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首页> 外文期刊>Molecular phylogenetics and evolution >A study of the phylogeny of Brassica rapa, B nigra, Raphanus sativus, and their related genera using noncoding regions of chloroplast DNA
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A study of the phylogeny of Brassica rapa, B nigra, Raphanus sativus, and their related genera using noncoding regions of chloroplast DNA

机译:利用叶绿体DNA非编码区研究小白菜,黑黑菜,Raphanus sativus及其近缘属的系统发育

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There are two evolutionary lineages in the genus Brassica: the rapaloleracea lineage and the nigra lineage. Using nuclear DNA sequences such as the intergenic spacer between 5S rRNA genes and the internal transcribed spacer between 18S and 25S rRNA genes, we and others had previously demonstrated that Raphanus sativus is closely related to the nigra lineage. In the present study, we sequenced the chloroplast noncoding region between trnT and trnF and that between trnD and trnT in seven species and showed that R. sativus is more closely related to the rapaloleracea lineage than to the nigra lineage. The conflicting results from nuclear DNA and chloroplast DNA support the hypothesis that Raphanus was derived from a hybridization between the rapaloleracea and the nigra lineages. We estimated the date of this hybridization event to be 60% of the divergence time between the two Brassica lineages. In addition, the pattern and rate of nucleotide substitution were studied. There were more transversions than transitions in these noncoding regions, which have a high AT content. Furthermore, the proportion of transversions among the substitutions at a site increases with increasing A + T content of its two adjacent nucleotides. An influence of immediate 5' pyrimidine on substitution pattern is also observed when both adjacent bases in the two DNA strands are A or T. The rate of nucleotide substitution in the trnL group I intron is only about one third of the rate in the nearby intergenic spacers in the trnT-trnF fragment. The rate of nucleotide substitution in the rapaloleracea lineage is at least 1.5 times that in the nigra lineage.
机译:芸苔属有两个进化谱系:rapaloleracea谱系和黑gra谱系。使用核DNA序列,例如5S rRNA基因之间的基因间间隔区和18S和25S rRNA基因之间的内部转录间隔区,我们和其他人先前已经证明了萝卜(Raphanus sativus)与黑线谱系密切相关。在本研究中,我们对7种物种中trnT和trnF之间以及trnD和trnT之间的叶绿体非编码区进行了测序,结果表明,R。sativus与rapaloleracea谱系比与黑质谱系更紧密相关。核DNA和叶绿体DNA的相互矛盾的结果支持以下假设:Raphanus源自rapaloleracea和黑帮谱系之间的杂交。我们估计此杂交事件的日期为两个甘蓝谱系之间发散时间的60%。另外,研究了核苷酸取代的模式和速率。这些具有较高AT含量的非编码区域中的转换多于转换。此外,一个位点的取代中的颠换比例随其两个相邻核苷酸的A + T含量的增加而增加。当两条DNA链中的两个相邻碱基均为A或T时,也观察到立即5'嘧啶对取代模式的影响。trnL I组内含子的核苷酸取代率仅为附近基因组的比率的三分之一。 trnT-trnF片段中的间隔子。雷柏油菜谱系中的核苷酸取代率至少是黑质谱系中的1.5倍。

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