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1.
为了揭示嫁接提高西瓜抗枯萎病的机制,该研究以嫁接西瓜为材料,采用扫描电镜观察了枯萎病菌侵染下寄主的组织结构变化,荧光定量分析了相关防卫基因的表达,比较了嫁接西瓜对枯萎病菌侵染的抗感反应。结果显示:(1)枯萎病菌侵染后,与自根西瓜相比,嫁接西瓜的根部木质部导管通过快速形成膜状物、侵填体及细胞壁增厚阻塞菌丝入侵;自根西瓜防御反应较嫁接西瓜晚,严重侵染时薄壁细胞降解,导管组织脱落导致维管系统空洞,从而使植株呈现萎蔫症状,该现象在嫁接西瓜中没有发现。(2)枯萎病菌侵染后,嫁接西瓜比自根西瓜具有较高的防卫基因表达水平,其中:嫁接西瓜中,CHI、APX和PPO基因的表达随枯萎病菌侵染时间的延长而升高,而PAL呈现先升高后降低的表达趋势,但仍高于本底表达;自根西瓜中,仅PPO基因在枯萎病菌侵染后表达上调,而其他基因的表达则是先升高后降低,与嫁接西瓜中的PAL基因表达一致。研究表明,嫁接植株一方面通过快速的组织结构响应,另一方面从转录水平提高了相关防卫基因的表达,最终使植株具有抗病性;推测防御基因在嫁接植株与枯萎病菌互作中的强烈诱导响应可能是嫁接植株抗病的分子机制之一。  相似文献   

2.
栎枯萎病菌是造成栎枯萎病的致病菌,也是我国进境植物检疫性病原菌。该病菌目前主要分布于美国,主要侵染栎属和栗属植物,可造成毁灭性危害。国内对此病菌研究较少,不利于对该病菌的认识和控制。本文对国内外关于栎枯萎病菌的研究进行了总结,重点归纳了栎枯萎病菌的分类学、分布、寄主、症状、形态学和生物学特征、检疫鉴定技术、侵染循环及防治措施等方面的信息。截至目前,该病害的防治工作方面仍面临挑战,扎实开展检疫工作仍然是防控该病菌的最重要手段。为应对栎枯萎病可能对我国林业生产造成的威胁,应加强口岸检疫鉴定、监测、处理工作及开展国内外合作。  相似文献   

3.
本文对50个西瓜枯萎病菌株,(其中46个来自河北省石家庄、保定、唐山等12个西瓜种植区的代表菌株)进行了致病性测定、RAMS(Random amplified microsatellites)扩增和致病类型与RAMS类群的相关性分析。根据鉴别寄主对不同菌株的抗感反应,将50个菌株划分为3个不同的生理小种,即0号、1号和2号生理小种,分别占供试菌株的18%、64%和18%;21个RAMS引物对供试菌株扩增出188条带,其中多态性带134条,占总带数的71%。基于RAMS标记聚类分析,50个菌株被划分为3个类群(RAMSGroups,RGs)。RGI包含来自不同地区的41个菌株,以1号生理小种为主(32个),占该类群的78.1%;RGII包括来自保定、唐山和新疆的3个菌株,均为0号生理小种;RGIII包括张家口、石家庄、保定等地的6个2号生理小种菌株。RAMS类群与生理小种之间存在一定相关性,与菌株的地理来源关系不明显。  相似文献   

4.
玉米细菌性枯萎病菌改良Dot-ELISA检测研究   总被引:1,自引:0,他引:1  
通过激光切割技术加工出硝酸纤维素膜小圆片并粘贴在已打孔的塑料胶条上,制成包含8个圆片的NCM条(NCM test strip),进一步在NCM条上建立了玉米细菌性枯萎病菌的Dot-ELISA检测方法.研究发现,在NCM圆片上的Dot-ELISA检测灵敏度与点样量密切相关,采用10 μL/点的加样量比通常的1 μL/点可提高检测灵敏度10-100倍;间接Dot-ELISA的检测灵敏度是双抗夹心dot-ELISA的10倍,该结果进一步在微孔板ELISA的检测中得到证实.玉米细菌性枯萎病菌的改良Dot-ELISA检测是一种较为灵敏、快速、稳定、规范的实验方法,为进一步研究该病菌的微流控芯片斑点免疫检测方法奠定了前期工作基础.  相似文献   

