Mathijs Nieuwenhuis, Jeroen Groeneveld, Duur K Aanen
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引用次数: 0
摘要
已知真菌和植物线粒体可与逆转录病毒质粒交换 DNA。质粒 DNA 向细胞器基因组的转移最广为人知,是通过质粒的整体插入进行的。而细胞器 DNA 向质粒的转移,尤其是 tRNA 基因的转移,则鲜为人知。目前,人们还不知道真菌质粒能否通过水平基因转移获得线粒体的功能,如生产 tRNA。在本文中,我们研究了真菌线性质粒与真菌 mtDNA 之间的 DNA 交换,主要集中在基生真菌 Lyophyllaceae 家族。我们报告了至少六种独立的完整 tRNA 基因转移到真菌质粒的情况。此外,我们还发现了两例将 tRNA 基因转移到线粒体质粒后真菌线粒体基因组中 tRNA 基因丢失的独立案例。我们认为,将线粒体 DNA 中的 tRNA 基因转移到质粒上后,宿主的线粒体 DNA 会对质粒产生一种相互依赖的关系。我们还发现,转入质粒的 tRNA 基因编码的密码子在宿主线粒体基因组中出现的频率最低,这可能是由于未使用的转录本数量较多。我们讨论了将 mtDNA 转移到质粒对宿主 mtDNA 和质粒的潜在影响。
Horizontal transfer of tRNA genes to mitochondrial plasmids facilitates gene loss from fungal mitochondrial DNA.
Fungal and plant mitochondria are known to exchange DNA with retroviral plasmids. Transfer of plasmid DNA to the organellar genome is best known and occurs through wholesale insertion of the plasmid. Less well known is the transfer of organellar DNA to plasmids, in particular tRNA genes. Presently, it is unknown whether fungal plasmids can adopt mitochondrial functions such as tRNA production through horizontal gene transfer. In this paper, we studied the exchange of DNA between fungal linear plasmids and fungal mtDNA, mainly focusing on the basidiomycete family Lyophyllaceae. We report at least six independent transfers of complete tRNA genes to fungal plasmids. Furthermore, we discovered two independent cases of loss of a tRNA gene from a fungal mitochondrial genome following transfer of such a gene to a linear mitochondrial plasmid. We propose that loss of a tRNA gene from mtDNA following its transfer to a plasmid creates a mutualistic dependency of the host mtDNA on the plasmid. We also find that tRNA genes transferred to plasmids encode codons that occur at the lowest frequency in the host mitochondrial genomes, possibly due to a higher number of unused transcripts. We discuss the potential consequences of mtDNA transfer to plasmids for both the host mtDNA and the plasmid.
期刊介绍:
Current Genetics publishes genetic, genomic, molecular and systems-level analysis of eukaryotic and prokaryotic microorganisms and cell organelles. All articles are peer-reviewed. The journal welcomes submissions employing any type of research approach, be it analytical (aiming at a better understanding), applied (aiming at practical applications), synthetic or theoretical.
Current Genetics no longer accepts manuscripts describing the genome sequence of mitochondria/chloroplast of a small number of species. Manuscripts covering sequence comparisons and analyses that include a large number of species will still be considered.