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多梳蛋白家族在雌配子体中发挥作用,以决定植物种子的发育。

Polycomb group proteins function in the female gametophyte to determine seed development in plants.

作者信息

Leroy Olivier, Hennig Lars, Breuninger Holger, Laux Thomas, Köhler Claudia

机构信息

Institute of Plant Sciences and Zürich-Base Plant Science Center, Swiss Federal Institute of Technology, ETH Centre, CH-8092 Zürich, Switzerland.

出版信息

Development. 2007 Oct;134(20):3639-48. doi: 10.1242/dev.009027. Epub 2007 Sep 12.

Abstract

Polycomb group (PcG) proteins are evolutionary conserved proteins that stably maintain established transcriptional patterns over cell generations. The FERTILIZATION INDEPENDENT SEED (FIS) PcG complex from plants has a similar composition to the Polycomb repressive complex 2 from animals. Mutations in FIS genes cause parent-of-origin-dependent seed abortion. Every seed inheriting a mutant fis allele from the mother is destined to abort, regardless of the presence of a wild-type paternal allele. We tested in Arabidopsis whether the parent-of-origin-dependent seed abortion caused by lack of the FIS subunit MSI1 is caused by parental imprinting of the MSI1 gene. Our data show that MSI1 is not an imprinted gene and that early paternal MSI1 expression is not sufficient to rescue msi1 mutant seeds. By contrast, expression of MSI1 in msi1 female gametophytes is necessary to restore normal seed development, strongly arguing that the female gametophytic effect of fis mutants is caused by a functional requirement for an intact FIS complex in the female gametophyte. Thus, FIS-mediated expression patterns established in the female gametophyte can impact on seed development, establishing fis mutants as true female gametophytic maternal-effect mutants.

摘要

多梳蛋白家族(PcG)是进化保守蛋白,可在细胞世代中稳定维持已建立的转录模式。植物中的非受精种子(FIS)PcG复合物与动物中的多梳抑制复合物2具有相似的组成。FIS基因的突变会导致亲本来源依赖性种子败育。从母本继承突变fis等位基因的每个种子都注定会败育,无论父本等位基因是否为野生型。我们在拟南芥中测试了由于缺乏FIS亚基MSI1而导致的亲本来源依赖性种子败育是否由MSI1基因的亲本印记引起。我们的数据表明,MSI1不是印记基因,早期父本MSI1表达不足以挽救msi1突变体种子。相比之下,在msi1雌配子体中表达MSI1对于恢复正常种子发育是必要的,这有力地表明fis突变体的雌配子体效应是由雌配子体中完整FIS复合物的功能需求引起的。因此,在雌配子体中建立的FIS介导的表达模式可以影响种子发育,从而将fis突变体确立为真正的雌配子体母性效应突变体。

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