94 resultados para Nested PCR


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利用半巢式LP PCR SSCP技术 ,对中国吉林长白山不同海拔生境下 3种赤杨共生丛枝菌根真菌的多样性进行检测分析 .结果表明 ,该地区赤杨属东北赤杨、西伯利亚赤杨及色赤杨共生丛枝菌根真菌在科乃至种的水平上并未随宿主的变化表现出丰富的多样性 ;3个树种在自身属的水平上与共生的球囊霉科 (Glomaceae)至少 1种AMF ,即G .intraradix ,在种的水平上表现出不相关于宿主海拔高度的某种相互选择性 .

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采集中国吉林长白山不同海拔的4种赤杨根须样本,利用巢式PCR-RFLP方法检测丛枝菌根真菌(AMF)对样品的侵染情况,PCR结果经限制性内切酶分析.结果表明,赤杨根内AMF存在丰富的基因多样性.AMF的侵染有从宿主混乱性向宿主专一性发展的趋势.东北赤杨AMF的宿主专一性水平最强,球囊霉属已成为东北赤杨的优势侵染类群;其余3种赤杨的AMF则出现宿主混乱现象.宿主因素比海拔因素对AMF侵染有更重要的影响.

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以DEV基因组DNA为模板,用简并PCR、改良Targeted gene walking PCR、改良的热不对称交错PCR和Long-PCR,获得了5350bp、11083bp和2905bp3段DEV未知基因片段,DNA序列分析发现包含9个开放阅读框,将这些序列提交GenBank分别获得的登录号为:EF554396~EF554403。结果表明,多种PCR方法联合使用可以高效的实现对鸭肠炎病毒未知基因的克隆。

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利用rep-PCR指纹技术对云南5个地区的尼泊尔桤木根瘤内Frankia菌基因多样性进行研究,实验发现Frankia菌呈现丰富的基因多样性.所有71个样品被分为11种不同的基因类型.除高黎贡山外,不同地域都有某种基因型占优势,显示Frankia菌基因型与地域有紧密关系.所观察的5个地区中,高黎贡山Frankia菌基因型种类最多,多样性指数最高,基因多样性最为丰富.结合高黎贡山地理资料及其它生物多样性相关研究,推测与高黎贡山尼泊尔桤木共生的Frankia可能作为种储备库,为其它地区的寄主植物提供了祖先菌株.图8表1参13

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为调查葡萄植株携带葡萄卷叶病毒(GLRaV)的情况,以带毒和非带毒指示植物“品丽珠”为试验材料提取总RNA,并以此总RNA为模板进行RT-PCR扩增,建立了GLRaV的RT-PCR检测体系,并对GLRaV cDNA序列进行测定,结果成功地检测到了GLRaV。经多次试验证明,该检测结果准确可靠,可以用于GLRaV的检测。

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定量描述微生物群落的组成,在微生物生态学的许多研究领域都是非常重要的。然而由于可培养技术的局限性,定量描述微生物群落成为比较困难的事情。最近包括PCR技术在内的分子生物学技术为人们提供了有力的工具,使对微生物群落的分布、丰度等有了进一步的了解。实时荧光定量PCR技术作为核酸定量检测技术,自从发明以来在微生物生态学研究中逐渐得到了广泛的应用。从微生物生态学角度,综述了实时荧光定量PCR技术的原理、发展、优缺点及其在微生物生态学研究中的应用与研究进展,并探讨了实时荧光定量PCR技术的发展和应用前景。

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血管内皮生长因子 (vascularendothelialgrowthfactor,VEGF)的PCR产物克隆于T载体上 ,经转化JM1 0 9感受态菌株后 ,随机挑取 8个白斑菌落 ,混合后制成混合模板 .采用 3条引物 ,做两轮重叠PCR反应 ,获得了VEGF的突变基因 ,经PCR鉴定 ,酶切鉴定和测序分析表明所得基因为目的产物 .实践证明这种突变方法简单快速 ,为下一步实验大量引入突变奠定了实验基础

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Electrochemistry-based detection methods hold great potential towards development of hand-held nucleic-acid analyses instruments. In this work, we demonstrate the implementation of in situ electrochemical (EC) detection method in a microfluidic flow-through EC-qPCR (FTEC-qPCR) device, where both the amplification of the target nucleic-acid sequence and subsequent EC detection of the PCR amplicon are realized simultaneously at selected PCR cycles in the same device. The FTEC-qPCR device utilizes methylene blue (MB), an electroactive DNA intercalator, for electrochemical signal measurements in the presence of PCR reagent components. Our EC detection method is advantageous, when compared to other existing EC methods for PCR amplicon analysis, since FTEC-qPCR does not require probe-modified electrodes, or asymmetric PCR, or solid-phase PCR. Key technical issues related to surface passivation, electrochemical measurement, PCR inhibition by metal electrode, bubble-free PCR, were investigated. By controlling the concentration of MB and the exposure of PCR mixture to the bare metal electrode, we successfully demonstrated electrochemical measurement of MB in solution-phase, symmetric PCR by amplifying a fragment of lambda phage DNA.

