首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Vascular Plant One-Zinc-Finger (VOZ) Transcription Factors Are Positive Regulators of Salt Tolerance in Arabidopsis
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Vascular Plant One-Zinc-Finger (VOZ) Transcription Factors Are Positive Regulators of Salt Tolerance in Arabidopsis

机译:血管植物一锌指(VOZ)转录因子是拟南芥耐盐性的正调控因子。

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摘要

Soil salinity, a significant problem in agriculture, severely limits the productivity of crop plants. Plants respond to and cope with salt stress by reprogramming gene expression via multiple signaling pathways that converge on transcription factors. To develop strategies to generate salt-tolerant crops, it is necessary to identify transcription factors that modulate salt stress responses in plants. In this study, we investigated the role of VOZ (VASCULAR PLANT ONE-ZINC FINGER PROTEIN) transcription factors (VOZs) in salt stress response. Transcriptome analysis in WT (wild-type), voz1-1, voz2-1 double mutant and a VOZ2 complemented line revealed that many stress-responsive genes are regulated by VOZs. Enrichment analysis for gene ontology terms in misregulated genes in voz double mutant confirmed previously identified roles of VOZs and suggested a new role for them in salt stress. To confirm VOZs role in salt stress, we analyzed seed germination and seedling growth of WT, voz1, voz2-1, voz2-2 single mutants, voz1-1 voz2-1 double mutant and a complemented line under different concentrations of NaCl. Only the double mutant exhibited hypersensitivity to salt stress as compared to WT, single mutants, and a complemented line. Expression analysis showed that hypersensitivity of the double mutant was accompanied by reduced expression of salt-inducible genes. These results suggest that VOZ transcription factors act as positive regulators of several salt-responsive genes and that the two VOZs are functionally redundant in salt stress.
机译:土壤盐分是农业中的重要问题,严重限制了农作物的生产力。植物通过汇聚在转录因子上的多种信号传导途径对基因表达进行重新编程,从而应对并应对盐胁迫。为了开发产生耐盐作物的策略,有必要鉴定调节植物中盐胁迫响应的转录因子。在这项研究中,我们调查了盐胁迫应答中VOZ(血管植物一锌指蛋白)转录因子(VOZs)的作用。 WT(野生型),voz1-1,voz2-1双突变体和VOZ2互补系的转录组分析显示,许多应激反应基因受VOZ调控。对voz双突变体失调基因中的基因本体术语的富集分析证实了先前确定的VOZ的作用,并暗示了它们在盐胁迫中的新作用。为了确认VOZ在盐胁迫中的作用,我们分析了在不同NaCl浓度下WT,voz1,voz2-1,voz2-2单突变体,voz1-1,voz2-1双突变体和互补系的种子萌发和幼苗生长。与WT,单突变体和互补系相比,仅双突变体对盐胁迫表现出超敏性。表达分析表明双重突变体的超敏性伴随着盐诱导基因的表达减少。这些结果表明,VOZ转录因子充当几个盐响应基因的正向调节剂,并且两个VOZ在盐胁迫下在功能上是多余的。

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