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The complete nucleotide sequence of the cassava (Manihot esculenta) chloroplast genome and the evolution of atpF in Malpighiales: RNA editing and multiple losses of a group II intron

机译:木薯(Manihot esculenta)叶绿体基因组的完整核苷酸序列和马尔皮维亚斯中atpF的进化:RNA编辑和II组内含子的多次缺失

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摘要

The complete sequence of the chloroplast genome of cassava (Manihot esculenta, Euphorbiaceae) has been determined. The genome is 161,453 bp in length and includes a pair of inverted repeats (IR) of 26,954 bp. The genome includes 128 genes; 96 are single copy and 16 are duplicated in the IR. There are four rRNA genes and 30 distinct tRNAs, seven of which are duplicated in the IR. The infA gene is absent; expansion of IRb has duplicated 62 amino acids at the 3′ end of rps19 and a number of coding regions have large insertions or deletions, including insertions within the 23S rRNA gene. There are 17 intron-containing genes in cassava, 15 of which have a single intron while two (clpP, ycf3) have two introns. The usually conserved atpF group II intron is absent and this is the first report of its loss from land plant chloroplast genomes. The phylogenetic distribution of the atpF intron loss was determined by a PCR survey of 251 taxa representing 34 families of Malpighiales and 16 taxa from closely related rosids. The atpF intron is not only missing in cassava but also from closely related Euphorbiaceae and other Malpighiales, suggesting that there have been at least seven independent losses. In cassava and all other sequenced Malphigiales, atpF gene sequences showed a strong association between C-to-T substitutions at nucleotide position 92 and the loss of the intron, suggesting that recombination between an edited mRNA and the atpF gene may be a possible mechanism for the intron loss.
机译:木薯(Manihot esculenta,大戟科)的叶绿体基因组的完整序列已经确定。该基因组的长度为161,453 bp,包括一对26,954 bp的反向重复序列(IR)。基因组包括128个基因;在IR中有96个是单份,有16个是重复的。有四个rRNA基因和30个不同的tRNA,其中七个在IR中重复。 infA基因不存在; IRb的扩增在rps19的3'端复制了62个氨基酸,并且许多编码区具有较大的插入或缺失,包括23S rRNA基因内的插入。木薯中有17个含内含子的基因,其中15个有一个内含子,而两个(clpP,ycf3)有两个内含子。缺少通常保守的atpF II组内含子,这是其从陆地植物叶绿体基因组中丢失的第一个报道。 atpF内含子丢失的系统发育分布是通过对代表34个Malpighiales家族的251个分类单元和来自密切相关的果蝇的16个分类单元的PCR调查确定的。木薯中不仅缺少atpF内含子,而且近亲大戟科和其他Malpighiales也缺少atpF内含子,这表明至少有七个独立的丢失。在木薯和所有其他测序的麦菲鱼中,atpF基因序列在核苷酸第92位的C至T取代与内含子的丢失之间显示出很强的关联性,这表明编辑的mRNA与atpF基因之间的重组可能是一种可能的机制内含子丢失。

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