5.
目的:建立一种检测玉米细菌性枯萎病菌和玉米内州萎蔫病菌的方法,为同时检测这2种检疫性细菌提供技术手段。方法:基于靶标序列设计2种检疫性细菌的锁式探针,与靶标菌进行连接消化反应,然后采用通用引物进行滚环扩增,其产物与偶联上对应捕获探针的微球进行杂交,最后通过液相悬浮芯片二重检测。结果:该检测方法能够有效地检测2种检疫性细菌,其检测阈值为103CFU/m L,具有良好的可重复性。结论:建立了一种快速、灵敏的玉米细菌性枯萎病菌和玉米内州萎蔫病菌的二重检测方法。  相似文献   

6.
成功建立了水稻白叶枯菌与水稻细菌性条斑病菌快速检测鉴定的实时荧光PCR方法。根据含铁细胞接受子基因设计两菌的通用引物PSRGF/PSRGR(扩增一个152bpDNA片段)和特异性探针(Baiprobe和Tiaoprobe),并对13种细菌和1种植原体进行实时荧光PCR。结果表明,两个特异性探针能分别特异性检测到目标病原菌产生荧光信号而其它参考菌不产生荧光信号。检测的绝对灵敏度是30.6fg/μL质粒DNA和103CFU/mL的菌悬浮液,相当于1个细菌细胞的基因,比常规PCR电泳检测高约100倍,相对灵敏度为105CFU/mL。整个检测过程只需2h,完全闭管,降低了污染的机会,无需PCR后处理。 用这两个特异性探针分别对自然感染白叶枯菌和条斑菌的叶片DNA提取液和种子浸泡液进行实时荧光PCR,结果均可特异性检测到目标菌的存在并完全可将两种病原细菌区分开来,且只需03g叶片和10g种子。  相似文献   

7.
西瓜枯萎病是一种世界范围的西瓜毁灭性病害,其病原菌为尖孢镰刀菌西瓜专化型(Fusarium oxysporum f.sp.niveum,FON)。研究病原菌生长发育和侵染的机制是解决病害的根本途径。利用荧光蛋白对细胞或细胞器进行标记,是病原菌研究中的重要方法。该研究利用绿色荧光蛋白和红色荧光蛋白对FON的细胞核和过氧化物酶体进行了荧光标记。通过农杆菌介导转化(Agrobacterium tumefaciens-mediated transformation,AtMT),该文将3种不同的荧光定位载体分别导入FON,获得了细胞核红色荧光标记的转化子(潮霉素抗性,含mCherry-H2B融合蛋白),以及过氧化物酶体绿色(潮霉素抗性,含GFP-PTS1融合蛋白)和红色(潮霉素抗性,含DsRED-PTS1融合蛋白)荧光标记的转化子各1种。在标记细胞核的菌株中,菌丝、孢子都可见明亮、圆形的红色荧光点,荧光点与DAPI染色标记的细胞核区域完全重合。在过氧化物酶体标记的菌株中,菌丝、孢子中可见明亮的红色或绿色荧光成小点状分布,符合过氧化物酶体的分布特征,而且在脂类物质诱导的条件下,荧光点的数量明显增加。此外,该文还利用细胞壁荧光染色剂卡氏白对3种荧光蛋白标记菌株进行染色。结果显示,卡氏白染色产生的蓝色荧光与红、绿荧光蛋白的荧光在FON中互不干扰。转化子继代培养和初步分析表明,其表型与野生型无差异,菌株继代后荧光表达稳定、定位明显。该结果为进一步研究FON细胞器动态、生长发育与致病分子机制提供了方法和工具。  相似文献   

8.
利用RAPD、ISSR和AFLP分子标记技术对50个西瓜枯萎病菌株进行了分析。结果表明,21个RAPD引物、21个ISSR引物和21对AFLP引物分别对供试菌株扩增出113、134和389条带,三种分子标记的遗传相似系数比较一致,均可揭示西瓜枯萎病菌的遗传变异特点。三种分子标记产生的聚类分析结果存在一定差异,其中RAPD类群与生理小种和地理来源之间均不存在明显关系;而AFLP和ISSR类群与生理小种之间存在一定相关性,与菌株的地理来源关系不明显.  相似文献   

