...
首页> 外文期刊>The Plant Cell >Blue light-dependent interaction between cryptochrome2 and CIB1 regulates transcription and leaf senescence in soybean.
【24h】

Blue light-dependent interaction between cryptochrome2 and CIB1 regulates transcription and leaf senescence in soybean.

机译:cryptochrome2和CIB1之间依赖蓝光的相互作用调节了大豆的转录和叶片衰老。

获取原文
获取原文并翻译 | 示例
           

摘要

Cryptochromes are blue light receptors that regulate light responses in plants, including various crops. The molecular mechanism of plant cryptochromes has been extensively investigated in Arabidopsis thaliana, but it has not been reported in any crop species. Here, we report a study of the mechanism of soybean (Glycine max) cryptochrome2 (CRY2a). We found that CRY2a regulates leaf senescence, which is a life history trait regulated by light and photoperiods via previously unknown mechanisms. We show that CRY2a undergoes blue light-dependent interaction with the soybean basic helix-loop-helix transcription activator CIB1 (for cryptochrome-interacting bHLH1) that specifically interacts with the E-box (CANNTG) DNA sequences. Analyses of transgenic soybean plants expressing an elevated or reduced level of the CRY2a or CIB1 demonstrate that CIB1 promotes leaf senescence, whereas CRY2a suppresses leaf senescence. Results of the gene expression and molecular interaction analyses support the hypothesis that CIB1 activates transcription of senescence-associated genes, such as WRKY DNA BINDING PROTEIN53b (WRKY53b), and leaf senescence. CIB1 interacts with the E-box-containing promoter sequences of the WRKY53b chromatin, whereas photoexcited CRY2a interacts with CIB1 to inhibit its DNA binding activity. These findings argue that CIB-dependent transcriptional regulation is an evolutionarily conserved CRY-signaling mechanism in plants, and this mechanism is opted in evolution to mediate light regulation of different aspects of plant development in different plant species.
机译:隐色染料是蓝光受体,可调节植物(包括各种农作物)中的光响应。植物隐花色素的分子机制已在拟南芥中得到广泛研究,但尚未在任何作物物种中报道。在这里,我们报告大豆(Glycine max)cryptochrome2(CRY2a)的机制的研究。我们发现CRY2a调节叶片衰老,这是一种生活史特征,受光和光周期通过以前未知的机制调节。我们显示,CRY2a经历了与大豆基本螺旋-环-螺旋转录激活剂CIB1(对于与色氨酸相互作用的bHLH1而言)的蓝光依赖性相互作用,该相互作用特别与E-box(CANNTG)DNA序列相互作用。表达升高或降低水平的CRY2a或CIB1的转基因大豆植物的分析表明,CIB1促进叶片衰老,而CRY2a抑制叶片衰老。基因表达和分子相互作用分析的结果支持以下假设:CIB1激活衰老相关基因(如WRKY DNA BINDING PROTEIN53b(WRKY53b))的转录和叶片衰老。 CIB1与WRKY53b染色质的含E-box启动子序列相互作用,而光激发的CRY2a与CIB1相互作用以抑制其DNA结合活性。这些发现表明,依赖CIB的转录调控是植物中一种进化上保守的CRY信号传导机制,并且该机制在进化中被选择为介导不同植物物种中植物发育的不同方面的光调控。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号