首页> 外文期刊>Journal of Plant Growth Regulation >alpha -Tocopherol application modulates the response of wheat (Triticum aestivum L.) seedlings to elevated temperatures by mitigation of stress injury and enhancement of antioxidants.
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alpha -Tocopherol application modulates the response of wheat (Triticum aestivum L.) seedlings to elevated temperatures by mitigation of stress injury and enhancement of antioxidants.

机译:α-生育酚的应用通过减轻应力伤害和增强抗氧化剂来调节小麦(Triticum aestivum L.)幼苗对高温的响应。

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Wheat seedlings (4 days old) were subjected to varying temperatures of 25, 30, and 35 degrees C for 7 days in a growth chamber under hydroponic conditions in the absence or presence of alpha -tocopherol (5 micro M). The growth of shoots and roots was inhibited severely at 35 degrees C. The endogenous alpha -tocopherol increased in the shoots at 30 degrees C over the controls but decreased significantly at 35 degrees C over the previous temperature. The exogenous application of alpha -tocopherol elevated the endogenous levels in the heat-stressed plants, which were consequently able to maintain significantly greater growth associated with reduction in damage to membranes, cellular oxidizing ability, chlorophyll content, and photochemical efficiency in shoots. The relative leaf water content and stomatal conductance were not affected significantly with the application of tocopherol. The oxidative stress induced by high temperature (35 degrees C) in terms of malondialdehyde and hydrogen peroxide contents was significantly lower in the presence of alpha -tocopherol. The enzymatic antioxidants such as superoxide dismutase, catalase, ascorbate peroxidase, and glutathione reductase showed considerable reduction in their activities at 35 degrees C compared to those at 30 degrees C, with greater effects on APX and GR. The nonenzymatic antioxidants like ascorbate, glutathione, and proline increased at 30 degrees C but decreased appreciably at 35 degrees C, suggesting impairment in their synthesis at stressful temperatures. alpha -Tocopherol-treated plants, especially those growing at 35 degrees C, had improved levels of enzymatic and nonenzymatic antioxidants. These observations provided evidence about the involvement of alpha -tocopherol in governing heat sensitivity in wheat and suggested manipulation of its endogenous levels to induce heat tolerance in this crop.
机译:在不存在或存在α-生育酚(5 micro M)的情况下,在水培条件下于生长室中将小麦幼苗(4天大)置于25、30和35摄氏度的变化温度下7天。在35摄氏度时,芽和根的生长受到严重抑制。与对照相比,在30摄氏度时,芽中的内源性α-生育酚含量增加,但在35摄氏度时,内源性α-生育酚比先前温度显着下降。外源施用α-生育酚提高了热胁迫植物的内源水平,因此能够维持显着更大的生长,与减少膜损伤,细胞氧化能力,叶绿素含量和芽的光化学效率有关。生育酚的施用不会显着影响相对叶片含水量和气孔导度。在α-生育酚的存在下,高温(35摄氏度)引起的丙二醛和过氧化氢含量引起的氧化应激显着降低。酶促抗氧化剂,例如超氧化物歧化酶,过氧化氢酶,抗坏血酸过氧化物酶和谷胱甘肽还原酶,与30摄氏度时相比,在35摄氏度时其活性大大降低,对APX和GR的影响更大。非酶类抗氧化剂,如抗坏血酸,谷胱甘肽和脯氨酸,在30摄氏度时会增加,但在35摄氏度时会明显下降,这表明它们在压力温度下的合成受到损害。 α-生育酚处理的植物,尤其是在35摄氏度下生长的植物,具有更高的酶促和非酶促抗氧化剂水平。这些观察结果提供了有关α-生育酚参与调控小麦热敏感性的证据,并建议操纵其内源水平以诱导该作物的耐热性。

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