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An improved method of PCR in which the small segment of conchocelis is amplified directly without DNA extraction was used to amplify a RUBISCO intergenic spacer DNA fragment from nine species of red algal genus Porphyra (Bangiales, Rhodophyta), including Porphyra yezoensis (Jiangsu, China), P. haitanensis (Fujian, China), P. oligospermatangia (Qingdao, China), P. katadai (Qingdao, China), P. tenera (Qingdao, China), P. suborboculata (Fujian, China), P. pseudolinearis (Kogendo, Korea), P. linearis (Devon, England), and P. fallax (Seattle, USA). Standard PCR and the method developed here were both conducted using primers specific for the RUBISCO spacer region, after which the two PCR products were sequenced. The sequencing data of the amplicons obtained using both methods were identical, suggesting that the improved PCR method was functional. These findings indicate that the method developed here may be useful for the rapid identification of species of Porphyra in a germplasm bank. In addition, a phylogenetic tree was constructed using the RUBISCO spacer and partial rbcS sequence, and the results were in concordant with possible alternative phylogenies based on traditional morphological taxonomic characteristics, indicating that the RUBISCO spacer is a useful region for phylogenetic studies.

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Penaeidin from Chinese shrimp (Fenneropenaeus chinensis) has proved to be one of the most important antimicrobial peptides in the bodies of animals. The relative quantitative real-time PCR method is developed to study through time, the mRNA expression profile of penaeidin in the muscle and haemocyte tissue of Chinese shrimp infected with vibrio (Vibrio anguillarum) and WSSV (white spot syndrome virus). Research results showed that the same pathogens infection experiments produced similar gene expression profile in different tissues while different expression profiles appeared in the same tissues infected by different exterior pathogens. In vibrio infection experiments, a "U" Re expression profile resulted. Expression levels of penaeidin increased and surpassed the non-stimulated level, indicating that penaeidin from Chinese shrimp has noticeable antimicrobial activities. In WSSV infection experiments, the expression profile appeared as an inverse "U" with the expression of penaeidin gradually decreasing to below baseline level after 24 h. The expression of antimicrobial peptides gene in mRNA level in response to virus infection in shrimp showed that international mechanisms of virus to haemocytes and microbial to haemocytes are completely different. Decline of penaeidins expression levels may be due to haemocytes being destroyed by WSSV or that the virus can inhibit the expression of penaeidins by yet undiscovered modes. The expression profiles of penaeidin in response to exterior pathogen and the difference of expression profiles between vibrio and WSSV infection provided some clues to further understanding the complex innate immune mechanism in shrimp.

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利用PCR-DGGE技术对长江口外低氧区海域和黄海冷水团海域的细菌群落组成进行了分析。 长江口外低氧区海域的细菌群落组成分析结果为:对获得的25条DGGE条带进行了克隆、测序,所得到的序列进行了系统进化分析(细菌16S rRNA基因V3区序列),分别归属于4个细菌类群:变形菌门(Proteobacteria)、拟杆菌门(Bacteroides)、厚壁菌门(Firmicutes)和蓝细菌门(Cyanobacteria)。其中有16条分别与变形细菌亚群的γ和δ-Proteobacteria相似。通过时空分析发现,低氧水体的细菌群落组成与非低氧水体的组成是不同的。低氧水体的优势菌群是拟杆菌门(Bacteroides)中的Flavobacteria。 黄海冷水团海域的细菌群落组成和优势菌群分析结果为:细菌16S rDNA V3区特征片段经DGGE分离、条带切割,共得到24条DGGE条带,克隆、测序后,将所得序列进行系统进化分析,分别归属于2个细菌类群:变形细菌门(Proteobacteria)和拟杆菌门(Bacteroides)。在24条序列中有16条分别与变形细菌亚群的γ和δ-Proteobacteria相似,有5条与拟杆菌门相似。通过时空分析发现,10月份(冷水团存在期),冷水团内部水体的细菌群落组成包括γ-Proteobacteria、δ-Proteobacteria和Bacteroides,而冷水团外部的水体的细菌群落组成包括γ-Proteobacteria和Bacteroides。冷水团内部水层的优势菌群为γ-Proteobacteria。4月份虽然冷水团没有形成,但是所调查的海域海水温度都不高,在7℃-12℃范围内,所以4月份所有站位,不管是底层的还是总的的细菌群落组成都与10月份冷水团内部(海水温度低于10℃)水体的相同,与10月份冷水团外部(海水温度大于19℃)的不同。

