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首页> 外文期刊>Theoretical and Applied Genetics >The Owen mitochondrial genome in sugar beet (Beta vulgaris L.): possible mechanisms of extensive rearrangements and the origin of the mitotype-unique regions
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The Owen mitochondrial genome in sugar beet (Beta vulgaris L.): possible mechanisms of extensive rearrangements and the origin of the mitotype-unique regions

机译:甜菜(Beta vulgaris L.)中的欧文线粒体基因组:广泛重排的可能机制和线型独特区的起源

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摘要

The mitochondrial genomes of normal fertile and male-sterile (Owen CMS) cytoplasms of sugar beet are highly rearranged relative to each other and dozens of inversional recombinations and other reshuffling events must be postulated to interconvert the two genomes. In this paper, a comparative analysis of the entire nucleotide sequences of the two genomes revealed that most of the inversional recombinations involved short repeats present at their endpoints. Attention was also focused on the origin of the Owen CMS-unique mtDNA regions, which occupy 13.6% of the Owen genome and are absent from the normal mtDNA. BLAST search was performed to assign the sequences, and as a result, 7.6% of the unique regions showed significant homology to previously determined mitochondrial sequences, 17.9% to nuclear DNA, 4.6% to mitochondrial episomes, and 0.1% to plastid DNA. Southern blot analysis revealed that additional sequences of nuclear origin may be included within the unique regions. We also found that the copies of many short repeat families are scattered throughout the unique regions. This suggests that, in addition to the incorporation of foreign DNAs, extensive duplication of short repetitive sequences and continued scrambling of mtDNA sequences may be implicated in the generation of the Owen CMS-unique regions.
机译:甜菜的正常可育和雄性不育(Owen CMS)细胞质的线粒体基因组相对于彼此高度重排,并且必须假定数十个反向重组和其他改组事件以使两个基因组相互转化。在本文中,对两个基因组的整个核苷酸序列的比较分析表明,大多数反向重组涉及在其端点处存在的短重复序列。还关注Owen CMS独特的mtDNA区域的起源,该区域占Owen基因组的13.6%,而正常的mtDNA却不存在。进行了BLAST搜索以分配序列,结果,有7.6%的独特区域与先前确定的线粒体序列具有显着同源性,与核DNA的同源性为17.9%,与线粒体附加体的同源性为4.6%,与质体DNA的同源性为0.1%。 Southern印迹分析表明,核起源的其他序列可以包括在独特区域内。我们还发现,许多短重复家庭的副本散布在整个独特区域中。这表明,除了外来DNA的掺入外,短重复序列的广泛复制和mtDNA序列的连续加扰也可能与Owen CMS独特区的产生有关。

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  • 来源
    《Theoretical and Applied Genetics》 |2006年第3期|477-484|共8页
  • 作者单位

    Laboratory of Genetic Engineering Graduate School of Agriculture Hokkaido University N-9 W-9 Kita-ku Sapporo Hokkaido 060-8589 Japan;

    Laboratory of Genetic Engineering Graduate School of Agriculture Hokkaido University N-9 W-9 Kita-ku Sapporo Hokkaido 060-8589 Japan;

    Laboratory of Genetic Engineering Graduate School of Agriculture Hokkaido University N-9 W-9 Kita-ku Sapporo Hokkaido 060-8589 Japan;

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