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首页> 外文期刊>Acta Horticulturae >Microsatellite enrichment by magnetic beads in chrysanthemum.
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Microsatellite enrichment by magnetic beads in chrysanthemum.

机译:菊花中的磁珠富集微卫星。

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Chrysanthemum (Chrysanthemum morifolium), originating from China, is an important ornamental, edible, tea and medicine plant, but now there is still a lack of knowledge about its genetic and molecular backgrounds. The objectives of this study were to set up an efficient protocol to isolate microsatellite and screen SSR (Simple sequence repeat) primers for chrysanthemum DNA fingerprint development. Genomic DNAs of chrysanthemum were cleaved with Mse I, fragments of 250-1500 bp DNA were recovered, then added with adapters, and amplified by PCR later. The 300-1500 bp DNA fractions containing microsatellite sequences were captured by hybridizing the digested genomic DNA fragments with the oligo nucleotide probes (CT)15 or (TGA)8 attached to streptavidin-coated magnetic beads (Dynal) respectively. The enriched DNA fragments were ligated into pGEM-T Easy vector and then transformed into Escherichia coli Top10 competent cells to form two enriched microsatellite sequence libraries. 144 and 118 microsatellite clones were obtained from the two libraries respectively with PCR identification of microsatellite arrays (PIMA), further 91 and 92 microsatellite sequences were obtained respectively by sequencing analysis. Eighty-eight microsatellite sequences can be used to design primers. According to the 88 microsatellite sequences 142 primer pairs were designed. 23 SSR primer pairs with high polymorphism were obtained by primary screening.
机译:菊花(Chrysanthemum morifolium)起源于中国,是一种重要的观赏,食用,茶叶和药用植物,但现在仍缺乏有关其遗传和分子背景的知识。这项研究的目的是建立一个有效的协议,以分离微卫星并筛选菊花DNA指纹图谱的SSR(简单序列重复)引物。用Mse I切割菊花的基因组DNA,回收250-1500 bp DNA的片段,然后加入衔接子,并在以后通过PCR扩增。通过将消化的基因组DNA片段与连接链霉亲和素的寡核苷酸探针(CT) 15 或(TGA) 8 杂交,捕获包含微卫星序列的300-1500 bp DNA片段。涂覆的磁珠(Dynal)。将富集的DNA片段连接到pGEM-T Easy载体中,然后转化到大肠杆菌Top10感受态细胞中,以形成两个富集的微卫星序列文库。通过PCR鉴定微卫星阵列(PIMA),分别从两个文库中获得了144和118个微卫星克隆,通过测序分析分别获得了91和92个微卫星序列。 88个微卫星序列可用于设计引物。根据88个微卫星序列,设计了142对引物。通过初步筛选获得了23个具有高多态性的SSR引物对。

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