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Dosage Effects on Gene Expression in a Maize Ploidy Series

机译:剂量对玉米倍性系列基因表达的影响

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摘要

Previous studies on gene expression in aneuploids revealed numerous trans-acting dosage effects. Segmental aneuploidy of each varied chromosomal region exhibited predominantly inverse effects on several target genes. Here, dosage regulation was examined in a maize (Zea mays L.) ploidy series where the complete genomic complement is varied. Total RNA from leaf tissue of monoploid, diploid, triploid, and tetraploid plants (1X, 2X, 3X, and 4X, respectively) was analyzed for the expression of 18 genes. For most tested genes, the transcript level per cell is directly proportional to structural gene dosage; that is, on a per genome basis, there is approximately equal expression among the four ploidies. Exceptional cases show a negative correlation of expression with ploidy or a positive correlation greater than expected from the structural gene dosage. These studies suggest that, in general, as structural gene dosage increases in multiples of the monoploid complement, the absolute level of gene expression per cell increases. In contrast, addition or subtraction of only a single chromosome arm tends to alter gene expression patterns extensively. The combined results of the euploid and aneuploid studies suggest that aneuploid effects result from an altered stoichiometry of the factors contributing to the mechanisms of gene expression.
机译:先前关于非整倍体中基因表达的研究显示出许多反式剂量效应。每个可变染色体区域的节段非整倍性主要表现出对几个靶基因的逆作用。在这里,剂量调节是在玉米(Zea mays L.)倍性系列中进行的,其中完整的基因组补体是变化的。分析了单倍体,二倍体,三倍体和四倍体植物(分别为1X,2X,3X和4X)的叶片组织中的总RNA,以表达18个基因。对于大多数测试的基因,每个细胞的转录水平与结构基因的剂量直接成正比。也就是说,基于每个基因组,四个倍性之间的表达大致相等。例外情况显示与倍性呈负相关或比结构基因剂量预期的正相关更大。这些研究表明,通常,随着结构基因剂量以单倍体补体的倍数增加,每个细胞中基因表达的绝对水平会增加。相反,仅单个染色体臂的加或减趋于广泛地改变基因表达模式。整倍体和非整倍体研究的综合结果表明,非整倍体效应是由影响基因表达机制的因子的化学计量改变引起的。

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