Patterns of genomic integration of nuclear chloroplast DNA fragments in plant species.

Takanori Yoshida, Hazuka Y Furihata, Akira Kawabe
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引用次数: 41

Abstract

The transfer of organelle DNA fragments to the nuclear genome is frequently observed in eukaryotes. These transfers are thought to play an important role in gene and genome evolution of eukaryotes. In plants, such transfers occur from plastid to nuclear [nuclear plastid DNAs (NUPTs)] and mitochondrial to nuclear (nuclear mitochondrial DNAs) genomes. The amount and genomic organization of organelle DNA fragments have been studied in model plant species, such as Arabidopsis thaliana and rice. At present, publicly available genomic data can be used to conduct such studies in non-model plants. In this study, we analysed the amount and genomic organization of NUPTs in 17 plant species for which genome sequences are available. The amount and distribution of NUPTs varied among the species. We also estimated the distribution of NUPTs according to the time of integration (relative age) by conducting sequence similarity analysis between NUPTs and the plastid genome. The age distributions suggested that the present genomic constitutions of NUPTs could be explained by the combination of the rapidly eliminated deleterious parts and few but constantly existing less deleterious parts.

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Abstract Image

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植物核叶绿体DNA片段的基因组整合模式。
细胞器DNA片段向核基因组的转移在真核生物中经常观察到。这些转移被认为在真核生物的基因和基因组进化中起着重要作用。在植物中,这种转移发生在质体到核[核质体dna (NUPTs)]和线粒体到核(核线粒体dna)基因组之间。在拟南芥和水稻等模式植物中,研究了细胞器DNA片段的数量和基因组组织。目前,公开可用的基因组数据可用于在非模式植物中进行此类研究。在这项研究中,我们分析了17种植物中nupt的数量和基因组组织。nupt的数量和分布在不同物种之间存在差异。我们还通过nupt与质体基因组之间的序列相似性分析,根据整合时间(相对年龄)估计了nupt的分布。年龄分布表明,nupt目前的基因组结构可以用迅速消除的有害部分和少量但持续存在的较不有害部分的组合来解释。
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