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首页> 外文期刊>Plant Molecular Biology >Counting mtDNA molecules in Phaseolus vulgaris: sublimons are constantly produced by recombination via short repeats and undergo rigorous selection during substoichiometric shifting
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Counting mtDNA molecules in Phaseolus vulgaris: sublimons are constantly produced by recombination via short repeats and undergo rigorous selection during substoichiometric shifting

机译:计数菜豆中的mtDNA分子:通过短暂的重复重组不断产生亚升分子,并在亚化学计量转换过程中经过严格的选择

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Sublimons are substoichiometric DNA molecules which are generated by recombinations across short repeats, located in main mitochondrial genome of plants. Since short repeats are believed to recombine irreversibly and to be usually inactive, it is unknown how substoichiometric sequences are maintained. Occasionally, sublimons are amplified during substoichiometric shifting (SSS) and take the role of the main genome. Using the Phaseolus vulgaris system, we have addressed the questions concerning accumulation of sublimons, the role of recombination in their maintenance and selective amplification during SSS. We found that sublimons accompanied by parental recombination sequences were maintained by constant recombination across a short 314-bp repeat. The abundance of these sublimons was three orders of magnitude higher than accumulation of those which could not be maintained by recombination because their parental forms were absent from the main genome. As expected for active recombination, two recombination-derived sublimons were equimolar and so were their parental forms. One parental and one substoichiometric form shared the A/C polymorphism indicating their frequent inter-conversion. Only the C variant of the sublimon was amplified during substoichiometric shift implying strong selection of DNA molecules operating during SSS.
机译:亚超分子是亚化学计量的DNA分子,通过短重复序列的重组产生,位于植物的主要线粒体基因组中。由于短重复被认为是不可逆地重组并且通常是无活性的,因此未知如何维持亚化学计量的序列。有时,亚致密分子在亚化学计量转变(SSS)期间被扩增,并起主要基因组的作用。使用菜豆系统,我们已经解决了有关亚升膜的积累,重组在其维持过程中的作用以及SSS期间选择性扩增的问题。我们发现,在较短的314 bp重复序列中,通过恒定重组来维持伴随着亲本重组序列的亚链。这些亚下限的丰度比不能通过重组维持的下限的积累高三个数量级,因为主要基因组中不存在它们的亲本形式。正如预期的活性重组一样,两个重组衍生的亚等摩尔分子是等摩尔的,它们的亲代形式也是等摩尔的。一种亲本和一种亚化学计量形式共享A / C多态性,表明它们频繁进行相互转化。在亚化学计量变化期间仅扩增了亚limon的C变体,这意味着强烈选择在SSS期间运行的DNA分子。

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