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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >Expression analysis of the Arabidopsis thaliana AtSpen2 gene, and its relationship with other plant genes encoding Spen proteins
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Expression analysis of the Arabidopsis thaliana AtSpen2 gene, and its relationship with other plant genes encoding Spen proteins

机译:拟南芥AtSpen2基因的表达分析及其与编码Spen蛋白的其他植物基因的关系

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摘要

Proteins of the Split ends (Spen) family are characterized by an N-terminal domain, with one or more RNA recognition motifs and a SPOC domain. In Arabidopsis thaliana, the Spen protein FPA is involved in the control of flowering time as a component of an autonomous pathway independent of photoperiod. The A. thaliana genome encodes another gene for a putative Spen protein at the locus At4g12640, herein named AtSpen2. Bioinformatics analysis of the AtSPEN2 SPOC domain revealed low sequence similarity with the FPA SPOC domain, which was markedly lower than that found in other Spen proteins from unrelated plant species. To provide experimental information about the function of AtSpen2, A. thaliana plants were transformed with gene constructs of its promoter region with uidA::gfp reporter genes; the expression was observed in vascular tissues of leaves and roots, as well as in ovules and developing embryos. There was absence of a notable phenotype in knockout and overexpressing lines, suggesting that its function in plants might be specific to certain endogenous or environmental conditions. Our results suggest that the function of Atspen2 diverged from that of fpa due in part to their different transcription expression pattern and divergence of the regulatory SPOC domain.
机译:分叉末端(Spen)家族的蛋白质的特征是具有一个或多个RNA识别基序和SPOC域的N末端域。在拟南芥中,Spen蛋白FPA作为独立于光周期的自主途径的一部分,参与了开花时间的控制。拟南芥基因组在位点At4g12640编码一个假定的Spen蛋白的另一种基因,在本文中称为AtSpen2。 AtSPEN2 SPOC结构域的生物信息学分析显示,其与FPA SPOC结构域的序列相似性低,这显着低于不相关植物物种的其他Spen蛋白中的相似性。为了提供有关AtSpen2功能的实验信息,将拟南芥植物用其具有uidA :: gfp报告基因的启动子区域的基因构建体转化。在叶和根的维管组织,胚珠和发育中的胚胎中观察到该表达。在敲除和过表达品系中没有明显的表型,这表明其在植物中的功能可能对某些内源或环境条件具有特异性。我们的结果表明,Atspen2的功能与fpa的功能不同,部分原因是它们的转录表达方式不同以及调节性SPOC域的差异。

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