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81.
核桃叶片基因组DNA的4种提取方法比较   总被引:2,自引:0,他引:2  
以核桃叶片为材料,比较了高盐低pH法、SDS法、改良CTAB法和适合酚类、多糖类物质较多的植物DNA提取法提取基因组DNA的效果;通过琼脂糖凝胶电泳、紫外分光光度计、RAPD、ISSR等方法进行PCR扩增和用EcoRI、PstI内切酶酶切对所提取的DNA样品进行检测,比较所得DNA的产量和质量.结果表明,4种提取方法从叶片中得到的DNA产量和质量有所不同,其中酚类、多糖类物质较多的植物DNA提取法产量最高,纯度适中.4种方法提取的DNA对以后的PCR和酶切均没有影响.  相似文献   
82.
"自杀性"DNA疫苗研究进展   总被引:1,自引:0,他引:1  
DNA疫苗作为第三代全新的疫苗,具有传统疫苗和其他基因工程苗不可比拟的优点.但由于其安全性方面存在着一些尚待解决的问题,使得实际应用受到限制."自杀性"DNA疫苗是基于常规的DNA疫苗和自主复制型RNA疫苗而发展起来的一种新型疫苗.由于其制备原理和过程与常规DNA疫苗相类似,所以它具备常规DNA疫苗在制作、运输储存以及免疫等各方面的优点.同时由于它以甲病毒复制子为基础能诱导转染细胞自主凋亡,故比常规DNA疫苗更为安全有效.文章针对"自杀性"DNA疫苗载体的构建、作用机理、优点以及国内外研究情况作一介绍.  相似文献   
83.
一种土壤微生物总DNA的高效提取方法   总被引:21,自引:0,他引:21  
黄婷婷  曹慧  王兴祥  崔中利 《土壤》2004,36(6):662-666
获得高浓度、大片段、多样性程度高的土壤微生物总DNA 是研究土壤微生物群落结构的分子生态学基础。本文采用间接法(菌体细胞回收法)提取红壤地区两种土壤类型的土壤微生物总DNA,定量计算其回收率,并与直接法(细胞原位裂解法)比较了提取效率和纯度。结果表明:红壤地区2种土壤每克干土的总DNA提取量,间接法约为0.34和0.53礸/g干土,直接法约为13.62和24.32礸/g干土;间接法的提取效率低于直接法,但所得DNA片段较大,且Sau 3AⅠ 酶切和16 S rDNA通用引物PCR扩增结果显示,间接法比直接法更能有效地去除土壤中的某些抑制剂,所得总DNA的纯度更高,有利于后续操作。  相似文献   
84.
本文报道了提取野生向日葵菊芋DNA的方法。  相似文献   
85.
对BacillusmucilaginosusYNUCC000116SrDNA的1481bp片段与GenBank中最相似的16个分类单位进行了比较。UPGMA,NJ,ME和MP方法构建的系统发育树显示B.mucilaginosusYNUCC0001与B.mucilaginosusHSCC1605T、B.mucilaginosus1480D及Paenibacillussp.NBT形成一个单系群分支。在50L全自动发酵罐中30℃发酵52h后,菌株YNUCC0001产生的胞外生物多聚絮凝剂(EBF)达到最大产率(粘度:3420C.P.)。在pH4.0、用量为0.25mlL-1的条件下,这种EBF对高岭土悬浊液的絮凝活性最大(99.8%);121℃高压灭菌60min后絮凝活性维持在98.6%。Hg2+,Ca2+,Mg2+,K+,Zn2+对其絮凝活性有促进作用,而Fe3+、Al3+、EDTA和Cu2+则有强烈抑制。  相似文献   
86.
猪瘟DNA疫苗的临床免疫实验   总被引:1,自引:0,他引:1  
在前期研究工作筛选出2种DNA疫苗质粒的基础上,采用3种免疫策略(DNA疫苗单独免疫法、DNA疫苗初免蛋白免疫加强的prime-boost方法以及沙门氏菌(Salmonella)载体介导法),于某规模化猪场对猪瘟病毒(CSFV)的DNA免疫效果进行了临床应用研究。随机选择未经猪瘟疫苗免疫的断奶仔猪60头,分6组进行免疫接种,检测免疫猪抗体产生情况并对各组免疫猪进行攻毒试验。免疫猪血清抗体ELISA检测结果表明,pcDSW组、pIRE2IL2组、pcDSW E2protein组和pIRE2IL2 E2protein组均产生了较高的抗体水平,而沙门氏菌介导的2种DNA疫苗质粒诱导的抗体水平不显著。攻毒试验结果表明,pcDSW和pIRE2IL2单独免疫组或prime-boost组能够抵抗致死剂量的CSFV石门强毒攻击,保护率87.50% ̄90.00%。其中pcDSW效果好于pIRE2IL2。而沙门氏菌介导的DNA疫苗组不能产生有效保护。不同接种途径的免疫效果比较结果表明,颈部肌肉注射免疫后产生的抗体水平较后肢胫前肌注射免疫产生的抗体水平高。  相似文献   
87.
