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首页> 外文期刊>Plant Systematics and Evolution >Improvement of fluorescent chromosome in situ PCR and its application in the phylogeny of the genus Fagopyrum Mill. using nuclear genes of chloroplast origin (cpDNA)
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Improvement of fluorescent chromosome in situ PCR and its application in the phylogeny of the genus Fagopyrum Mill. using nuclear genes of chloroplast origin (cpDNA)

机译:荧光染色体原位PCR的改进及其在苦荞麦属系统发育中的应用。使用叶绿体起源的核基因(cpDNA)

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Fluorescent chromosome in situ PCR method plays an important role in many fields of biology and can be used for determining physical maps, chromosomal structures and phylogeny. In the present study, improvements are made to fluorescent chromosome in situ PCR protocol by incorporating the use of SYBR Green I. All the complex procedures in this method have been removed, including the fixing of PCR products, the linkage step of antigen and antibody and the necessary detection the fluorescence signal. This new method is useful for the types of studies mentioned above. As an example, this improved technique was performed using primers for the 16S rDNA, 4.5S rDNA and psbA chloroplast DNA (cpDNA) genes to investigate the phylogeny of buckwheat, the introgression of cpDNA genes into nuclear genome and the chromosomal location of these genes for the construction of a physical map. The results showed that the 16S rDNA, 4.5S rDNA and psbA cpDNA genetic markers were found with different abundances and physical distributions in the nuclear genomes of the seven buckwheat species (10 accessions in total) under investigation. These data were used to confirm the phylogeny of these buckwheat species by constructing a phylogenetic tree.
机译:荧光染色体原位PCR方法在生物学的许多领域中都起着重要作用,可用于确定物理图谱,染色体结构和系统发育。在本研究中,通过结合使用SYBR Green I对荧光染色体原位PCR方案进行了改进。该方法中的所有复杂过程都已删除,包括PCR产物的固定,抗原与抗体的连接步骤以及必要的检测荧光信号。这种新方法对于上面提到的研究类型很有用。例如,使用16S rDNA,4.5S rDNA和psbA叶绿体DNA(cpDNA)基因的引物进行这项改进的技术,以研究荞麦的系统发生,cpDNA基因进入核基因组的渗入以及这些基因在染色体上的染色体位置实物图的构建。结果表明,在所调查的七个荞麦物种(总共10个种)的核基因组中,发现了16S rDNA,4.5S rDNA和psbA cpDNA遗传标记,其丰度和物理分布不同。这些数据用于通过构建系统发育树来确认这些荞麦物种的系统发育。

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