首页> 外文期刊>Applied Microbiology and Biotechnology >Design and application of specific 16S rDNA-targeted primers for assessing endophytic diversity in Dendrobium officinale using nested PCR-DGGE
【24h】

Design and application of specific 16S rDNA-targeted primers for assessing endophytic diversity in Dendrobium officinale using nested PCR-DGGE

机译:使用巢式PCR-DGGE评估铁皮石endo内生多样性的特异性16S rDNA靶向引物的设计和应用

获取原文
获取原文并翻译 | 示例
           

摘要

Novel specific 16S rDNA-targeted primers were successfully designed and applied to the characterization of endophytic diversity in Dendrobium officinale. Using the popular universal bacterial primers 27f/1492r, the fragments of chloroplast and mitochondrion 16S/18S rDNA were amplified from D. officinale. They shared high nucleotide identity with the chloroplast 16S rDNAs (99-100 %) and with the mitochondrion 18S rDNAs (93-100 %) from various plants, respectively, and both shared 73-86 % identities with the bacterial 16S rDNA sequences in GenBank. The current bacterial universal primers, including 27f/1492r, match well with the chloroplast and mitochondrion 16S/18S rDNAs, which accordingly renders these primers not useful for endophytic diversity analysis. Novel 16S rDNA-targeted primers fM1 (5′-CCGCGTGNRBGAHGAAGGYYYT- 3′) and rC5 (5′-TAATCCTGTTTGCTCC CCAC-3′) were designed, which show good specificity compared to the 16S/18S rDNAs of D. officinale, and perfect universality within bacteria except for Cyanobacteria. The primers fM1/rC5, together with 515f-GC/rC5, which overlaps the whole V4 region of 16S rDNA, were subjected to nested polymerase chain reaction denaturing gradient gel electrophoresis (PCR-DGGE) to analyze the diversity of endophytic bacteria in D. officinale from three different sources in China. The results showed diversities in roots and stems of the plants from all three locations. Altogether, 29 bands were identified as bacteria, with the dominant group being Proteobacteria and the dominant genus being Burkholderia, some of which commonly has the function of nitrogen fixation and thus may play potentially important roles in D. officinale. Therefore, the nested PCR-DGGE method based on the novel primers provides a good alternative for investigating the communities and roles of endophytes in D. officinale.
机译:成功设计了新型特异性针对16S rDNA的引物,并将其用于表征铁皮石end的内生多样性。使用流行的通用细菌引物27f / 1492r,从D. officinale扩增叶绿体和线粒体16S / 18S rDNA的片段。他们分别与不同植物的叶绿体16S rDNA(99-100%)和线粒体18S rDNA(93-100%)具有高度核苷酸同一性,并且与GenBank中的细菌16S rDNA序列具有73-86%同一性。 。当前的细菌通用引物,包括27f / 1492r,与叶绿体和线粒体16S / 18S rDNA匹配良好,因此使这些引物无法用于内生多样性分析。设计了新颖的靶向16S rDNA的引物fM1(5'-CCGCGTGNRBGAHGAAGGYYYT-3')和rC5(5'-TAATCCTGTTTGCTCC CCAC-3'),与D.officinale的16S / 18S rDNA相比具有良好的特异性,并且具有完美的通用性除蓝细菌外,在细菌内。将fM1 / rC5引物与515f-GC / rC5(与16S rDNA的整个V4区域重叠)一起进行嵌套聚合酶链反应变性梯度凝胶电泳(PCR-DGGE),以分析D中内生细菌的多样性。来自三种不同来源的药材。结果表明,这三个位置的植物根和茎均具有多样性。总共鉴定出29个条带为细菌,优势群为变形杆菌,优势属为伯克霍尔德菌,其中一些通常具有固氮功能,因此可能在D. officinale中起潜在的重要作用。因此,基于新型引物的巢式PCR-DGGE方法为研究内生石藻中的内生菌群落和作用提供了一个很好的选择。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号