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首页> 外文期刊>Genetika >Phylogenetic analysis of some Citrus L. (Rutaceae) taxa in Turkey based on chloroplast (cPDNA) trnL intron and trnL-F DNA sequences
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Phylogenetic analysis of some Citrus L. (Rutaceae) taxa in Turkey based on chloroplast (cPDNA) trnL intron and trnL-F DNA sequences

机译:基于叶绿体(cPDNA)trnL内含子和trnL-F DNA序列的土耳其某些柑橘类科的系统发育分析

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In this study, phylogenetic analysis of some Turkish Citrus species was conducted based on chloroplast DNA (trnL intron and trnL-F) sequences. Citrus taxa were plotted on a phylogenetic tree where Zanthoxylum ailanthoides was used as the outgroup. The sequences for trnL intron and trnL-F regions of the outgroup were retrieved from NCBI GenBank. All plant samples were collected from different locations during the inflorescence and vegetation periods, and brought to the laboratory. Genomic DNA was isolated from healthy green leaves using DNAeasy Plant Mini Kit. trnL intron region was amplified using universal primers trnc and trnd, while for the trnL-F region trne and trnf were used. Later obtained DNA sequences were edited using BioEdit 7.0.4.1 and FinchTV. Sequencing data were aligned via ClustalW program and analyzed using MEGA 6.0 software. Maximum Likelihood and bootstrap trees were constructed in order to identify the relationships among Citrus taxa. The trnL intron sequences ranged from 554 to 581 nucleotides. The average nucleotide composition of trnL intron was 26.3% T, 16.8% C, 37.7% A and 19.2% G. The divergence values varied from 0.000 to 0.057. The trnL-F sequences ranged from 392 to 399 nucleotides. Average nucleotide composition was 34.3% T, 21.2% C, 27.4% A and 17.1% G, while the divergence values of trnL-F sequences varied from 0.000 to 0.003. As a result, trees constructed based on trnL intron region have systematically been found to show more reliable and compatible results than those formed based on the trnL-F region.
机译:在这项研究中,根据叶绿体DNA(trnL内含子和trnL-F)序列对一些土耳其柑橘种进行了系统发育分析。将柑橘类群画在系统发育树上,其中将花椒花椒作为外群。从NCBI GenBank中检索出外群的trnL内含子和trnL-F区的序列。在花序和植被时期,从不同位置收集了所有植物样品,并送至实验室。使用DNAeasy Plant Mini Kit从健康的绿叶中分离基因组DNA。使用通用引物trnc和trnd扩增trnL内含子区域,而对于trnL-F区域,使用trne和trnf。使用BioEdit 7.0.4.1和FinchTV编辑后来获得的DNA序列。测序数据通过ClustalW程序进行比对,并使用MEGA 6.0软件进行分析。为了识别柑橘类群之间的关系,构建了最大似然树和自举树。 trnL内含子序列的范围为554至581个核苷酸。 trnL内含子的平均核苷酸组成为26.3%T,16.8%C,37.7%A和19.2%G。散度值从0.000到0.057不等。 trnL-F序列的范围为392至399个核苷酸。平均核苷酸组成为34.3%T,21.2%C,27.4%A和17.1%G,而trnL-F序列的差异值在0.000至0.003之间。结果,系统地发现基于trnL内含子区域构建的树比基于trnL-F区域形成的树显示出更可靠和兼容的结果。

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