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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Cis-transcriptional Variation in Maize Inbred Lines B73 and Mo17 Leads to Additive Expression Patterns in the F1 Hybrid
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Cis-transcriptional Variation in Maize Inbred Lines B73 and Mo17 Leads to Additive Expression Patterns in the F1 Hybrid

机译:玉米自交系B73和Mo17的顺式转录变异导致F1杂种的加性表达模式

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Microarray analysis of gene expression patterns in immature ear, seedling, and embryo tissues from the maize inbred lines B73 and Mo17 identified numerous genes with variable expression. Some genes had detectable expression in only one of the two inbreds; most of these genes were detected in the genomic DNA of both inbreds, indicating that the expression differences are likely caused by differential regulation rather than by differences in gene content. Gene expression was also monitored in the reciprocal F1 hybrids B73 × Mo17 and Mo17 × B73. The reciprocal F1 hybrid lines did not display parental effects on gene expression levels. Approximately 80% of the differentially expressed genes displayed additive expression patterns in the hybrids relative to the inbred parents. The ~20% of genes that display nonadditive expression patterns tend to be expressed at levels within the parental range, with minimal evidence for novel expression levels greater than the high parent or less than the low parent. Analysis of allele-specific expression patterns in the hybrid suggested that intraspecific variation in gene expression levels is largely attributable to cis -regulatory variation in maize. Collectively, our data suggest that allelic cis -regulatory variation between B73 and Mo17 dictates maintenance of inbred allelic expression levels in the F1 hybrid, resulting in additive expression patterns.
机译:玉米自交系B73和Mo17的未成熟穗,幼苗和胚组织中基因表达模式的微阵列分析确定了许多表达可变的基因。某些基因仅在两个近交系之一中具有可检测的表达。这些基因中的大多数基因都在两个自交系的基因组DNA中检测到,这表明表达差异可能是由于差异调控而不是基因含量差异引起的。还监测了倒数F1杂种B73×Mo17和Mo17×B73的基因表达。相互的F1杂种系对基因表达水平没有亲本作用。相对于近交亲本,大约80%的差异表达基因在杂种中表现出加性表达模式。表现出非加性表达模式的基因中约有20%倾向于在亲本范围内表达,而很少有证据表明新表达水平高于高亲本或低于低亲本。对杂种中等位基因特异性表达模式的分析表明,基因表达水平的种内变异主要归因于玉米的顺式调控变异。总体而言,我们的数据表明,B73和Mo17之间的等位基因顺式调节变异决定了F1杂种中近交等位基因表达水平的维持,从而导致加性表达模式。

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