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首页> 外文期刊>Plant and cell physiology >Expression and Protein Interaction Analyses Reveal Combinatorial Interactions of LBD Transcription Factors During Arabidopsis Pollen Development
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Expression and Protein Interaction Analyses Reveal Combinatorial Interactions of LBD Transcription Factors During Arabidopsis Pollen Development

机译:表达和蛋白质相互作用分析揭示拟南芥花粉发育过程中LBD转录因子的组合相互作用。

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LATERAL ORGAN BOUNDARIES DOMAIN (LBD) transcription factor gene family members play key roles in diverse aspects of plant development. LBD10 and LBD27 have been shown to be essential for pollen development in Arabidopsis thaliana. From the previous RNA sequencing (RNA-Seq) data set of Arabidopsis pollen, we identified the mRNAs of LBD22, LBD25 and LBD36 in addition to LBD10 and LBD27 in Arabidopsis pollen. Here we conducted expression and cellular analysis using GFP: GUS (green fluorescent protein: b-glucuronidase) reporter gene and subcellular localization assays using LBD: GFP fusion proteins expressed under the control of their own promoters in Arabidopsis. We found that these LBD proteins display spatially and temporally distinct and overlapping expression patterns during pollen development. Bimolecular fluorescence complementation and GST (glutathione S-transferase) pull-down assays demonstrated that protein-protein interactions occur among the LBDs exhibiting overlapping expression during pollen development. We further showed that LBD10, LBD22, LBD25, LBD27 and LBD36 interact with each other to form heterodimers, which are localized to the nucleus in Arabidopsis protoplasts. Taken together, these results suggest that combinatorial interactions among LBD proteins may be important for their function in pollen development in Arabidopsis.
机译:横向器官边界域(LBD)转录因子基因家族成员在植物发育的各个方面起着关键作用。 LBD10和LBD27已被证明对于拟南芥花粉发育至关重要。从拟南芥花粉的先前RNA测序(RNA-Seq)数据集中,我们除了拟南芥花粉中的LBD10和LBD27外,还鉴定了LBD22,LBD25和LBD36的mRNA。在这里,我们使用GFP:GUS(绿色荧光蛋白:b-葡糖醛酸糖苷酶)报道基因进行表达和细胞分析,并使用拟南芥中由其自身启动子控制表达的LBD:GFP融合蛋白进行亚细胞定位分析。我们发现这些LBD蛋白在花粉发育过程中显示出时空上不同的和重叠的表达模式。双分子荧光互补和GST(谷胱甘肽S-转移酶)下拉试验表明,在花粉发育过程中表现出重叠表达的LBD之间发生蛋白质-蛋白质相互作用。我们进一步表明,LBD10,LBD22,LBD25,LBD27和LBD36相互作用形成异二聚体,它们位于拟南芥原生质体的核中。两者合计,这些结果表明,LBD蛋白之间的组合相互作用可能对其在拟南芥花粉发育中的功能很重要。

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