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Identification of Cis-Regulatory Sequences Controlling Pollen-Specific Expression of Hydroxyproline-Rich Glycoprotein Genes in

机译:控制富含富脯氨酸富含糖蛋白基因的花粉特异性表达的顺式调节序列

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摘要

Hydroxyproline-rich glycoproteins (HRGPs) are a superfamily of plant cell wall structural proteins that function in various aspects of plant growth and development, including pollen tube growth. We have previously characterized protein sequence signatures for three family members in the HRGP superfamily: the hyperglycosylated arabinogalactan-proteins (AGPs), the moderately glycosylated extensins (EXTs), and the lightly glycosylated proline-rich proteins (PRPs). However, the mechanism of pollen-specific HRGP gene expression remains unexplored. To this end, we developed an integrative analysis pipeline combining RNA-seq gene expression and promoter sequences to identify cis-regulatory motifs responsible for pollen-specific expression of HRGP genes in Arabidopsis thaliana. Specifically, we mined the public RNA-seq datasets and identified 13 pollen-specific HRGP genes. Ensemble motif discovery identified 15 conserved promoter elements between A.thaliana and A. lyrata. Motif scanning revealed two pollen related transcription factors: GATA12 and brassinosteroid (BR) signaling pathway regulator BZR1. Finally, we performed a regression analysis and demonstrated that the 15 motifs provided a good model of HRGP gene expression in pollen (R = 0.61). In conclusion, we performed the first integrative analysis of cis-regulatory motifs in pollen-specific HRGP genes, revealing important insights into transcriptional regulation in pollen tissue.
机译:富羟脯氨酸富含糖蛋白(HRGPS)是植物细胞壁结构蛋白的超家族,其在植物生长和发育的各个方面起作用,包括花粉管生长。我们之前的特征在于HRGP超家族中的三个家庭成员的蛋白质序列签名:高糖基化的阿拉伯乳糖蛋白(AGPS),适度糖基化的延长素(exts)和轻质糖基化的富含脯氨酸富蛋白(PRPS)。然而,花粉特异性HRGP基因表达的机制仍未探讨。为此,我们开发了一种结合RNA-SEQ基因表达和启动子序列的一体化分析管线,以鉴定负责拟南芥中HRGP基因的花粉特异性表达的顺式调节基序。具体而言,我们开采公共RNA-SEQ数据集并确定了13种Pollen特异性HRGP基因。集合图案发现鉴定了A之间的15个保守的启动子元素。Thaliana和A. Lyrata。图案扫描显示出两种花粉相关转录因子:GATA12和Brassinosteroid(Br)信号通路调节器BZR1。最后,我们进行了回归分析并证明了15个基因在花粉中提供了HRGP基因表达的良好模型(R = 0.61)。总之,我们对花粉特异性HRGP基因进行了CIS-inuctualatoration基序的第一种综合分析,揭示了花粉组织中转录调控的重要见解。

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