Stupar Robert M, Hermanson Peter J, Springer Nathan M
Center for Plant and Microbial Genomics, Department of Plant Biology, University of Minnesota, St. Paul, Minnesota 55108, USA.
Plant Physiol. 2007 Oct;145(2):411-25. doi: 10.1104/pp.107.101428. Epub 2007 Aug 31.
Plant endosperm cells have a nuclear ratio of two maternal genomes to one paternal genome. This 2 to 1 dosage relationship provides a unique system for studying the additivity of gene expression levels in reciprocal hybrids. A combination of microarray profiling and allele-specific expression analysis was performed using RNA isolated from endosperm tissues of maize (Zea mays) inbred lines B73 and Mo17 and their reciprocal hybrids at two developmental stages, 13 and 19 d after pollination. The majority of genes exhibited additive expression in reciprocal hybrids based on microarray analyses. However, a substantial number of genes exhibited nonadditive expression patterns, including maternal like, paternal like, high parent like, low parent like, and expression patterns outside the range of the parental inbreds. The frequency of hybrid expression patterns outside of the parental range in maize endosperm tissue is much higher than that observed for vegetative tissues. For a set of 90 genes, allele-specific expression assays were employed to monitor allelic bias and regulatory variation. Eight of these genes exhibited evidence for maternally or paternally biased expression at multiple stages of endosperm development and are potential examples of differential imprinting. Our data indicate that parental effects on gene expression are much stronger in endosperm than in vegetative tissues.
植物胚乳细胞的核基因组比例为两个母本基因组比一个父本基因组。这种2:1的剂量关系为研究正反交杂种中基因表达水平的加性提供了一个独特的系统。使用从玉米(Zea mays)自交系B73和Mo17及其正反交杂种授粉后13天和19天这两个发育阶段的胚乳组织中分离的RNA,进行了微阵列分析和等位基因特异性表达分析的组合。基于微阵列分析,大多数基因在正反交杂种中表现出加性表达。然而,相当数量的基因表现出非加性表达模式,包括母本样、父本样、高亲本样、低亲本样以及超出亲本自交系范围的表达模式。玉米胚乳组织中超出亲本范围的杂种表达模式的频率远高于营养组织中观察到的频率。对于一组90个基因,采用等位基因特异性表达测定来监测等位基因偏差和调控变异。其中8个基因在胚乳发育的多个阶段表现出母本或父本偏向表达的证据,是差异印记的潜在例子。我们的数据表明,亲本对基因表达的影响在胚乳中比在营养组织中要强得多。