College of Agronomy, Northwest Agriculture and Forestry University, Yangling, Shaanxi, 712100, People's Republic of China.
CSIRO Agriculture and Food, 306 Carmody Rd., St Lucia, QLD, 4067, Australia.
Plant Cell Rep. 2018 Feb;37(2):225-237. doi: 10.1007/s00299-017-2224-y. Epub 2017 Oct 27.
TaRNAC1 is a constitutively and predominantly root-expressed NAC transcription factor. TaRNAC1 overexpression in wheat roots confers increased root length, biomass and drought tolerance and improved grain yield under water limitation. A large and deep root system is an important trait for yield sustainability of dryland cereal crops in drought-prone environments. This study investigated the role of a predominantly root-expressed NAC transcription factor from wheat (TaRNAC1) in the root growth. Expression analysis showed that TaRNAC1 was a constitutively expressed gene with high level expression in the roots and was not drought-upregulated. Overexpression of TaRNAC1 in wheat using a predominantly root-expressed promoter resulted in increased root length and biomass observed at the early growth stage and a marked increase in the maturity root biomass with dry root weight of > 70% higher than that of the wild type plants. Analysis of some root growth-related genes revealed that the expression level of GA3-ox2, which encodes GIBBERELLIN 3-OXIDASE catalysing the conversion of inactive gibberellin (GA) to active GA, was elevated in the roots of transgenic wheat. TaRNAC1 overexpressing transgenic wheat showed more dehydration tolerance under polyethylene glycol (PEG) treatment and produced more aboveground biomass and grain under water-limited conditions than the wild type plants. These data suggest that TaRNAC1 may play a role in root growth and be used as a molecular tool for potential enlargement of root system in wheat.
TaRNAC1 是一个组成型和主要在根中表达的 NAC 转录因子。在小麦根中过表达 TaRNAC1 可增加根长、生物量和耐旱性,并在水分限制下提高产量。在易发生干旱的环境中,具有庞大而深的根系是旱地谷类作物产量可持续性的重要特征。本研究调查了一个主要在根中表达的 NAC 转录因子(来自小麦的 TaRNAC1)在根生长中的作用。表达分析表明,TaRNAC1 是一个组成型表达的基因,在根中高水平表达,且不受干旱诱导。使用主要在根中表达的启动子在小麦中过表达 TaRNAC1,导致在早期生长阶段观察到根长和生物量增加,并且在成熟时根生物量显著增加,干根重比野生型植物高 70%以上。对一些根生长相关基因的分析表明,编码 GIBBERELLIN 3-OXIDASE 的 GA3-ox2 的表达水平升高,GA3-ox2 催化将不活跃的赤霉素(GA)转化为活跃的 GA。TaRNAC1 过表达的转基因小麦在聚乙二醇(PEG)处理下表现出更强的耐旱性,并且在水分限制条件下比野生型植物产生更多的地上生物量和籽粒。这些数据表明,TaRNAC1 可能在根生长中发挥作用,并可作为在小麦中扩大根系的分子工具。