Suppr超能文献

野生大豆NAC转录因子GsNAC019介导植物耐碱性和ABA敏感性的调控。

The Glycine soja NAC transcription factor GsNAC019 mediates the regulation of plant alkaline tolerance and ABA sensitivity.

作者信息

Cao Lei, Yu Yang, Ding Xiaodong, Zhu Dan, Yang Fan, Liu Beidong, Sun Xiaoli, Duan Xiangbo, Yin Kuide, Zhu Yanming

机构信息

Key Laboratory of Agricultural Biological Functional Genes, Northeast Agricultural University, Harbin, 150030, People's Republic of China.

College of Life Science, Qingdao Agricultural University, Qingdao, 266109, People's Republic of China.

出版信息

Plant Mol Biol. 2017 Oct;95(3):253-268. doi: 10.1007/s11103-017-0643-3. Epub 2017 Sep 7.

Abstract

Overexpression of Gshdz4 or GsNAC019 enhanced alkaline tolerance in transgenic Arabidopsis. We proved that Gshdz4 up-regulated both GsNAC019 and GsRD29B but GsNAC019 may repress the GsRD29B expression under alkaline stress. Wild soybean (Glycine soja) has a high tolerance to environmental challenges. It is a model species for dissecting the molecular mechanisms of salt-alkaline stresses. Although many NAC transcription factors play important roles in response to multiple abiotic stresses, such as salt, osmotic and cold, their mode of action in alkaline stress resistance is largely unknown. In our study, we identified a G. soja NAC gene, GsNAC019, which is a homolog of the Arabidopsis AtNAC019 gene. GsNAC019 was highly up-regulated by 50 mM NaHCO treatment in the roots of wild soybean. Further investigation showed that a well-characterized transcription factor, Gshdz4 protein, bound the cis-acting element sequences (CAATA/TA), which are located in the promoter of the AtNAC019/GsNAC019 genes. Overexpression of Gshdz4 positively regulated AtNAC019 expression in transgenic Arabidopsis, implying that AtNAC019/GsNAC019 may be the target genes of Gshdz4. GsNAC019 was demonstrated to be a nuclear-localized protein in onion epidermal cells and possessed transactivation activity in yeast cells. Moreover, overexpression of GsNAC019 in Arabidopsis resulted in enhanced tolerance to alkaline stress at the seedling and mature stages, but reduced ABA sensitivity. The closest Arabidopsis homolog mutant plants of Gshdz4, GsNAC019 and GsRD29B containing athb40, atnac019 and atrd29b were sensitive to alkaline stress. Overexpression or the closest Arabidopsis homolog mutant plants of the GsNAC019 gene in Arabidopsis positively or negatively regulated the expression of stress-related genes, such as AHA2, RD29A/B and KIN1. Moreover, this mutation could phenotypically promoted or compromised plant growth under alkaline stress, implying that GsNAC019 may contribute to alkaline stress tolerance via the ABA signal transduction pathway and regulate expression of the downstream stress-related genes.

摘要

Gshdz4或GsNAC019的过表达增强了转基因拟南芥的耐碱性。我们证明,Gshdz4上调了GsNAC019和GsRD29B的表达,但在碱性胁迫下GsNAC019可能抑制GsRD29B的表达。野生大豆(Glycine soja)对环境挑战具有高度耐受性。它是剖析盐碱胁迫分子机制的模式物种。尽管许多NAC转录因子在响应多种非生物胁迫(如盐、渗透和冷胁迫)中发挥重要作用,但其在抗碱性胁迫中的作用模式 largely unknown。在我们的研究中,我们鉴定了一个野生大豆NAC基因GsNAC019,它是拟南芥AtNAC019基因的同源物。在野生大豆根中,50 mM NaHCO处理显著上调了GsNAC019的表达。进一步研究表明,一个特征明确的转录因子Gshdz4蛋白与位于AtNAC019/GsNAC019基因启动子中的顺式作用元件序列(CAATA/TA)结合。Gshdz4的过表达在转基因拟南芥中正向调节AtNAC019的表达,这意味着AtNAC019/GsNAC019可能是Gshdz4的靶基因。GsNAC019在洋葱表皮细胞中被证明是一种核定位蛋白,并且在酵母细胞中具有反式激活活性。此外,在拟南芥中过表达GsNAC019导致在幼苗期和成熟期对碱性胁迫的耐受性增强,但降低了ABA敏感性。Gshdz4、GsNAC019和GsRD29B的最接近的拟南芥同源突变体植物(分别含有athb40、atnac019和atrd29b)对碱性胁迫敏感。在拟南芥中过表达或使用GsNAC019基因的最接近的拟南芥同源突变体植物正向或负向调节胁迫相关基因(如AHA2、RD29A/B和KIN1)的表达。此外,这种突变在表型上可以促进或损害碱性胁迫下的植物生长,这意味着GsNAC019可能通过ABA信号转导途径促进碱性胁迫耐受性并调节下游胁迫相关基因的表达。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验