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近年来,分子生物学技术与方法被越来越多地应用于有害赤潮研究。其中,单细胞PCR方法是对难以室内培养的有害赤潮藻种进行遗传特征研究的一项重要技术。本实验尝试建立微藻的单细胞PCR方法,并将其应用于鳍藻研究。 应用室内培养的亚历山大藻,研究了微藻的单细胞PCR方法,并对藻细胞的固定和保存方法进行了比较。结果表明,浮游植物研究中常用的甲醛固定方法只能用于短期保存样品(少于5天),而乙醇固定、鲁格氏液固定、或者在-20℃下冷冻保存的样品,在较长的时间后(60天)仍可以得到比较理想的PCR扩增结果。 应用单细胞PCR方法,对青岛近海采集的鳍藻进行了研究,扩增并测定了包括核糖体大亚基(LSU)rDNA的5’端D1-D2区序列,以及5.8S rDNA和ITS区的部分序列信息。通过分析软件对所得到的鳍藻序列信息与基因库中已知的鳍藻序列信息进行了分析与对比。根据ITS和LSU序列信息构建的系统进化树都显示,本文采集的鳍藻藻种与国外报道的圆形鳍藻聚为一支,初步确定采集的鳍藻应为圆形鳍藻,对该藻种形态学特征的观察也支持这一结果。该藻种部分LSU rDNA序列与欧洲同种鳍藻相似度达到99%,与其它等鳍藻遗传距离在18%-20%之间。测定的ITS区序列与同种圆形鳍藻有62个碱基的差异,与LSU rDNA序列相比,ITS序列变异更大。应用LC-MS方法对该鳍藻的进行了DSP毒素分析,结果未检测到OA或DTX1毒素。 这是我国首次应用单细胞PCR方法对鳍藻开展的研究工作,首次报道了我国鳍藻的核糖体部分序列信息。圆形鳍藻在青岛近海海域是初次报道,显示了单细胞PCR方法在鳍藻研究中的重要意义。

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In this study, the intestinal microbiota of kuruma shrimp (Marsupenaeus japonicus) was examined by molecular analysis of the 16S rDNA to identify the dominant intestinal bacteria and to investigate the effects of Bacillus spp. on intestinal microbial diversity. Samples of the intestines of kuruma shrimp fed normal feed and Bacillus spp. amended feed. PCR and denaturing gradient gel electrophoresis (DGGE) analyses were then performed on DNA extracted directly from the guts. Population fingerprints of the predominant organisms were generated by DGGE analysis of the universal V3 16S rDNA amplicons, and distinct bands in the gels were sequenced. The results suggested that the gut of kuruma shrimp was dominated by Vibrio sp. and uncultured gamma proteobacterium. Overall, the results of this study suggest that PCR-DGGE is a possible method of studying the intestinal microbial diversity of shrimp.

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Genetic markers are needed for rapid and reliable identification of oysters. In this study, we developed multiplex genus- and species-specific PCR markers for the identification of oysters from China. We used the mitochondrial cytochrome oxidase I (COI) and nuclear 28S ribosomal RNA genes for marker development. DNA sequences from different species were obtained from GenBank or by direct sequencing. Sequences were aligned, and genus- and species-specific nucleotides were identified. Primers were designed for genus/species-specific amplification to generate fragments of different sizes. A multiplex set of genus- and species-specific primers from the 28S gene was able to separate C. ariakensis and C. hongkongensis from other species and assign oysters to four genera. A set of species-specific COI primers provided positive identification of all five Crassostrea species from China, C. ariakensis, C. hongkongensis, C. angulata, C. gigas, and C. sikamea in a single PCR. The multiplex PCR assays do not require fluorescence-labeling or post-PCR enzyme digestion, providing a simple, fast and reliable method for the identification of oysters from China.