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根据GenBank中已知的条斑紫菜(Porphyra yezoensis)SSU和LSU r RNA基因序列分别设计引物,分别以混合个体和单个个体的基因组DNA以及c DNA为模板进行扩增,测序分析后推测SSU r RNA基因中的内含子转录后加工可能仍被保留,而在LSU r RNA基因上游序列中没有发现内含子。长511bp的内含子位于SSU r RNA基因序列的上游,其插入位点为TCTGGTG-CCAGCAGCC,内含子5′和3′端的核苷酸序列分别为AAC-和-ATGG。该内含子的剪接位点以及保守区P,Q,R,S与I型内含子是不同的。研究发现,在同种紫菜中,不同个体SSU基因中内含子的有无、分布及结构特征是不同的,说明内含子对于分类是不太适合的。但是内含子的长度以及核苷酸序列在种间又具有一定的特异性,可以为红藻种间以及种内亲缘关系较远的亚种和不同地理群的区分和鉴定提供参考。  相似文献   
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Filamentous Bangia, which are distributed extensively throughout the world, have simple and similar morphological characteristics. Scientists can classify these organisms using molecular markers in combination with morphology. We successfully sequenced the complete nuclear ribosomal DNA, approximately 13 kb in length, from a marine Bangia population. We further analyzed the small subunit ribosomal DNA gene (nrSSU) and the internal transcribed spacer (ITS) sequence regions along with nine other marine, and two freshwater Bangia samples from China. Pairwise distances of the nrSSU and 5.8S ribosomal DNA gene sequences show the marine samples grouping together with low divergences (00.003; 0–0.006, respectively) from each other, but high divergences (0.123–0.126; 0.198, respectively) from freshwater samples. An exception is the marine sample collected from Weihai, which shows high divergence from both other marine samples (0.063–0.065; 0.129, respectively) and the freshwater samples (0.097; 0.120, respectively). A maximum likelihood phylogenetic tree based on a combined SSU-ITS dataset with maximum likelihood method shows the samples divided into three clades, with the two marine sample clades containing Bangia spp. from North America, Europe, Asia, and Australia; and one freshwater clade, containing Bangia atropurpurea from North America and China.  相似文献   
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