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Responses of Transgenic Tobacco Plants with Increased Proline Content to Drought and/or Heat Stress

机译:脯氨酸含量增加的转基因烟草植物对干旱和/或热胁迫的响应

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Transgenic tobacco plants (M51-1) constitutively over-expressing a modified gene for the proline biosynthetic enzyme △2-pyrroline-5-carboxylate synthetase (P5CSF129A) and the corresponding wild-type plants (WT) were compared during drought or heat stress and under combination of both stresses. The proline content in M51-1 was several times higher than in WT plants. Under optimal conditions, the transpiration rate and stomatal conductance of M51-1 plants were lower than those in WT plants. The differences in net photosynthetic rate were not significant and water use efficiency and contents of chlorophyll and xanthophyll cycle pigments were higher in M51-1 than in WT plants. Drought induced by cessation of watering for 7 d resulted in decrease of all gas exchange parameters and chlorophyll content, but in an increase of the content of xanthophyll cycle pigments and degree of their de-epoxidation. After application of heat stress (40°C/60 min) to control or water-stressed plants the gas exchange parameters decreased considerably. Short-term heat stress alone, however, did not affect pigment contents. The responses of M51-1 and WT plants to the tested stresses did not differ significantly. Therefore, a decisive contribution of elevated proline content to drought or heat stress tolerance of tobacco was not proved.
机译:比较了干旱或高温胁迫下组成型过量表达脯氨酸生物合成酶△2-吡咯啉-5-羧酸合成酶(P5CSF129A)的修饰基因的转基因烟草植物(M51-1)和相应的野生型植物(WT)在两种压力的共同作用下。 M51-1中脯氨酸的含量是野生植物中的几倍。在最佳条件下,M51-1植物的蒸腾速率和气孔导度均低于野生型植物。 M51-1的净光合速率差异不显着,水分利用效率以及叶绿素和叶黄素循环色素的含量高于野生型植物。停水7 d引起的干旱导致所有气体交换参数和叶绿素含量降低,但叶黄素循环色素含量和其脱环氧化程度增加。在将热胁迫(40°C / 60分钟)施用于对照或水分胁迫的植物后,气体交换参数大大降低。但是,仅短期的热应激并不会影响颜料含量。 M51-1和野生型植物对测试的胁迫的反应没有显着差异。因此,脯氨酸含量升高对烟草的干旱或热胁迫耐受性没有决定性作用。

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