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在手指小米的脱水和盐胁迫过程中对核因子-Y (NF-Y) 转录因子进行表达谱分析,揭示了对多种胁迫耐受性的潜在候选基因。

Expression profiling of Nuclear Factor-Y (NF-Y) transcription factors during dehydration and salt stress in finger millet reveals potential candidate genes for multiple stress tolerance.

机构信息

Department of Biotechnology, Deen Dayal Upadhyaya Gorakhpur University, Gorakhpur, Uttar Pradesh, 273009, India.

Department of Plant Sciences, School of Life Sciences, University of Hyderabad, Hyderabad, Telangana, 500046, India.

出版信息

Planta. 2024 Apr 28;259(6):136. doi: 10.1007/s00425-024-04417-y.

Abstract

Expression profiling of NF-Y transcription factors during dehydration and salt stress in finger millet genotypes contrastingly differing in tolerance levels identifies candidate genes for further characterization and functional studies. The Nuclear Factor-Y (NF-Y) transcription factors are known for imparting abiotic stress tolerance in different plant species. However, there is no information on the role of this transcription factor family in naturally drought-tolerant crop finger millet (Eleusine coracana L.). Therefore, interpretation of expression profiles against drought and salinity stress may provide valuable insights into specific and/or overlapping expression patterns of Eleusine coracana Nuclear Factor-Y (EcNF-Y) genes. Given this, we identified 59 NF-Y (18 NF-YA, 23 NF-YB, and 18 NF-YC) encoding genes and designated them EcNF-Y genes. Expression profiling of these genes was performed in two finger millet genotypes, PES400 (dehydration and salt stress tolerant) and VR708 (dehydration and salt stress sensitive), subjected to PEG-induced dehydration and salt (NaCl) stresses at different time intervals (0, 6, and 12 h). The qRT-PCR expression analysis reveals that the six EcNF-Y genes namely EcNF-YA1, EcNF-YA5, EcNF-YA16, EcNF-YB6, EcNF-YB10, and EcNF-YC2 might be associated with tolerance to both dehydration and salinity stress in early stress condition (6 h), suggesting the involvement of these genes in multiple stress responses in tolerant genotype. In contrast, the transcript abundance of finger millet EcNF-YA5 genes was also observed in the sensitive genotype VR708 under late stress conditions (12 h) of both dehydration and salinity stress. Therefore, the EcNF-YA5 gene might be important for adaptation to salinity and dehydration stress in sensitive finger millet genotypes. Therefore, this gene could be considered as a susceptibility determinant, which can be edited to impart tolerance. The phylogenetic analyses revealed that finger millet NF-Y genes share strong evolutionary and functional relationship to NF-Ys governing response to abiotic stresses in rice, sorghum, maize, and wheat. This is the first report of expression profiling of EcNF-Ys genes identified from the finger millet genome and reveals potential candidate for enhancing dehydration and salt tolerance.

摘要

在耐旱性和耐盐性水平不同的手指小米基因型中,NF-Y 转录因子的表达谱在脱水和盐胁迫期间进行了分析,这为进一步的特征描述和功能研究鉴定了候选基因。核因子-Y(NF-Y)转录因子在不同植物物种中赋予非生物胁迫耐受性。然而,关于这个转录因子家族在天然耐旱作物手指小米(Eleusine coracana L.)中的作用尚没有信息。因此,对干旱和盐胁迫的表达谱的解释可能为 Eleusine coracana 核因子-Y(EcNF-Y)基因的特定和/或重叠表达模式提供有价值的见解。考虑到这一点,我们鉴定了 59 个 NF-Y(18 个 NF-YA、23 个 NF-YB 和 18 个 NF-YC)编码基因,并将其命名为 EcNF-Y 基因。在两种手指小米基因型 PES400(耐旱和耐盐)和 VR708(耐旱和耐盐敏感)中,对这些基因进行了表达谱分析,这些基因型在不同时间间隔(0、6 和 12 小时)下用 PEG 诱导的脱水和盐(NaCl)胁迫处理。qRT-PCR 表达分析表明,六个 EcNF-Y 基因,即 EcNF-YA1、EcNF-YA5、EcNF-YA16、EcNF-YB6、EcNF-YB10 和 EcNF-YC2,可能与早期胁迫条件(6 小时)下的脱水和盐胁迫耐受有关,这表明这些基因参与了耐基因型的多种胁迫反应。相比之下,在脱水和盐胁迫的晚期胁迫条件(12 小时)下,也观察到敏感基因型 VR708 中 EcNF-YA5 基因的转录丰度。因此,EcNF-YA5 基因可能对敏感手指小米基因型对盐度和干旱胁迫的适应很重要。因此,该基因可以被视为一个敏感性决定因素,对其进行编辑可以赋予其耐受性。系统发育分析表明,手指小米 NF-Y 基因与调控水稻、高粱、玉米和小麦对非生物胁迫反应的 NF-Ys 具有强烈的进化和功能关系。这是首次从手指小米基因组中鉴定出 EcNF-Ys 基因的表达谱,并揭示了增强脱水和耐盐性的潜在候选基因。

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