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Proteomic divergence in Arabidopsis autopolyploids and allopolyploids and their progenitors

机译:拟南芥自身多倍体和同种多倍体及其祖细胞中的蛋白质组差异。

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摘要

Autopolyploidy and allopolyploidy are common in many plants and some animals. Rapid changes in genomic composition and gene expression have been observed in both autopolyploids and allopolyploids, but the effects of polyploidy on proteomic divergence are poorly understood. Here, we report quantitative analysis of protein changes in leaves of Arabidopsis autopolyploids and allotetraploids and their progenitors using isobaric tags for relative and absolute quantitation (iTRAQ) coupled with mass spectrometry. In more than 1000 proteins analyzed, the levels of protein divergence were relatively high (∼18%) between Arabidopsis thaliana and Arabidopsis arenosa, relatively low (∼6.8%) between an A. thaliana diploid and autotetraploid and intermediate (∼8.3 and 8.2%) in F1- and F8-resynthesized allotetraploids relative to mid-parent values, respectively. This pattern of proteomic divergence was consistent with the previously reported gene expression data. In particular, many non-additively accumulated proteins (61–62%) in the F1 and F8 allotetraploids were also differentially expressed between the parents. The differentially accumulated proteins in functional categories of abiotic and biotic stresses were overrepresented between an A. thaliana autotetraploid and diploid and between two Arabidopsis species, but not significantly different between allotetraploids and their progenitors. Although the trend of changes is similar, the percentage of differentially accumulated proteins that matched previously reported differentially expressed genes was relatively low. Western blot analysis confirmed several selected proteins with isoforms the cumulative levels of which were differentially expressed. These data suggest high protein divergence between species and rapid changes in post-transcriptional regulation and translational modifications of proteins during polyploidization.
机译:自体多倍体和同种多倍体在许多植物和某些动物中很常见。在自体多倍体和同种多倍体中均观察到基因组组成和基因表达的快速变化,但人们对多倍体对蛋白质组差异的影响了解甚少。在这里,我们报告使用相对和绝对定量(iTRAQ)结合质谱的同量异位标记对拟南芥自多倍体和异源四倍体及其祖细胞的叶片中蛋白质变化进行定量分析。在分析的1000多种蛋白质中,拟南芥和拟南芥之间的蛋白质发散水平相对较高(〜18%),拟南芥二倍体与自身四倍体和中级之间的蛋白质发散水平相对较低(〜6.8%)(〜8.3和8.2%) )分别相对于中亲本值在F1和F8重新合成的异源四倍体中。蛋白质组差异的这种模式与先前报道的基因表达数据一致。特别是,在F1和F8等位四倍体中,许多非累加积累的蛋白质(61-62%)在亲本之间也有差异表达。在拟南芥自体四倍体和二倍体之间以及两个拟南芥物种之间,非生物和生物胁迫的功能类别中差异积累的蛋白质被过度表达,但异源四倍体与其祖细胞之间没有显着差异。尽管变化趋势相似,但与先前报道的差异表达基因匹配的差异积累蛋白质的百分比相对较低。蛋白质印迹分析证实了几种具有同工型的选定蛋白质,其累积水平差异表达。这些数据表明物种之间存在高度的蛋白质差异,并且在多倍体化过程中蛋白质的转录后调控和翻译修饰快速变化。

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