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The Different Physiological Responses of Natural and Stationary Low Temperature on White Clover (Trifolium repens L.)

机译:白色三叶草天然和静止低温的不同生理反应(三酚repens L.)

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Plants initiate lipid peroxidation or accumulate proteins to repair cell membrane damage caused by low temperatures. However, a stationary low temperature simulation cannot accurately explain plant tolerance to naturally low outside temperatures. Our study showed that there was a strong negative correlation between the natural temperature decrease and the protein contents in white clover roots, stems and leaves. The differences between the normal temperature (19°C) and low temperatures (0°C and 5°C) for lipid peroxidation, chlorophyll content, relative electrolyte leakage, malondialdehyde (MDA) content, and superoxide dismutase (SOD) activity under the stationary low temperature regime were significantly higher than under the natural low temperature regime. While the difference between low temperatures and normal temperatures for relative water content, free proline content, and superoxide anion radical production rates under the stationary low temperature regime did not significantly change compared to the levels recorded under the natural low temperature regime. This finding suggests that the results for low temperature tolerance by white clover under the stationary low temperature by manual simulation regime are different from the natural low temperature regime.
机译:植物引发脂质过氧化或积聚蛋白质以修复由低温引起的细胞膜损伤。然而,静止的低温模拟不能准确地解释植物容差,对自然低的外部温度。我们的研究表明,天然温度降低和白色三叶草根,茎和叶中的蛋白质含量之间存在强烈的负相关性。普遍温度(19℃)和低温(0℃和5°C)之间的差异,用于脂质过氧化,叶绿素含量,相对电解质泄漏,丙二醛(MDA)含量和超氧化物歧化酶和超氧化物歧化酶(SOD)活性在静止下低温制度明显高于自然低温制度下。虽然在固定低温制度下,与自然低温制度记录的水平相比,低温和相对含水量,游离脯氨酸含量和超氧化物阴离子自由基生产率之间的低温和正常温度的差异不会显着变化。该发现表明,通过手动模拟制度在固定低温下由白色三叶草的低温容差的结果与自然低温制度不同。

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