植物线粒体和叶绿体基因组的结构组织和转录

R.I. Salganik, N.A. Dudareva, E.V. Kiseleva
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引用次数: 10

摘要

实验证据表明,植物线粒体和叶绿体基因组是多部分的,除了一个大的圆形基因组DNA外,它们还含有亚基因组小圆形和质粒样分子。研究表明,植物线粒体和叶绿体dna被包装成脱氧核蛋白原纤维,包括核小体样和核小体样小球;原纤维形成环状和蔷薇状结构,中心有蛋白质成分。类似的结构是亚基因组dna的特征。参与形成核小体样球的基本蛋白质与核组蛋白完全不同,事实上,植物线粒体和叶绿体的基本蛋白质也不同。一些基本蛋白与大肠杆菌HU蛋白有共同的抗原。线粒体和叶绿体基因的遗传密码是通用的。目前认为线粒体基因组中唯一与通用密码子不同的密码子在转录后mRNA编辑过程中被纠正。在叶绿体基因的启动子中有两个六核苷酸与原核基因启动子转录所需的−10和−35区域的序列同源。植物线粒体基因中负责转录调控的启动子序列尚未确定。免疫电镜证据表明,线粒体和叶绿体RNA聚合酶具有与大肠杆菌RNA聚合酶的β-亚基相同的抗原。结果表明,线粒体基因在黑暗中强烈转录,在光照下被抑制。电子显微镜显示,在黑暗中,约70%的植物线粒体含有大量RNA聚合酶分子,但在光照下,这一比例下降到10-15%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural organization and transcription of plant mitochondrial and chloroplast genomes

Experimental evidence is presented showing that the plant mitochondrial and chloroplast genomes are multipartite and, that besides a large circular genomic DNA, they contain subgenomic minicircular and plasmid-like molecules. It is demonstrated that plant mitochondrial and chloroplast DNAs are packaged into deoxynucleoprotein fibrils comprising nucleosome-like and nucleomere-like globules; the fibrils form loops and rosette-like structures with central proteinaceous components. A similar structure is characteristic of the subgenomic DNAs. The basic proteins involved in the formation of nucleosome-like globules are quite different from the nuclear histones, indeed the basic proteins from plant mitochondria and chloroplasts are also distinct. Some of the basic proteins share common antigens with the E. coli HU protein. The genetic code for the mitochondrial and chloroplast genes is universal. The only codon now thought to be different from the universal in the mitochondrial genome is corrected during post-transcriptional mRNA editing. There are two hexanucleotides in the promoters of the chloroplast genes homologous to the sequences in −10 and −35 regions of the prokaryotic genes promoters requisite for transcription. Promoter sequences of the plant mitochondria genes responsible for transcription regulation were not identified. Immunoelectronmicroscopic evidence suggest that mitochondrial and chloroplast RNA polymerases have antigens in common with the β-subunit of E. coli RNA polymerase. It is shown that the mitochondrial genes are intensely transcribed in the dark and repressed by illumination. Electron microscopy demonstrated that about 70% of plant mitochondria contain numerous RNA polymerase molecules in the dark, but this percentage falls to 10–15% after light exposure.

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