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Genome wide gene expression in artificially synthesized amphidiploids of Arabidopsis

机译:拟南芥人工合成的二倍体中的全基因组基因表达

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The merging of two different genomes occurs during the formation of amphidiploids, and the merged regulatory networks have the potential to generate a new gene expression pattern. We examined the genome-wide gene expression of two newly synthesized amphidiploids between Arabidopsis thaliana and the related species Arabidopsis lyrata subsp. lyrata and Arabidopsis halleri subsp. gemmifera. 1,137 (4.7%) and 1,316 (5.4%) of probesets showed differential gene expression in A. thaliana–A. halleri and A. thaliana–A. lyrata hybrids respectively, compared to the mid parent value and of these, 489 were in common. Genes that differed in expression between the parental lines tended to have an expression level in both hybrids differing from the mid parent value. In contrast to protein coding genes, there is little differential expression of transposons. Genes in the categories of chloroplast-targeted and response to stress were overrepresented in the non-additively expressed genes in both amphidiploids. As these genes have the potential to contribute directly to the plant phenotype, we suggest that rapid changes of gene expression in amphidiploids might be important for producing greater biomass.
机译:两个不同基因组的合并发生在二倍体的形成过程中,并且合并的调节网络具有产生新基因表达模式的潜力。我们检查了拟南芥和相关物种拟南芥亚种之间的两个新合成的双倍体的全基因组基因表达。金钱草和拟南芥属亚种。双子座。 1,137(4.7%)和1,316(5.4%)的探针在拟南芥中显示出不同的基因表达。 halleri和拟南芥A.母本草皮杂种与中亲本相比,其中有489种是共同的。亲本系之间表达差异的基因倾向于在两个杂种中具有与中亲本值不同的表达水平。与蛋白质编码基因相反,转座子几乎没有差异表达。叶绿体靶向和对应激反应的类别中的基因在两种两性生物的非累加表达基因中均过分表达。由于这些基因具有直接影响植物表型的潜力,因此我们建议,两性生物中基因表达的快速变化对于产生更大的生物量可能很重要。

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