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首页> 外文期刊>BMC Plant Biology >Evolution of the rpoB-psbZ region in fern plastid genomes: notable structural rearrangements and highly variable intergenic spacers
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Evolution of the rpoB-psbZ region in fern plastid genomes: notable structural rearrangements and highly variable intergenic spacers

机译:蕨类植物质体基因组中rpoB-psbZ区的进化:显着的结构重排和高度可变的基因间隔子

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Background The rpoB-psbZ (BZ) region of some fern plastid genomes (plastomes) has been noted to go through considerable genomic changes. Unraveling its evolutionary dynamics across all fern lineages will lead to clarify the fundamental process shaping fern plastome structure and organization. Results A total of 24 fern BZ sequences were investigated with taxon sampling covering all the extant fern orders. We found that: (i) a tree fern Plagiogyria japonica contained a novel gene order that can be generated from either the ancestral Angiopteris type or the derived Adiantum type via a single inversion; (ii) the trnY-trnE intergenic spacer (IGS) of the filmy fern Vandenboschia radicans was expanded 3-fold due to the tandem 27-bp repeats which showed strong sequence similarity with the anticodon domain of trnY; (iii) the trnY-trnE IGSs of two horsetail ferns Equisetum ramosissimum and E. arvense underwent an unprecedented 5-kb long expansion, more than a quarter of which was consisted of a single type of direct repeats also relevant to the trnY anticodon domain; and (iv) ycf66 has independently lost at least four times in ferns. Conclusions Our results provided fresh insights into the evolutionary process of fern BZ regions. The intermediate BZ gene order was not detected, supporting that the Adiantum type was generated by two inversions occurring in pairs. The occurrence of Vandenboschia 27-bp repeats represents the first evidence of partial tRNA gene duplication in fern plastomes. Repeats potentially forming a stem-loop structure play major roles in the expansion of the trnY-trnE IGS.
机译:背景技术一些蕨类质体基因组(质体组)的rpoB-psbZ(BZ)区域已经经历了相当大的基因组变化。揭示其在所有蕨类谱系中的进化动力学将导致阐明形成蕨质体组的基本过程。结果共进行了24个蕨类BZ序列的研究,并通过分类单元采样涵盖了所有现有的蕨类订单。我们发现:(i)蕨类植物日本侧柏含有一个新的基因顺序,该基因顺序可以通过一次反转从祖先的Angiopteris类型或衍生的铁线蕨类型中产生。 (ii)由于串联的27 bp重复序列显示出与trnY的反密码子结构域有很强的序列相似性,因此薄膜蕨Vandenboschia radicans的trnY-trnE基因间间隔区(IGS)扩增了3倍。 (iii)两个马尾蕨木贼和木贼E的trnY-trnE IGS经历了前所未有的5kb长的扩增,其中超过四分之一由单一类型的直接重复组成,也与trnY反密码子结构域有关; (iv)ycf66在蕨类中至少损失了四次。结论我们的结果为蕨类BZ区域的进化过程提供了新的见解。没有检测到中间的BZ基因顺序,支持铁线蕨型是由成对发生的两个倒位产生的。 Vandenboschia 27 bp重复的出现代表蕨质体组中部分tRNA基因重复的第一个证据。可能形成茎环结构的重复序列在trnY-trnE IGS的扩增中起主要作用。

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