9.
利用RAPD、ISSR和AFLP分子标记技术对50个西瓜枯萎病菌株进行了分析。结果表明,21个RAPD引物、21个ISSR引物和21对AFLP引物分别对供试菌株扩增出113、134和389条带,三种分子标记的遗传相似系数比较一致,均可揭示西瓜枯萎病菌的遗传变异特点。三种分子标记产生的聚类分析结果存在一定差异,其中RAPD类群与生理小种和地理来源之间均不存在明显关系;而AFLP和ISSR类群与生理小种之间存在一定相关性,与菌株的地理来源关系不明显。  相似文献   

10.
基于RAPD、ISSR和AFLP对西瓜枯萎病菌遗传多样性的评价   总被引:7,自引:0,他引:7  
利用RAPD、ISSR和AFLP分子标记技术对50个西瓜枯萎病菌株进行了分析。结果表明,21个RAPD引物、21个ISSR引物和21对AFLP引物分别对供试菌株扩增出113、134和389条带,三种分子标记的遗传相似系数比较一致,均可揭示西瓜枯萎病菌的遗传变异特点。三种分子标记产生的聚类分析结果存在一定差异,其中RAPD类群与生理小种和地理来源之间均不存在明显关系;而AFLP和ISSR类群与生理小种之间存在一定相关性,与菌株的地理来源关系不明显。  相似文献   

11.
Fusarium wilt caused by Fusarium oxysporum f. sp. niveum (Fon) is the most serious soil-borne disease in the world and has become the main limiting factor of watermelon production. Reliable and quick detection and quantification of Fon are essential in the early stages of infection for control of watermelon Fusarium wilt. Traditional detection and identification tests are laborious and cannot efficiently quantify Fon isolates. In this work, a real-time polymerase chain reaction (PCR) assay has been described to accurately identify and quantify Fon in watermelon plants and soil. The FONRT-18 specific primer set which was designed based on identified specific sequence amplified a specific 172 bp band from Fon and no amplification from the other formae speciales of Fusarium oxysporum tested. The detection limits with primers were 1.26 pg/μl genomic DNA of Fon, 0.2 pg/ng total plant DNA in inoculated plant, and 50 conidia/g soil. The PCR assay could also evaluate the relationships between the disease index and Fon DNA quantity in watermelon plants and soil. The assay was further used to estimate the Fon content in soil after disinfection with CaCN2. The real-time PCR method is rapid, accurate and reliable for monitoring and quantification analysis of Fon in watermelon plants and soil. It can be applied to the study of disease diagnosis, plant-pathogen interactions, and effective management.  相似文献   

12.
从水浮莲(Pistia stratiotes L.)的叶中分离出1株对西瓜枯萎病有明显拮抗作用的内生细菌XJPL-YB-26, 其发酵液上清在280 nm处有最大紫外吸收峰。利用软件Primer 6.0 设计16S rDNA引物并对其基因组DNA进行扩增并测序得到XJPL-YB-26的部分16S rDNA序列, GenBank接收号为EU251191。经Blastn调出与菌株16S rDNA同源的序列, 并用软件MEGA 3.1按Neighbor- Joining方法构建16S rDNA系统发育树。菌株XJPL-YB-26与AB271744处于同一分支, 相似性为99%, 最终鉴定为枯草芽孢杆菌Bacillus subtilis。  相似文献   

13.
从水浮莲(Pistia stratiotes L.)的叶中分离出1株对西瓜枯萎病有明显拮抗作用的内生细菌XJPL-YB-26,其发酵液上清在280 nm处有最大紫外吸收峰.利用软件Primer 6.0设计16S rDNA引物并对其基因组DNA进行扩增并测序得到XJPL-YB-26的部分16S rDNA序列.GenBank接收号为EU251191.经 Blastn调出与菌株16S rDNA同源的序列,并用软件MEGA 3.1按Neighbor-Joining方法构建16S rDNA系统发育树.菌株XJPL-YB-26与AB271744处于同一分支,相似性为99%,最终鉴定为枯草芽孢杆菌Bacillus subtilis.  相似文献   

14.
ABSTRACT. Plant–microbe interactions are often accompanied by allelochemicals, such as syringic acid, released from the host plant. To explore the role of phenolic acids released from crop host plants in response to pathogen invasion, we examined the allelopathic effect of an artificially applied syringic acid on Fusarium oxysporum f. sp. niveum . We demonstrated that the growth and the conidial germination rate of F. oxysporum f. sp. niveum were stimulated at lower concentrations of syringic acid, though inhibited by higher dosage compared with control. The yield of fungus mycotoxin was increased from 60.9% to 561.5%. We conclude that syringic acid can be considered as a allelochemical inducer, stimulating the relative virulence factors of invading pathogens.  相似文献   

