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首页> 外文期刊>Free radical research >Chlorophyll high-temperature thermoluminescence emission as an indicator of oxidative stress: perturbating effects of oxygen and leaf water content.
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Chlorophyll high-temperature thermoluminescence emission as an indicator of oxidative stress: perturbating effects of oxygen and leaf water content.

机译:叶绿素高温热致发光发射作为氧化应激的指标:氧气和叶片含水量的扰动效应。

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摘要

A high-temperature chlorophyll thermoluminescence emission can be observed in plant leaves, without preillumination, following various oxidative stresses. This emission was recorded from 0 degrees C to 160 degrees C on a leaf sample pressed by a teflon ring on a heating plate. A band at 140 degrees C was observed in senescing tree leaves, a band at 130 degrees C with a shoulder at 75 degrees C in tobacco leaves treated with the fungal elicitor cryptogein. Measurements in pure O2 or N2 atmospheres did not affect the 130/140 degrees C band, although oxygen increased the thermoluminescence emission at higher temperatures and should be consequently eliminated during measurements. Preventing desiccation by covering the sample with a glass window suppressed the 130/140 degrees C band, except for its rising edge at about 80/90 degrees C. This broad 130/140 degrees C band results from the chlorophyll-exciting thermolysis of lipid peroxides, but it disappears when water is kept in the sample up to 100 degrees C, due to a non-radiative hydrolysis of the peroxides. Therefore, high-temperature thermoluminescence measurements should be performed on leaf samples allowed to dry under an oxygen-free atmosphere.
机译:在各种氧化胁迫下,无需预先照明即可在植物叶片中观察到高温叶绿素的热致发光。在由加热板上的聚四氟乙烯环压紧的叶片样品上,从0摄氏度到160摄氏度记录了这种发射。在衰老的树叶中观察到140°C的条带,在用真菌激发剂隐球蛋白处理过的烟叶中,在130°C的条带在75°C的肩部可见。在纯O2或N2气氛中进行的测量不会影响130/140摄氏度的温度范围,尽管氧气会增加较高温度下的热致发光发射,因此应在测量过程中将其消除。通过用玻璃窗覆盖样品来防止干燥,抑制了130/140℃的谱带,但其上升沿大约在80/90℃。宽的130/140℃的谱带是由脂质过氧化物的叶绿素激发热解产生的,但由于过氧化物的非辐射水解作用,当样品中的水保持在100摄氏度以下时,它会消失。因此,应在无氧气氛下干燥的叶片样品上进行高温热致发光测量。

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