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拟南芥雌配子体基因表达图谱揭示了植物和动物配子之间的相似性。

Arabidopsis female gametophyte gene expression map reveals similarities between plant and animal gametes.

机构信息

Institute of Plant Biology and Zürich-Basel Plant Science Center, University of Zürich, Zollikerstrasse 107, 8008 Zürich, Switzerland.

出版信息

Curr Biol. 2010 Mar 23;20(6):506-12. doi: 10.1016/j.cub.2010.01.051. Epub 2010 Mar 11.

Abstract

The development of multicellular organisms is controlled by differential gene expression whereby cells adopt distinct fates. A spatially resolved view of gene expression allows the elucidation of transcriptional networks that are linked to cellular identity and function. The haploid female gametophyte of flowering plants is a highly reduced organism: at maturity, it often consists of as few as three cell types derived from a common precursor [1, 2]. However, because of its inaccessibility and small size, we know little about the molecular basis of cell specification and differentiation in the female gametophyte. Here we report expression profiles of all cell types in the mature Arabidopsis female gametophyte. Differentially expressed posttranscriptional regulatory modules and metabolic pathways characterize the distinct cell types. Several transcription factor families are overrepresented in the female gametophyte in comparison to other plant tissues, e.g., type I MADS domain, RWP-RK, and reproductive meristem transcription factors. PAZ/Piwi-domain encoding genes are upregulated in the egg, indicating a role of epigenetic regulation through small RNA pathways-a feature paralleled in the germline of animals [3]. A comparison of human and Arabidopsis egg cells for enrichment of functional groups identified several similarities that may represent a consequence of coevolution or ancestral gametic features.

摘要

多细胞生物的发育受差异基因表达控制,细胞由此获得不同的命运。对基因表达进行空间解析可以阐明与细胞特性和功能相关的转录网络。有花植物的单倍体雌配子体是一种高度简化的生物体:在成熟时,它通常由三个细胞类型组成,这些细胞均由一个共同的前体衍生而来[1,2]。然而,由于其难以接近和体积小,我们对雌配子体中细胞特化和分化的分子基础知之甚少。在这里,我们报告了成熟拟南芥雌配子体中所有细胞类型的表达谱。差异表达的转录后调控模块和代谢途径特征化了不同的细胞类型。与其他植物组织相比,一些转录因子家族在雌配子体中过表达,例如 I 型 MADS 结构域、RWP-RK 和生殖分生组织转录因子。PAZ/Piwi 结构域编码基因在卵中上调,表明通过小 RNA 途径进行表观遗传调控的作用——这一特征在动物的生殖细胞中也存在[3]。对人类和拟南芥卵细胞进行功能组富集的比较,确定了几个相似之处,这可能代表共同进化或祖先配子特征的结果。

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