首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Physiological and biochemical changes of CBF3 transgenic oat in response to salinity stress.
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Physiological and biochemical changes of CBF3 transgenic oat in response to salinity stress.

机译:CBF3 转基因燕麦对盐分胁迫的生理生化变化。

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摘要

Salinity is a major abiotic constraint affecting oat productivity. Several physiological and biochemical traits have been found to be related to yield maintenance under salinity. The impact of introducing the Arabidopsis CBF3 gene controlled by the rd29A stress-inducible promoter in T2 transgenic oat on salinity tolerance and associated physiological changes were studied. Compared with the non-transgenic control, transgenic T2 plants exhibited greater growth and showed significant maintenance of leaf area, relative water content, chlorophyll content, photosynthetic and transpiration rates as well as increased levels of proline and soluble sugars under high salt stress. These physiological changes delayed leaf-wilting symptoms, increased tolerance and reduced yield loss. At a salinity stress level of 100 mM, the CBF3-overexpressing transgenic oat showed a yield loss of 4-11% compared with >56% for the non-transgenic control. These results demonstrate that stress-inducible over-expression of CBF3 may have the potential to enhance abiotic stress tolerance in oat.
机译:盐度是影响燕麦生产力的主要非生物限制因素。已经发现几种生理和生化特性与盐度下的产量维持有关。研究了由rd29A胁迫诱导型启动子控制的拟南芥CBF3 基因导入转基因T 2 燕麦中对耐盐性及相关生理变化的影响。与非转基因对照相比,转基因T 2 植物表现出更大的生长,并显示出叶面积,相对水含量,叶绿素含量,光合和蒸腾速率的显着维持,脯氨酸和可溶性蛋白的含量增加。高盐胁迫下的糖。这些生理变化延迟了叶片萎wil的症状,提高了耐受性并减少了产量损失。在盐胁迫水平为100 mM时,过表达 CBF3 的转基因燕麦的产量损失为4-11%,而非转基因对照的产量损失为> 56%。这些结果表明, CBF3 的应激诱导过表达可能具有增强燕麦非生物胁迫耐受性的潜力。

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