Guo Mei, Rupe Mary A, Danilevskaya Olga N, Yang Xiaofeng, Hu Zihua
Pioneer Hi-Bred International, Inc., Johnston, IA 50131-0552, USA.
Plant J. 2003 Oct;36(1):30-44. doi: 10.1046/j.1365-313x.2003.01852.x.
We have taken a genomic approach to examine global gene expression in the maize endosperm in relation to dosage and parental effects. Endosperm of eight hybrids generated by reciprocal crosses and their seven inbred parents were sampled at three developmental stages: 10, 14, and 21 days after pollination (DAP). These samples were subjected to GeneCalling, an open-ended mRNA-profiling technology, which simultaneously analyzes thousands of genes. Results indicated that the overall level of gene expression in the maize endosperm was dosage-dependent, that is, the gene expression was proportional to the parental genome contribution of 2n maternal : 1n paternal. However, approximately 8% of the genes deviated from such allelic additive expression and exhibited differential expression in hybrids of reciprocal crosses, resembling either maternally or paternally expressed genes. There were more genes with maternal-like expression (MLE) than those with paternal-like expression (PLE). Allele-specific expression analysis of four selected genes using the WAVE denaturing HPLC (dHPLC) system revealed several mechanisms responsible for the deviation from the allelic additive expression in the hybrid endosperm: heterochronic allelic variation, allelic variation in the level of expression, and genomic imprinting. We discovered a novel imprinted gene no-apical-meristem (NAM) related protein1 (nrp1) that was expressed only in the endosperm and regulated by gene-specific imprinting. The nrp1 gene, a putative transcriptional factor, may play an important role in endosperm development.
我们采用了基因组学方法来研究玉米胚乳中的全局基因表达与剂量和亲本效应的关系。通过正反交产生的八个杂交种及其七个自交亲本的胚乳在授粉后10、14和21天这三个发育阶段进行取样。这些样本采用了一种开放式mRNA谱分析技术——基因呼叫技术进行分析,该技术可同时分析数千个基因。结果表明,玉米胚乳中的基因表达总体水平呈剂量依赖性,即基因表达与亲本基因组贡献2n母本:1n父本成比例。然而,约8%的基因偏离了这种等位基因加性表达,在正反交杂种中表现出差异表达,类似于母本或父本表达的基因。母本样表达(MLE)的基因比父本样表达(PLE)的基因更多。使用WAVE变性高效液相色谱(dHPLC)系统对四个选定基因进行等位基因特异性表达分析,揭示了杂种胚乳中偏离等位基因加性表达的几种机制:异时等位基因变异、表达水平的等位基因变异和基因组印记。我们发现了一个新的印记基因无顶端分生组织(NAM)相关蛋白1(nrp1),它仅在胚乳中表达并受基因特异性印记调控。nrp1基因是一种假定的转录因子,可能在胚乳发育中起重要作用。