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Genetic recombination is associated with intrinsic disorder in plant proteomes

机译:基因重组与植物蛋白质组中的内在失调有关

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Background Intrinsically disordered proteins, found in all living organisms, are essential for basic cellular functions and complement the function of ordered proteins. It has been shown that protein disorder is linked to the G + C content of the genome. Furthermore, recent investigations have suggested that the evolutionary dynamics of the plant nucleus adds disordered segments to open reading frames alike, and these segments are not necessarily conserved among orthologous genes. Results In the present work the distribution of intrinsically disordered proteins along the chromosomes of several representative plants was analyzed. The reported results support a non-random distribution of disordered proteins along the chromosomes of Arabidopsis thaliana and Oryza sativa, two model eudicot and monocot plant species, respectively. In fact, for most chromosomes positive correlations between the frequency of disordered segments of 30+ amino acids and both recombination rates and G + C content were observed. Conclusions These analyses demonstrate that the presence of disordered segments among plant proteins is associated with the rates of genetic recombination of their encoding genes. Altogether, these findings suggest that high recombination rates, as well as chromosomal rearrangements, could induce disordered segments in proteins during evolution.
机译:背景技术在所有活生物体中发现的内在无序蛋白对于基本细胞功能至关重要,并能补充有序蛋白的功能。已经显示蛋白质失调与基因组的G + C含量有关。此外,最近的研究表明,植物细胞核的进化动力学将无序片段添加到开放阅读框中,并且这些片段在直系同源基因中不一定是保守的。结果在本工作中,分析了内在无序蛋白沿着几种代表性植物的染色体的分布。报道的结果支持无序蛋白沿着拟南芥和稻(两种模式的双子叶植物和单子叶植物)的染色体非随机分布。实际上,对于大多数染色体,观察到30个以上氨基酸的无序片段的频率与重组率和G + C含量之间呈正相关。结论这些分析表明,植物蛋白中无序片段的存在与其编码基因的遗传重组速率有关。总而言之,这些发现表明高重组率以及染色体重排可能在进化过程中诱导蛋白质中的无序片段。

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