15.
Root exudates have a key role in communication between plants and microbes in the rhizosphere. Fusarium wilt of watermelon, caused by Fusarium oxysporum f. sp. niveum (Fusarium oxysporum), drastically reduces watermelon yields in continuous cultivation systems, but it can be significantly alleviated using watermelon/aerobic rice intercropping system as shown by the research carried out in this laboratory. It is important to evaluate the interaction between root exudates from the two crops and the pathogen and thus to clarify the mechanism of disease suppressiveness in the intercropping system. The effects of phenolic acids, sugars and free amino acids in root exudates from watermelon (REW) and rice (RER) on the growth of Fusarium oxysporum were studied. The results obtained are listed as follows: (1) REW significantly increased spore germination and sporulation, whereas RER had inhibitory effects on those two parameters. (2) HPLC analysis showed that salicylic acid, p-hydroxybenzoic acid and phthalic acid were identified in exudates from both plants, but p-coumaric acid was only detected in rice and ferulic acid only in watermelon. Moreover, of the total rice exudates a high proportion (37.9 %) of p-coumaric acid was detected and the total amount of phenolic acids was 1.4-fold as high as that in watermelon. (3) Considerable differences in the components and contents of both sugars and amino acids were found between REW and RER exudates. (4) Exogenously applied alanine (Ala) increased spore germination and sporulation. In contrast, addition of exogenous p-coumaric acid reduced spore germination and sporulation, relative to controls. It was concluded that the rice root exudates had anti-fungal properties while that from watermelon promoted pathogen growth. This discovery provided a scientific basis for practicing watermelon/aerobic rice intercropping to control Fusarium wilt in watermelon.  相似文献   

16.
应用PCR-RFLP和巢式PCR检测黄瓜尖镰孢菌   总被引:1,自引:0,他引:1  
以3株黄瓜尖镰孢菌(Fusarium oxysporum f.sp.cucumarinum)、23株镰孢菌属(Fusariumspp.)真菌和分离自土壤的20株真菌、6株细菌和7株放线菌为材料,采用化学裂解法提取总DNA,进行PCR-RFLP和巢式PCR检测,试验证明PCR-RFLP程序不能完全区分Fusarium属内不同种,而巢式PCR对黄瓜尖镰孢菌具有特异性.运用优化的PCR-RFLP和巢式PCR检测程序对染病黄瓜组织进行了检测,结果表明,两种方法均可在接种发病早期(未显症时)检测出黄瓜枯萎病菌,PCR-RFLP在感病品种接种后3d即可检测到病原菌,而巢式PCR在接种后5d才能检测到病原菌.  相似文献   

17.
We developed two species-specific PCR assays for rapid and accurate detection of the pathogenic fungi Fusarium oxysporum f. sp. niveum and Mycosphaerella melonis in diseased plant tissues and soil. Based on differences in internal transcribed spacer (ITS) sequences of Fusarium spp. and Mycosphaerella spp., two pairs of species-specific primers, Fn-1/Fn-2 and Mn-1/Mn-2, were synthesized. After screening 24 isolates of F. oxysporum f. sp. niveum, 22 isolates of M. melonis, and 72 isolates from the Ascomycota, Basidiomycota, Deuteromycota, and Oomycota, the Fn-1/Fn-2 primers amplified only a single PCR band of approximately 320 bp from F. oxysporum f. sp.niveum, and the Mn-1/Mn-2 primers yielded a PCR product of approximately 420 bp from M. melonis. The detection sensitivity with primers Fn-1/Fn-2 and Mn-1/Mn-2 was 1fg of genomic DNA. Using ITS1/ITS4 as the first-round primers, combined with either Fn-1/Fn-2 and or Mn-1/Mn-2, two nested PCR procedures were developed, and the detection sensitivity increased 1000-fold to 1ag. The detection sensitivity for the soil pathogens was 100-microconidia/g soil. A duplex PCR method, combining primers Fn-1/Fn-2 and Mn-1/Mn-2, was used to detect F. oxysporum f. sp. niveum and M. melonis in plant tissues infected by the pathogens. Real-time fluorescent quantitative PCR assays were developed to detect and monitor the pathogens directly in soil samples. The PCR-based methods developed here could simplify both plant disease diagnosis and pathogen monitoring as well as guide plant disease management.  相似文献   

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