Twell D, Yamaguchi J, McCormick S
Plant Gene Expression Center, USDA-ARS/UC-Berkeley, Albany, CA 94710.
Development. 1990 Jul;109(3):705-13. doi: 10.1242/dev.109.3.705.
To investigate the regulation of gene expression during male gametophyte development, we analyzed the promoter activity of two different genes (LAT52 and LAT59) from tomato, isolated on the basis of their anther-specific expression. In transgenic tomato, tobacco and Arabidopsis plants containing the LAT52 promoter region fused to the beta-glucuronidase (GUS) gene, GUS activity was restricted to pollen. Transgenic tomato, tobacco and Arabidopsis plants containing the LAT59 promoter region fused to GUS also showed very high levels of GUS activity in pollen. However, low levels of expression of the LAT59 promoter construct were also detected in seeds and roots. With both constructs, the appearance of GUS activity in developing anthers was correlated with the onset of microspore mitosis and increased progressively until anthesis (pollen shed). Our results demonstrate co-ordinate regulation of the LAT52 and LAT59 promoters in developing microspores and suggest that the mechanisms that regulate pollen-specific gene expression are evolutionarily conserved.
为了研究雄配子体发育过程中的基因表达调控,我们分析了番茄中两个基于花药特异性表达分离出的不同基因(LAT52和LAT59)的启动子活性。在含有与β-葡萄糖醛酸酶(GUS)基因融合的LAT52启动子区域的转基因番茄、烟草和拟南芥植株中,GUS活性局限于花粉。含有与GUS融合的LAT59启动子区域的转基因番茄、烟草和拟南芥植株在花粉中也表现出非常高的GUS活性水平。然而,在种子和根中也检测到LAT59启动子构建体的低水平表达。对于这两种构建体,发育中的花药中GUS活性的出现与小孢子有丝分裂的开始相关,并逐渐增加直至开花期(花粉散落)。我们的结果证明了LAT52和LAT59启动子在发育中的小孢子中的协同调控,并表明调节花粉特异性基因表达的机制在进化上是保守的。