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花粉表达的bZIP蛋白相互作用的表征以及ATbZIP18在雄配子体中的作用。

Characterization of pollen-expressed bZIP protein interactions and the role of ATbZIP18 in the male gametophyte.

作者信息

Gibalová Antónia, Steinbachová Lenka, Hafidh Said, Bláhová Veronika, Gadiou Zuzana, Michailidis Christos, Műller Karel, Pleskot Roman, Dupľáková Nikoleta, Honys David

机构信息

Laboratory of Pollen Biology, Institute of Experimental Botany AS CR, v. v. i., Rozvojová 263, 165 02, Prague 6, Czech Republic.

Department of Physiology, Faculty of Science, Charles University in Prague, Viničná 7, 128 44, Prague 2, Czech Republic.

出版信息

Plant Reprod. 2017 Mar;30(1):1-17. doi: 10.1007/s00497-016-0295-5. Epub 2016 Nov 28.

Abstract

KEY MESSAGE

bZIP TF network in pollen. Transcriptional control of gene expression represents an important mechanism guiding organisms through developmental processes and providing plasticity towards environmental stimuli. Because of their sessile nature, plants require effective gene regulation for rapid response to variation in environmental and developmental conditions. Transcription factors (TFs) provide such control ensuring correct gene expression in spatial and temporal manner. Our work reports the interaction network of six bZIP TFs expressed in Arabidopsis thaliana pollen and highlights the potential functional role for AtbZIP18 in pollen. AtbZIP18 was shown to interact with three other pollen-expressed bZIP TFs-AtbZIP34, AtbZIP52, and AtbZIP61 in yeast two-hybrid assays. AtbZIP18 transcripts are highly expressed in pollen, and at the subcellular level, an AtbZIP18-GFP fusion protein was located in the nucleus and cytoplasm/ER. To address the role of AtbZIP18 in the male gametophyte, we performed phenotypic analysis of a T-DNA knockout allele, which showed slightly reduced transmission through the male gametophyte. Some of the phenotype defects in atbzip18 pollen, although observed at low penetrance, were similar to those seen at higher frequency in the T-DNA knockout of the interacting partner, AtbZIP34. To gain deeper insight into the regulatory role of AtbZIP18, we analysed atbzip18/- pollen microarray data. Our results point towards a potential repressive role for AtbZIP18 and its functional redundancy with AtbZIP34 in pollen.

摘要

关键信息

花粉中的bZIP转录因子网络。基因表达的转录调控是引导生物体经历发育过程并对环境刺激产生可塑性的重要机制。由于植物固着的特性,它们需要有效的基因调控来快速响应环境和发育条件的变化。转录因子以时空方式确保正确的基因表达,从而实现这种调控。我们的研究报告了拟南芥花粉中表达的6种bZIP转录因子的相互作用网络,并强调了AtbZIP18在花粉中的潜在功能作用。在酵母双杂交实验中,AtbZIP18被证明与另外3种在花粉中表达的bZIP转录因子AtbZIP34、AtbZIP52和AtbZIP61相互作用。AtbZIP18转录本在花粉中高度表达,在亚细胞水平上,AtbZIP18-GFP融合蛋白定位于细胞核和细胞质/内质网中。为了研究AtbZIP18在雄配子体中的作用,我们对一个T-DNA敲除等位基因进行了表型分析,结果显示其通过雄配子体的传递略有减少。尽管在低外显率下观察到AtbZIP18花粉中的一些表型缺陷,但这些缺陷与相互作用伙伴AtbZIP34的T-DNA敲除中高频出现的缺陷相似。为了更深入地了解AtbZIP18的调控作用,我们分析了atbzip18/-花粉微阵列数据。我们的结果表明AtbZIP18在花粉中可能具有抑制作用,并且与AtbZIP34存在功能冗余。

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