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拟南芥种子发育过程中基因活性的全局分析及种子特异性转录因子的鉴定。

Global analysis of gene activity during Arabidopsis seed development and identification of seed-specific transcription factors.

机构信息

Department of Molecular, David Geffen School of Medicine, University of California, Los Angeles, CA 90095, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 May 4;107(18):8063-70. doi: 10.1073/pnas.1003530107. Epub 2010 Apr 12.

Abstract

Most of the transcription factors (TFs) responsible for controlling seed development are not yet known. To identify TF genes expressed at specific stages of seed development, including those unique to seeds, we used Affymetrix GeneChips to profile Arabidopsis genes active in seeds from fertilization through maturation and at other times of the plant life cycle. Seed gene sets were compared with those expressed in prefertilization ovules, germinating seedlings, and leaves, roots, stems, and floral buds of the mature plant. Most genes active in seeds are shared by all stages of seed development, although significant quantitative changes in gene activity occur. Each stage of seed development has a small gene set that is either specific at the level of the GeneChip or up-regulated with respect to genes active at other stages, including those that encode TFs. We identified 289 seed-specific genes, including 48 that encode TFs. Seven of the seed-specific TF genes are known regulators of seed development and include the LEAFY COTYLEDON (LEC) genes LEC1, LEC1-LIKE, LEC2, and FUS3. The rest represent different classes of TFs with unknown roles in seed development. Promoter-beta-glucuronidase (GUS) fusion experiments and seed mRNA localization GeneChip datasets showed that the seed-specific TF genes are active in different compartments and tissues of the seed at unique times of development. Collectively, these seed-specific TF genes should facilitate the identification of regulatory networks that are important for programming seed development.

摘要

大多数负责控制种子发育的转录因子(TFs)尚未被发现。为了鉴定在种子发育的特定阶段表达的 TF 基因,包括那些种子特有的基因,我们使用 Affymetrix GeneChips 来分析在受精后通过成熟以及在植物生命周期的其他时间活跃于种子的拟南芥基因。种子基因集与在受精前的胚珠、萌发的幼苗和成熟植物的叶片、根、茎和花芽中表达的基因集进行了比较。虽然基因活性发生了显著的定量变化,但大多数在种子中活跃的基因都在种子发育的所有阶段共享。每个种子发育阶段都有一个小的基因集,这些基因在 GeneChip 水平上是特异性的,或者相对于在其他阶段活跃的基因(包括编码 TF 的基因)上调。我们鉴定了 289 个种子特异性基因,包括 48 个编码 TF 的基因。七个种子特异性 TF 基因是已知的种子发育调节剂,包括 LEAFY COTYLEDON(LEC)基因 LEC1、LEC1-LIKE、LEC2 和 FUS3。其余的代表不同类别的 TF,它们在种子发育中的作用未知。启动子-β-葡萄糖醛酸酶(GUS)融合实验和种子 mRNA 定位 GeneChip 数据集表明,种子特异性 TF 基因在种子发育的不同时间在种子的不同隔室和组织中活跃。总的来说,这些种子特异性 TF 基因应该有助于鉴定对编程种子发育很重要的调控网络。

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