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The vernalization-induced long non-coding RNA VAS functions with the transcription factor TaRF2b to promote TaVRN1 expression for flowering in hexaploid wheat 被引量:11
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作者 Shujuan Xu Qi Dong +9 位作者 Min Deng Dexing Lin Jun Xiao Peilei Cheng lijing xing Yuda Niu Caixia Gao Wenhao Zhang Yunyuan Xu Kang Chong 《Molecular Plant》 SCIE CAS CSCD 2021年第9期1525-1538,共14页
Vernalization is a physiological process in which prolonged cold exposure establishes flowering competence in winter plants. In hexaploid wheat, TaVRN1 is a cold-induced key regulator that accelerates floral transitio... Vernalization is a physiological process in which prolonged cold exposure establishes flowering competence in winter plants. In hexaploid wheat, TaVRN1 is a cold-induced key regulator that accelerates floral transition. However, the molecular mechanism underlying the gradual activation of TaVRN1 during the vernalization process remains unknown. In this study, we identified the novel transcript VAS (TaVRN1 alternative splicing) as a non-coding RNA derived from the sense strand of the TaVRN1 gene only in winter wheat, which regulates TaVRN1 transcription for flowering. VAS was induced during the early period of vernalization, and its overexpression promoted TaVRN1 expression to accelerate flowering in winter wheat. VAS physically associates with TaRF2b and facilitates docking of the TaRF2b-TaRF2a complex at the TaVRN1 promoter during the middle period of vernalization. TaRF2b recognizes the Sp1 motif within the TaVRN1 proximal promoter region, which is gradually exposed along with the disruption of a loop structure at the TaVRN1 locus during vernalization, to activate the transcription of TaVRN1. The tarf2b mutants exhibited delayed flowering, whereas transgenic wheat lines overexpressing TaRF2b showed earlier flowering. Taken together, our data reveal a distinct regulatory mechanism by which a long non-coding RNA facilitates the transcription factor targeting to regulate wheat flowering, providing novel insights into the vernalization process and a potential target for wheat genetic improvement. 展开更多
关键词 winter wheat VERNALIZATION FLOWERING long non-coding RNA chromosome loop
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O-linked β-N-acetylglucosamine modification and its biological functions 被引量:1
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作者 Yan Liu Shaojun Dai +2 位作者 lijing xing Yunyuan Xu Kang Chong 《Science Bulletin》 SCIE EI CAS CSCD 2015年第12期1055-1061,I0002,共8页
到蛋白质的 Ser/Thr 残余的连接 O 的 -N-acetylglucosamine (O-GlcNAc ) 的共有原子价附件在原子核和细胞质充当不仅 posttranslational 修正而且一个营养的传感器,它直接调整基因和多重关键信号 transduction 小径的表示。在 Ser/Thr... 到蛋白质的 Ser/Thr 残余的连接 O 的 -N-acetylglucosamine (O-GlcNAc ) 的共有原子价附件在原子核和细胞质充当不仅 posttranslational 修正而且一个营养的传感器,它直接调整基因和多重关键信号 transduction 小径的表示。在 Ser/Thr 残余的动态 O-GlcNAcylation 被二关键酶, O-GlcNAc transferase (OGT ) 和 O-GlcNAcase 催化,它分别地为 O-GlcNAc 修正的增加和移动负责。O-GlcNAc 修正在在动物的细胞的发信号起重要作用,特别在人的疾病。在植物的 OGT 的二 orthologs,敌探并且细长纤弱,被报导了涉及多样的植物过程。然而与在动物揭示的功能的机制相比,蛋白质 O-GlcNAc 的后果在植物的修正大部分是未知的,并且在 O-GlcNAcylation 之间的关系和细胞的过程需要被探索。在这评论,我们在动物在 O-GlcNAc 修正和它的生物功能上总结了最近的进展, O-GlcNAc 的更特殊的功能的植物,和前景将在植物被揭示。 展开更多
关键词 生物学功能 乙酰氨基 葡糖胺 翻译后修饰 改性 信号转导通路 细胞信号转导 营养传感器
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