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首页> 外文期刊>Soil Science and Plant Nutrition >Comparison of 18S rDNA primers for estimating fungal diversity in agricultural soils using polymerase chain reaction-denaturing gradient gel electrophoresis
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Comparison of 18S rDNA primers for estimating fungal diversity in agricultural soils using polymerase chain reaction-denaturing gradient gel electrophoresis

机译:聚合酶链反应-变性梯度凝胶电泳估算农业土壤真菌多样性的18S rDNA引物的比较

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Direct DNA extraction followed by 18S rDNA polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) is widely used for the analysis of fungal diversity in agricultural soil ecosystems. Various PCR primer sets have been used for fungi, but few reports have compared the properties of the primers. We investigated the properties of four widely used primer sets for fungal 18S rDNA DGGE: (1) NS1/GCFung, (2) FF390/FR1(N)-GC, (3) NS1/FR1(N)-GC (for single PCR) and (4) NS1/EF3 for the first PCR and NS1/FR1(N)-GC for the second PCR (for nested PCR). Using six soil samples from upland and paddy fields in Japan, the primers were compared in terms of PCR amplification efficacy, detection and reproducibility of the DGGE banding profiles, the obtained diversity indices, and the discrimination ability of the fungal communities using DGGE. The efficacy of PCR amplification using primer set 1 and the first PCR of primer set 4 was better than that using primer sets 2 and 3. In DGGE analysis, the PCR products of primer sets 3 and 4 showed the highest diversity indices. However, these primer sets had drawbacks, namely, the presence of non-specific aggregates and poor reproducibility of the DGGE profiles. Although primer sets 1 and 2 yielded shorter sequences of similar length, the PCR products with primer set 1 showed higher diversity indices than those with primer set 2. Multidimensional scaling analysis of the DGGE profiles indicated that primer set 1 could most clearly discriminate each fungal community in the soil samples. Although each primer set had advantages and disadvantages, together our analyses indicated that primer set 1 is the most suitable for detecting fungal diversities in soil using DGGE analysis. Our results are useful for selecting primers according to the aim of a particular study.
机译:直接DNA提取后再进行18S rDNA聚合酶链反应-变性梯度凝胶电泳(PCR-DGGE)被广泛用于分析农业土壤生态系统中的真菌多样性。各种PCR引物组已用于真菌,但很少有报道比较引物的特性。我们研究了真菌18S rDNA DGGE四种广泛使用的引物对的特性:(1)NS1 / GCFung,(2)FF390 / FR1(N)-GC,(3)NS1 / FR1(N)-GC(用于单PCR) )和(4)第一个PCR为NS1 / EF3,第二个PCR为NS1 / FR1(N)-GC(对于嵌套PCR)。使用来自日本旱地和稻田的六个土壤样品,比较了引物在PCR扩增效率,DGGE条带图谱的检测和可重复性,获得的多样性指数以及使用DGGE鉴定真菌群落方面的能力。使用引物组1和引物组4的第一次PCR进行PCR扩增的效果要优于使用引物组2和3的PCR扩增。在DGGE分析中,引物组3和4的PCR产物显示出最高的多样性指数。然而,这些引物组具有缺点,即存在非特异性聚集体和DGGE图谱的再现性差。尽管引物组1和2产生的序列长度较短,但引物组1的PCR产物的多样性指数高于引物组2的多样性。DGGE图谱的多维尺度分析表明,引物组1可以最清楚地区分每个真菌群落。在土壤样品中。尽管每种引物都有优缺点,但我们的分析共同表明,使用DGGE分析,引物组1最适合检测土壤中的真菌多样性。我们的结果对于根据特定研究的目的选择引物很有用。

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