/PC-2 was 1 pg genomic DNA (equivalent to half the genomic DNA of a single zoospore) per 25- µ L PCR reaction volume; traditional PCR could detect P. capsici in naturally infected plant tissues, diseased field soil and artificially inoculated irrigation water. Using ITS1/ITS4 as the first-round primers and PC-1/PC-2 in the second round, nested PCR procedures were developed, increasing detection sensitivity to 1 fg per 25- µ L reaction volume. The results suggested that the assay detected the pathogen more rapidly and accurately than standard isolation methods. The PCR-based methods developed here could simplify both plant disease diagnosis and pathogen monitoring, as well as guiding plant disease management.  相似文献   

13.
Introns are generally highly polymorphic regions within genes and were proven to be of great interest for discriminating among phylogenetically-close Phytophthora species. Phytophthora ramorum and P. fragariae are considered as quarantine pathogens by the European Union and accurate detection tools are therefore necessary for their monitoring. From introns located in different single copy genes (GPA1, RAS-like, and TRP1), we developed a series of PCR primers specific to P. ramorum and P. fragariae. The specificity of these primers was successfully checked with a wide collection of Phytophthora isolates and a protocol was developed to detect both pathogens directly in infected plant tissues. These genes should be of particular interest for the development of additional species-specific detection tools within the Phytophthora genus.  相似文献   

14.
Early detection provides the best way to prevent introduction and establishment of alien plant pathogens. Amplification of DNA by PCR has revolutionized the detection and monitoring of plant pathogens. Most of those assays rely on the amplification of a fraction of the genome of the targeted species. With the availability of whole genomes for a growing number of fungi and oomycetes it is becoming possible to compare genomes and discover regions that are unique to a target organism. This study has applied this pipeline to develop a set of hierarchical TaqMan real-time PCR detection assays targeting DNA of all four Phytophthora ramorum lineages, and a closely related species, P. lateralis. Nine assays were generated: three targeting DNA of all P. ramorum lineages, one for each lineage of P. ramorum, one for P. lateralis and one targeting DNA of P. ramorum and P. lateralis. These assays were very accurate and sensitive, ranging from 98.7% to 100% detection accuracy of 2–10 gene copies of the targeted taxa from pure cultures or inoculated tissues. This level of sensitivity is within the lowest theoretical limit of detection of DNA. It is expected that these assays will be useful because of their high level of specificity and the ease with which they can be multiplexed because of the inherent flexibility in primer and probe design afforded by their lack of conservation in non-target species.  相似文献   

15.
Phytophthora nicotianae and P. palmivora are the most important soil-borne pathogens of citrus in Florida. These two species were detected and identified in singly and doubly infected plants using polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) of internal transcribed spacer (ITS) regions of ribosomal DNA. The sensitivity of the PCR-RFLP was analyzed and the usefulness of the method evaluated as an alternative or supplement to serological methods and recovery on semi-selective medium. In a semi-nested PCR with universal primers ITS4 and ITS6, the detection limit was 1 fg of fungal DNA, which made it 1000× more sensitive than a single-step PCR with primers ITS4 and DC6. The sensitivity of detection for P. nicotianae was shown to be ten-fold lower than for P. palmivora, limiting its detection with restriction profiles in plants infected by both fungal species. Phytophthora nicotianae was detected with species-specific primers in all samples inoculated with this species despite the absence of species-specific patterns in RFLP. In contrast, the incidence of detection of P. palmivora in the presence of P. nicotianae was considerably lower using plating and morphological detection methods. Due to its high sensitivity, PCR amplification of ribosomal ITS regions is a valuable tool for detecting and identifying Phytophthora spp. in citrus roots, provided a thorough knowledge of reaction conditions for the target species is established prior to the interpretation of data.  相似文献   

