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首页> 外文期刊>New Zealand Journal of Crop and Horticultural Science >BrJUB1, a NAC family transcription factor, regulates postharvest leaf senescence of Chinese flowering cabbage through the transcriptional activation of BrCCGs
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BrJUB1, a NAC family transcription factor, regulates postharvest leaf senescence of Chinese flowering cabbage through the transcriptional activation of BrCCGs

机译:BrJUB1 是一种 NAC 家族转录因子,通过转录激活 BrCCGs 调控大白菜采后叶片衰老

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Leaf yellowing caused by chlorophyll degradation directly reduces the commercial quality of post-harvest Chinese flowering cabbage. However, the mechanism of chlorophyll degradation in post-harvest Chinese flowering cabbage remains unclear. In this work, we identified a leaf senescence-responsive NAC family transcription factor, a homologue of JUB1 in Arabidopsis, termed BrJUB1 in post-harvest Chinese flowering cabbage. The expression of BrJUB1 was found to increase continuously during storage time, accompanied by an upregulation of chlorophyll catabolic genes (CCGs) and reduced chlorophyll content. Subcellular localisation and transactivation analyses in tobacco revealed that BrJUB1 possessed two characteristics of transcription factors: nuclear localisation and transactivation of gene activity. More importantly, electrophoretic mobility shift assay and dual-luciferase analysis demonstrated that BrJUB1 bound to NAC recognition sequence in the promoters of major CCGs including BrNYC1, BrPAO, BrPPH1 and BrSGR1, and activated their transcription. Taken together, these findings show that BrJUB1 might act as an important regulator in leaf senescence of post-harvest Chinese flowering cabbage through activating chlorophyll degradation. This study expands our understanding of molecular mechanisms involved in leaf senescence of harvested Chinese cabbage and possibly other leafy vegetables.
机译:叶绿素降解导致的叶片黄变直接降低了采后开花甘蓝的商业品质。然而,收获后开花甘蓝叶绿素降解的机制尚不清楚。在这项工作中,我们鉴定了一种叶片衰老响应的NAC家族转录因子,它是拟南芥中JUB1的同源物,在收获后开花甘蓝中称为BrJUB1。BrJUB1的表达在贮藏期间持续增加,伴有叶绿素分解代谢基因(CCGs)的上调和叶绿素含量的降低。烟草中的亚细胞定位和反式激活分析表明,BrJUB1具有转录因子的两个特征:核定位和基因活性的反式激活。更重要的是,电泳迁移率位移试验和双荧光素酶分析表明,BrJUB1与BrNYC1、BrPAO、BrPPH1和BrSGR1等主要CCGs启动子的NAC识别序列结合,并激活了它们的转录。综上所述,BrJUB1可能通过激活叶绿素降解,成为收获后开花甘蓝叶片衰老的重要调节因子。这项研究扩展了我们对收获的大白菜和其他叶类蔬菜叶片衰老的分子机制的理解。

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