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拟南芥 WRKY2 和 WRKY34 转录因子与 VQ20 蛋白相互作用,调节花粉发育和功能。

Arabidopsis WRKY2 and WRKY34 transcription factors interact with VQ20 protein to modulate pollen development and function.

机构信息

Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Kunming, Yunnan, 650223, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Plant J. 2017 Sep;91(6):962-976. doi: 10.1111/tpj.13619. Epub 2017 Jul 20.

Abstract

Plant male gametogenesis is tightly regulated, and involves complex and precise regulations of transcriptional reprogramming. WRKY transcription factors have been demonstrated to play critical roles in plant development and stress responses. Several members of this family physically interact with VQ motif-containing proteins (VQ proteins) to mediate a plethora of programs in Arabidopsis; however, the involvement of WRKY-VQ complexes in plant male gametogenesis remains largely unknown. In this study, we found that WRKY2 and WKRY34 interact with VQ20 both in vitro and in vivo. Further experiments displayed that the conserved VQ motif of VQ20 is responsible for their physical interactions. The VQ20 protein localizes in the nucleus and specifically expresses in pollens. Phenotypic analysis showed that WRKY2, WRKY34 and VQ20 are crucial for pollen development and function. Mutations of WRKY2, WRKY34 and VQ20 simultaneously resulted in male sterility, with defects in pollen development, germination and tube growth. Further investigation revealed that VQ20 affects the transcriptional functions of its interacting WRKY partners. Complementation evidence supported that the VQ motif of VQ20 is essential for pollen development, as a mutant form of VQ20 in which LVQK residues in the VQ motif were replaced by EDLE did not rescue the phenotype of the w2-1 w34-1 vq20-1 triple-mutant plants. Further expression analysis indicated that WRKY2, WRKY34 and VQ20 co-modulate multiple genes involved in pollen development, germination and tube growth. Taken together, our study provides evidence that VQ20 acts as a key partner of WRKY2 and WKRY34 in plant male gametogenesis.

摘要

植物雄性配子体发生受到严格调控,涉及转录重编程的复杂和精确调节。WRKY 转录因子已被证明在植物发育和应激反应中发挥关键作用。该家族的几个成员与含有 VQ 基序的蛋白质(VQ 蛋白)物理相互作用,在拟南芥中介导众多程序;然而,WRKY-VQ 复合物在植物雄性配子体发生中的参与在很大程度上仍然未知。在这项研究中,我们发现 WRKY2 和 WKRY34 在体外和体内均与 VQ20 相互作用。进一步的实验表明,VQ20 的保守 VQ 基序负责它们的物理相互作用。VQ20 蛋白定位于细胞核中,特异性表达在花粉中。表型分析表明,WRKY2、WRKY34 和 VQ20 对于花粉发育和功能至关重要。WRKY2、WRKY34 和 VQ20 的突变同时导致雄性不育,花粉发育、萌发和管生长缺陷。进一步的研究表明,VQ20 影响其相互作用的 WRKY 伙伴的转录功能。互补证据表明,VQ20 的 VQ 基序对于花粉发育至关重要,因为 VQ 基序中 LVQK 残基被 EDLE 取代的 VQ20 突变体形式不能挽救 w2-1 w34-1 vq20-1 三突变体植物的表型。进一步的表达分析表明,WRKY2、WRKY34 和 VQ20 共同调节参与花粉发育、萌发和管生长的多个基因。总之,我们的研究提供了证据表明 VQ20 作为 WRKY2 和 WKRY34 在植物雄性配子体发生中的关键伴侣。

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