首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Differential expression of salt-responsive genes to salinity stress in salt-tolerant and salt-sensitive rice (Oryza sativa L.) at seedling stage
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Differential expression of salt-responsive genes to salinity stress in salt-tolerant and salt-sensitive rice (Oryza sativa L.) at seedling stage

机译:盐响应基因含盐浓度胁迫胁迫胁迫胁迫的差异表达(Oryza Sativa L.)在幼苗阶段

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摘要

The understanding of physio-biochemical and molecular attributes along with morphological traits contributing to the salinity tolerance is important for developing salt-tolerant rice (Oryza sativa L.) varieties. To explore these facts, rice genotypes CSR10 and MI48 with contrasting salt tolerance were characterized under salt stress (control, 75 and 150mM NaCl) conditions. CSR10 expressed higher rate of physio-biochemical parameters, maintained lower Na/K ratio in shoots, and restricted Na translocation from roots to shoots than MI48. The higher expression of genes related to the osmotic module (DREB2A and LEA3) and ionic module (HKT2;1 and SOS1) in roots of CSR10 suppresses the stress, enhances electrolyte leakage, promotes the higher compatible solute accumulation, and maintains cellular ionic homeostasis leading to better salt stress tolerance than MI48. This study further adds on the importance of these genes in salt tolerance by comparing their behaviour in contrasting rice genotypes and utilizing specific marker to identify salinity-tolerant accessions/donors among germplasm; overexpression of these genes which accelerate the selection procedure precisely has been shown.
机译:对基础生物化学和分子属性的理解以及促进盐度耐受的形态特征对于培养耐盐性水稻(Oryza Sativa L.)品种是重要的。为了探索这些事实,在盐胁迫下表征具有对比耐盐性的水稻基因型CSR10和MI48,其特征在于盐胁迫(对照,75和150mM NaCl)条件。 CSR10表达了更高的物理生化参数速率,保持芽中​​的较低Na / K比,并限制从根部的Na易位比Mi48拍摄。与渗透模块(DREB2A和lea3)和离子模块(HKT2; 1和SOS1)相关的基因的表达较高,CSR10的根部抑制应力,提高电解质泄漏,促进较高的兼容溶质积聚,并保持细胞离子稳态比MI48更好的盐胁迫耐受性。本研究进一步通过将其在对比水稻基因型中的行为进行比较并利用特定标记物来鉴定种质中的盐度耐受申请/供体,进一步增加了这些基因在耐盐性耐受性的重要性。已经显示了加速选择过程的这些基因的过表达。

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