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Genome defense against integrated organellar DNA fragments from plastids into plant nuclear genomes through DNA methylation

机译:基因组通过DNA甲基化作用防御质体中整合的细胞器DNA片段从质体进入植物核基因组

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摘要

Nuclear genomes are always faced with the modification of themselves by insertions and integrations of foreign DNAs and intrinsic parasites such as transposable elements. There is also substantial number of integrations from symbiotic organellar genomes to their host nuclear genomes. Such integration might have acted as a beneficial mutation during the evolution of symbiosis, while most of them have more or less deleterious effects on the stability of current genomes. Here we report the pattern of DNA substitution and methylation on organellar DNA fragments integrated from plastid into plant nuclear genomes. The genome analyses of 17 plants show homology–dependent DNA substitution bias. A certain number of these sequences are DNA methylated in the nuclear genome. The intensity of DNA methylation also decays according to the increase of relative evolutionary times after being integrated into nuclear genomes. The methylome data of epigenetic mutants shows that the DNA methylation of organellar DNA fragments in nuclear genomes are mainly dependent on the methylation maintenance machinery, while other mechanisms may also affect on the DNA methylation level. The DNA methylation on organellar DNA fragments may contribute to maintaining the genome stability and evolutionary dynamics of symbiotic organellar and their host’s genomes.
机译:核基因组始终面临着外来DNA和内在寄生虫(例如转座因子)的插入和整合对自身的修饰。从共生细胞器基因组到其宿主核基因组的整合也很多。在共生进化过程中,这种整合可能是有益的突变,而其中大多数对当前基因组的稳定性或多或少地具有有害作用。在这里,我们报告从质体整合到植物核基因组中的细胞器DNA片段上的DNA取代和甲基化模式。对17种植物的基因组分析显示同源性依赖的DNA替代偏差。这些序列中的一定数量在核基因组中被甲基化的DNA。在整合到核基因组中之后,DNA甲基化的强度也会根据相对进化时间的增加而衰减。表观遗传突变体的甲基化数据表明,核基因组中细胞器DNA片段的DNA甲基化主要取决于甲基化维持机制,而其他机制也可能影响DNA甲基化水平。细胞器DNA片段上的DNA甲基化可能有助于维持共生细胞器及其宿主基因组的基因组稳定性和进化动力学。

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