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Plastids and gene transfer: Correlation between Nuclear Plastid DNA Abundance and Plastid Number Supports the Limited Transfer Window Hypothesis

机译:质体和基因转移:核质体DNA丰度与质体数之间的相关性支持有限的转移窗口假说

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摘要

The abundance of nuclear plastid DNA-like sequences (NUPTs) in nuclear genomes can vary immensely; however, the forces responsible for this variation are poorly understood. “The limited transfer window hypothesis” predicts that species with only one plastid per cell will have fewer NUPTs than those with many plastids per cell, but a lack of genome sequence data from monoplastidic species has made this hypothesis difficult to test. Here, by analyzing newly available genome sequences from diverse mono- and polyplastidic taxa, we show that the hypothesis holds. On average, the polyplastidic species we studied had 80 times more NUPTs than those that were monoplastidic. Moreover, NUPT content was positively related to nuclear genome size, indicating that in addition to plastid number, NUPTs are influenced by the forces controlling the expansion and contraction of noncoding nuclear DNA. These findings are consistent with data on nuclear DNAs of mitochondrial origin (NUMTs), suggesting that similar processes govern the abundance of both NUPTs and NUMTs.
机译:核基因组中核质体DNA样序列(NUPT)的丰度可能会发生巨大变化。但是,导致这种变化的力量了解得很少。 “有限的传递窗口假说”预测,每个细胞仅具有一个质体的物种将比每个细胞具有多个质体的物种具有更少的NUPT,但是缺乏来自单一质体物种的基因组序列数据使得该假设难以检验。在这里,通过分析来自不同的单质和多质类群的新的基因组序列,我们证明了这一假设成立。平均而言,我们研究的多质物种的NUPT比单质物种多80倍。此外,NUPT含量与核基因组大小呈正相关,这表明除了质体数目外,NUPT还受控制非编码核DNA扩增和收缩的力的影响。这些发现与线粒体来源的核DNA(NUMT)的数据一致,表明类似的过程控制着NUPT和NUMT的丰度。

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