首页> 外文OA文献 >Transgenic tobacco plants expressing the Drosophila Polycomb (Pc) chromodomain show developmental alterations: possible role of Pc chromodomain proteins in chromatin-mediated gene regulation in plants.
【2h】

Transgenic tobacco plants expressing the Drosophila Polycomb (Pc) chromodomain show developmental alterations: possible role of Pc chromodomain proteins in chromatin-mediated gene regulation in plants.

机译:表达果蝇Polycomb(Pc)染色体结构域的转基因烟草植物显示发育变化:Pc染色体结构域蛋白在植物的染色质介导的基因调控中的可能作用。

摘要

The chromodomain of the Drosophila Polycomb (Pc) protein has been introduced into tobacco nuclei to determine its location in the nucleus and its effect on plant development. Pc is a repressor of homeotic Drosophila genes that shares a well-conserved, although not identical, chromodomain with a structural heterochromatin component, Heterochromatin Protein 1. The chromodomains might therefore play a common role in chromatin repression. An analysis of transgenic plants expressing the Pc chromodomain, which was linked to the green fluorescent protein, suggested that the Pc chromodomain has distinct target regions in the plant genome. Transgenic plants expressing the Pc chromodomain had phenotypic abnormalities in their leaves and flowers, indicating a disruption in development. In axillary shoot buds of plants displaying altered leaf phenotypes, enhanced expression of a homeodomain gene, which is downregulated in wild-type leaves, was found. In Drosophila, Pc has been shown to possess distinct chromosome binding activity and to be involved in the regulation of development-specific genes. Our results support the assumptions that the heterologous chromodomain affects related functions in Drosophila and in plants, and that chromatin modification mechanisms are involved in the regulation of certain plant genes, in a manner similar to chromatin-mediated gene regulation in Drosophila.
机译:果蝇Polycomb(Pc)蛋白的色域已被引入烟草核中,以确定其在核中的位置及其对植物发育的影响。 Pc是同源果蝇基因的阻遏物,与具有结构异染色质成分的异染色质蛋白1共享一个保守性好,但不完全相同的染色质域。因此,该染色质域可能在染色质抑制中起着共同的作用。对表达与绿色荧光蛋白相连的Pc染色体结构域的转基因植物的分析表明,Pc染色体结构域在植物基因组中具有不同的靶标区域。表达Pc染色体结构域的转基因植物的叶和花具有表型异常,表明发育受到破坏。在显示出改变的叶表型的植物的腋芽中,发现了同源域基因的增强表达,该基因在野生型叶片中被下调。在果蝇中,Pc已显示具有独特的染色体结合活性,并参与发育特异性基因的调控。我们的结果支持以下假设,即异源染色体域影响果蝇和植物中的相关功能,并且染色质修饰机制以类似于果蝇中染色质介导的基因调控的方式参与某些植物基因的调控。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号