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A group VII ethylene response factor gene, ZmEREB180, coordinates waterlogging tolerance in maize seedlings

机译:第五组乙烯响应因子基因,Zmereb180,玉米幼苗的耐涝耐受性

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Group VII ethylene response factors (ERFVIIs) play important roles in ethylene signalling and plant responses to flooding. However, natural ERFVII variations in maize (ZmERFVIIs) that are directly associated with waterlogging tolerance have not been reported. Here, a candidate gene association analysis of the ZmERFVII gene family showed that a waterlogging‐responsive gene, ZmEREB180, was tightly associated with waterlogging tolerance. ZmEREB180 expression specifically responded to waterlogging and was up‐regulated by ethylene; in addition, its gene product localized to the nucleus. Variations in the 5?‐untranslated region (5?‐UTR) and mRNA abundance of this gene under waterlogging conditions were significantly associated with survival rate (SR). Ectopic expression of ZmEREB180 in Arabidopsis increased the SR after submergence stress, and overexpression of ZmEREB180 in maize also enhanced the SR after long‐term waterlogging stress, apparently through enhanced formation of adventitious roots (ARs) and regulation of antioxidant levels. Transcriptomic assays of the transgenic maize line under normal and waterlogged conditions further provided evidence that ZmEREB180 regulated AR development and reactive oxygen species homeostasis. Our study provides direct evidence that a ZmERFVII gene is involved in waterlogging tolerance. These findings could be applied directly to breed waterlogging‐tolerant maize cultivars and improve our understanding of waterlogging stress.
机译:第六族乙烯响应因子(ERFVIIS)在乙烯信号传导和植物反应中起重要作用。然而,尚未报告与涝耐力直接相关的玉米(Zmerfviis)的自然ERFVII变化。这里,Zmerfvii基因家族的候选基因关联分析表明,与涝耐药有紧密相关的耐涝响应基因ZMEREB180。 Zmereb180表达具体响应涝渍,并由乙烯上调;此外,其基因产物本地化为细胞核。在水岭条件下该基因的5·-Unransated区域(5→-UTR)和mRNA丰度的变化与存活率(SR)显着相关。拟南芥中Zmereb180的异位表达增加了淹没应激后的Sr,玉米Zmereb180的过表达也增强了长期涝膏后的Sr,显然是通过增强的不定根(ARS)的形成和抗氧化水平的调节。正常和涝渍条件下转基因玉米系的转录组测定进一步提供了Zmereb180调节的AR发育和反应性氧气稳态。我们的研究提供了直接证据,即Zmerfvii基因参与涝脂性耐受性。这些发现可以直接应用于滋生耐涝性玉米品种,并改善我们对涝渍压力的理解。

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