首页> 外文期刊>IAWA Journal >Molecular identification of Fitzroya cupressoides, Sequoia sempervirens, and Thuja plicata wood using taxon-specific rDNA-ITS primers.
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Molecular identification of Fitzroya cupressoides, Sequoia sempervirens, and Thuja plicata wood using taxon-specific rDNA-ITS primers.

机译:使用类群特异性rDNA-ITS引物对菲茨罗亚(Fitzroya cupressoides),红杉(Sequoia sempervirens)和 Thuja plicata 木材进行分子鉴定。

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摘要

The nuclear ribosomal DNA internal transcribed spacer (rDNA-ITS) region was PCR amplified and sequenced from the wood of three specimens of Fitzroya cupressoides, nine specimens of Sequoia sempervirens, and ten specimens of Thuja plicata. The full lengths of the ITS regions are 1110 bp for F. cupressoides, 1096 bp for S. sempervirens, and 1138 bp for T. plicata, and thus in the range of 975 bp to 1125 bp which is reported for members of the Cupressaceae. Length variation of ITS regions is due to differences in the length of the spacer region ITS1. Intraspecific variations of the sequences of rDNA-ITS regions were one bp in F. cupressoides, and 18 bp in S. sempervirens and T. plicata. Based on the interspecific sequence divergence of the ITS region, taxon-specific primers were designed for the detection of F. cupressoides, S. sempervirens and T. plicata. The primer sequences were selected from the highly divergent ITS 1 spacer. The specificity of the primers was checked by lengths and sequence of the amplicons, and the primers detected the target organism, solely, across 40 conifer species. Our data establish the molecular basis for DNA-based wood identification in these species.
机译:PCR扩增并从3份Fitzroya cupressoides的标本,9份红杉的标本和10份木材中对核糖体DNA内部转录间隔区(rDNA-ITS)进行PCR扩增和测序。 金钟柏的标本。对于iF,ITS区域的全长为1110bp。 cupressoides , S为1096 bp。 sempervirens 和 T的1138 bp。 ,因此在柏科的成员中报道的范围为975 bp至1125 bp。 ITS区域的长度变化是由于间隔物区域ITS1的长度不同而引起的。 rDNA-ITS区域的序列的种内变异在iF中为1bp。 cupressoides ,在 S中为18 bp。 sempervirens 和 T。 plicata 。基于ITS区域的种间序列差异,设计了分类群特异性引物用于检测iF。 cupressoides , S。 sempervirens 和 T。 plicata 。引物序列选自高度不同的ITS 1间隔区。通过扩增子的长度和序列检查引物的特异性,并且引物仅在40个针叶树种中检测到目标生物。我们的数据为这些物种中基于DNA的木材鉴定奠定了分子基础。

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