16.
A transposon‐like element, A3aPro, with multiple copies in the Phytophthora sojae genome, was identified as a suitable detection target for this devastating soyabean root rot pathogen. The PCR primers TrapF1/TrapR1 were designed based on unique sequences derived from the transposon‐like sequence. A 267‐bp DNA fragment was amplified using this primer pair, the specificity of which was evaluated against 118 isolates of P. sojae, 72 isolates of 25 other Phytophthora spp., isolates of Pythium spp. and isolates of true fungi. In tests with P. sojae genomic DNA, detection sensitivities of 10 pg and 10 fg DNA were achieved in standard PCR (TrapF1/TrapR1) and nested PCR (TrapF1/TrapR1 and TrapF2/TrapR2), respectively. Meanwhile, PCR with TrapF1/TrapR1 primers detected the pathogen at the level of a single oospore, and even one zoospore. These primers also proved to be efficient in detecting pathogens from diseased soyabean tissues, residues and soils. In addition, real‐time quantitative PCR (qPCR) assays coupled with the TrapF1/TrapR1 primers were developed to detect and quantify the pathogen. The results demonstrated that the TrapF1/TrapR1 and TrapF2/TrapR2 primer‐based PCR assay provides a rapid and sensitive tool for the detection of P. sojae in plants and in production fields.  相似文献   

17.
三重PCR检测黄瓜炭疽病菌、菌核病菌和细菌性萎蔫病菌   总被引:1,自引:0,他引:1  
王楠  王伟 《植物病理学报》2014,44(2):129-138
 本试验建立一种可同时检测黄瓜炭疽病(Colletotrichum orbiculare)、黄瓜菌核病(Sclerotinia sclerotiorum(Lib.)de Bary)和黄瓜细菌性萎蔫病(Erwinia tracheiphila)等黄瓜主要病害病原菌的三重PCR检测体系。采用正交试验设计方法, 对三重PCR的影响因素分析研究, 进行退火温度优化, 并以3个引物组、Taq DNA聚合酶、dNTP和Mg2+ 共6因素3水平进行多重PCR体系优化, 成功建立了适合黄瓜主要病害的三重PCR最佳检测体系, 即25 μL的反应体系中含有0.24 μmol·L-1 CY1/CY2;0.72 μmol·L-1 SSFWD/SSREV;0.336 μmol·L-1 ET-P1/ ET-P2;1 U Taq聚合酶;0.15 mmol·L-1 dNTP;1 mmol·L-1 MgCl2, 最适退火温度为63℃。该方法能够快速从田间黄瓜发病植株和根围土壤中将黄瓜炭疽病菌、黄瓜菌核病菌和黄瓜细菌性萎蔫病菌检测出来, 灵敏度可以达到10 pg·μL-1。  相似文献   

18.
A PCR-based 'molecular tool box', based on a region of the ras-related protein gene Ypt 1, was developed for the identification of 15 Phytophthora species that damage forests and trees: P. cactorum , P. cambivora , P. cinnamomi , P. citricola , P. europaea , P. inundata , P. lateralis , P. megasperma , P. nemorosa , P. kernoviae , P. pseudosyringae , P. psychrophila , P. quercina , P. ramorum and P. ilicis . Most primers proved highly specific in blast analyses and in tests with DNA from 72 isolates of 35 species of Phytophthora and nine species representative of Pythium . Exceptions were primers designed for P. cactorum and P. ilicis , which cross-reacted with P. idaei and P. nemorosa , respectively. Amplification with Phytophthora -genus-specific primers before amplification with the various species-specific primers (nested PCR) increased the sensitivity of detection over amplification with species-specific primers only: detection limits ranged between 100 and 10 pg target DNA µ L−1 in the latter, compared with 100 fg µ L−1 in nested PCR. Using existing methods for rapid extraction and purification of DNA, single-round amplification was appropriate for detection of target Phytophthora species in leaves, but nested PCR was required for soil and water samples. The quarantine pathogens P. ramorum and P. kernoviae were detected in a number of naturally infected leaves collected in England and Wales, whereas P. citricola was commonest in water and soil samples from natural Scottish ecosystems.  相似文献   

19.
利用环介导等温扩增(LAMP)技术快速检测辣椒疫霉菌   总被引:1,自引:0,他引:1  
<正>辣椒疫霉(Phytophthora capsici)是一种重要植物病原菌,能造成植株坏死、果实腐烂,严重影响产量[1]。辣椒疫霉侵染植物的早期病症并不明显,易被忽视。因此,对辣椒疫霉早期快速、准确检测显得尤为重要。聚合酶链式反应(PCR)为动植物病原物检测的重要方法,但需要较昂贵的仪器、试剂与耗材,后期的电泳检测也费时费力,致使这一技术很难在生产一线普及推广。Notomi等2000年研发了环介  相似文献   

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