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Complete Chloroplast Genome of Pinus massoniana (Pinaceae): Gene Rearrangements, Loss of ndh Genes, and Short Inverted Repeats Contraction, Expansion

机译:马尾松(Pinaceae)的完整叶绿体基因组:基因重排,ndh基因的丢失和短的反向重复收缩,扩展。

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The chloroplast genome (CPG) of Pinus massoniana belonging to the genus Pinus (Pinaceae), which is a primary source of turpentine, was sequenced and analyzed in terms of gene rearrangements, ndh genes loss, and the contraction and expansion of short inverted repeats (IRs). P. massoniana CPG has a typical quadripartite structure that includes large single copy (LSC) (65,563 bp), small single copy (SSC) (53,230 bp) and two IRs (IRa and IRb, 485 bp). The 108 unique genes were identified, including 73 protein-coding genes, 31 tRNAs, and 4 rRNAs. Most of the 81 simple sequence repeats (SSRs) identified in CPG were mononucleotides motifs of A/T types and located in non-coding regions. Comparisons with related species revealed an inversion (21,556 bp) in the LSC region; P. massoniana CPG lacks all 11 intact ndh genes (four ndh genes lost completely; the five remained truncated as pseudogenes; and the other two ndh genes remain as pseudogenes because of short insertions or deletions). A pair of short IRs was found instead of large IRs, and size variations among pine species were observed, which resulted from short insertions or deletions and non-synchronized variations between “IRa” and “IRb”. The results of phylogenetic analyses based on whole CPG sequences of 16 conifers indicated that the whole CPG sequences could be used as a powerful tool in phylogenetic analyses. View Full-Text
机译:对松节线虫属的松属马尾松的叶绿体基因组(CPG)进行了测序,并根据基因重排,ndh基因丢失以及短反向重复序列的收缩和扩展进行了分析( IRs)。马尾假单胞菌CPG具有典型的四方结构,包括大单拷贝(LSC)(65,563 bp),小单拷贝(SSC)(53,230 bp)和两个IR(IRa和IRb,485 bp)。确定了108个独特基因,包括73个蛋白质编码基因,31个tRNA和4个rRNA。 CPG中鉴定的81个简单序列重复序列(SSR)中的大多数是A / T类型的单核苷酸基序,位于非编码区。与相关物种的比较显示,LSC区域发生了反转(21,556 bp)。马尾假单胞菌CPG缺少全部11个完整的ndh基因(四个ndh基因完全丧失;五个残基被保留为假基因;由于短插入或缺失,其余两个ndh基因仍保留为假基因)。发现了一对短的IR,而不是大的IR,并且观察到松树物种之间的大小变化,这是由于“ IRa”和“ IRb”之间的短插入或缺失以及非同步变化造成的。基于16个针叶树的完整CPG序列的系统发育分析结果表明,整个CPG序列可作为系统发育分析的有力工具。查看全文

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