The present investigation was carried out on fifteen germplasm lines of Pisum sativum L. were used for characterization using Randomly Amplified Polymorphic DNA (RAPD) markers. While 12 random primers were taken, out of them 11 primers gave amplification. These primers gave a total of 133 bands out of which 106 were polymorphic. Genetic similarities of the RAPD profiles were estimated by using Jaccard’s coefficient with NTSYSpc 2.0 software. The similarity index values ranged from 0.263 to 0.793 indicating the presence of enormous genetic diversity at molecular level. A dendrogram generated by cluster analysis divided fifteen fieldpea genotypes into two Groups A and B. Major Group A have five genotypes and major Group B have nine genotypes.  相似文献   
88.
The adsorption and binding of plasmid p34S DNA on four different colloidal fractions from a Brown soil and clay minerals in the presence of various Ca2+ concentrations, the ability of bound DNA to transform competent cells of CaCl2-treated Escherichia coli, and the resistance of bound DNA to degradation by DNase I were studied. DNA adsorption on soil colloids and clay minerals was promoted in the presence of Ca2+. Kaolinite exhibited the highest adsorption affinity for DNA among the examined soil colloids and clay minerals. In comparison with organo-mineral complexes (organic clays) and fine clays (<0.2 μm), DNA was tightly adsorbed by H2O2-treated clays (inorganic clays) and coarse clays (0.2-2 μm). The transformation efficiency of bound DNA increased with increasing concentrations of Ca2+ at which soil colloid or clay mineral-DNA complexes were formed. DNA bound by kaolinite showed the lowest transformation efficiency, and especially no transformants were observed with kaolinite-DNA complex prepared at 5-100 mM Ca2+. Compared to organic clays and fine clays, DNA bound on inorganic clays and coarse clays showed a lower capacity to transform E. coli at different Ca2+ concentrations. The presence of soil colloids and minerals provided protection to DNA against degradation by DNase I. Montmorillonite, organic clays and fine clays showed stronger protective effects for DNA than inorganic clays and coarse clays. The protection mechanisms as well as the differences in transforming efficiency of plasmid DNA molecules bound on various soil colloidal particles are discussed. The information obtained in this study is of fundamental significance for the understanding of the horizontal dissemination of recombinant DNA and the fate of extracellular DNA in soil environments.  相似文献   
89.
Dried soil samples from many sources have been stored in archives world-wide over the years, but there has been little research on their value for studying microbial populations. Samples collected since 1843 from the Broadbalk field experiment on crop nutrition at Rothamsted have been used to document changes in the structure and composition of soils as agricultural practices evolve, also offering an invaluable record of environmental changes from the pre- to post-industrial era in the UK. To date, the microbial communities of these soils have not been studied, in part due to the well-documented drop in bacterial culturability in dried soils. However, modern molecular methods based on PCR amplification of DNA extracted directly from soil do not require bacterial cells to be viable or intact and may allow investigations into the legacy of bacteria that were present at the time of sample collection.

In a preliminary study, to establish if dried soils can provide a historical record of bacterial communities, samples from the Broadbalk soil archive dating back to 1868 were investigated and plots treated with either farmyard manure (FYM) or inorganic fertilizer (NPK) were compared. As anticipated, the processes of air-drying and milling greatly reduced bacterial viability whilst DNA yields declined less and may be preserved by desiccation. A higher proportion of culturable bacteria survived the archiving process in the FYM soil, possibly protected by the increased soil organic matter. The majority of surviving bacteria were firmicutes, whether collected in 2003 or in 1914, but a wide range of genera was detected in DNA extracted from the samples using PCR and DGGE of 16S rRNA genes. Analysis of DGGE band profiles indicated that the two plots maintained divergent populations. Sequence analysis of bands excised from DGGE gels, from a sample collected in 1914, revealed DNA from - and β-proteobacteria as well as firmicutes. PCR using primers specific for ammonia oxidizing bacteria showed similar band profiles across the two treatments in recently collected samples, however older samples from the NPK plot showed greater divergence. Primers specific for the genus Pseudomonas were designed and used in real-time quantitative PCR to indicate that archived soil collected in 1868 contained 10-fold less pseudomonad DNA than fresh soil, representing around 105 genomes g−1 soil. Prior to milling, dramatically less pseudomonad DNA was extracted from recently collected air-dried soil from the NPK compared to the FYM plot; otherwise, the two plots followed similar trends. Overall bacterial abundance, diversity and survival during the archiving process differed in the two soils, possibly due to differences in clay and soil organic matter content. Nevertheless, the results demonstrate that air-dried soils can protect microbial DNA for more than 150 years and offer an invaluable resource for future research.  相似文献   

90.
鱼糜制品中基因组DNA提取方法的比较   总被引:2,自引:0,他引:2  
将分别采用普通酚-氯仿抽提法和试剂盒(柱吸附法)提取DNA的两种方法加以比较,以确定最适提取鱼糜制品DNA的方法.将鱼肉和鱼糜制品作为原料,用两种方法提取基因组DNA,利用分光光度计测定其A260与A280的吸光值,计算比率估计核酸的纯度,并利用琼脂糖凝胶电泳观察DNA片段在凝胶中的位置;并用线粒体16S rRNA基因PCR扩增产物鉴定所提取的基因组DNA.  相似文献   
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