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首页> 外文期刊>Acta Biologica Szegediensis >Antioxidative defence mechanisms contributes to desiccation tolerance in Haberlea rhodopensis population naturally exposed to high irradiation
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Antioxidative defence mechanisms contributes to desiccation tolerance in Haberlea rhodopensis population naturally exposed to high irradiation

机译:抗氧化防御机制有助于自然暴露于高辐射下的Haberlea红景天种群的脱水耐受性

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Drought induced stress is one of the most important among the environmental challenges. Haberlea rhodopensis, a chlorophyll-retaining resurrection plant, can survive desiccation to air-dry stage in its usual low irradiance habitat (“shade” plants). Nevertheless, in the past years, some populations living under high irradiance (“sun” plants) have been also discovered with the same ability to survive dehydration. In order to clarify the adaptation mechanisms to a high irradiation habitat, superoxide dismutase (SOD) activity determined by activity staining on polyacrylamide gels and malondialdehyde (MDA) content of sun and shade plants collected from high and low irradiance environment, respectively, were studied. Desiccation induced a significantly higher induction in SOD activity and thus a smaller increase in the MDA content in sun compared to shade plants. The MDA content and SOD activity was restored in both sun and shade plants after six-day rehydration. Nevertheless, the SOD activity remained higher in rehydrated sun leaves compared to the well-hydrated initial stage. The early enhancement of SOD activity in dehydrating sun plants contributes to the higher stress tolerance of these populations.
机译:干旱引起的压力是环境挑战中最重要的挑战之一。 Haberlea Rhodopensis是一种保留叶绿素的复活植物,在其通常的低辐照度栖息地(“阴凉”植物)中,可以干燥至风干。然而,在过去几年中,也发现一些生活在高辐照度(“日光”植物)下的种群具有相同的脱水生存能力。为了阐明对高辐照生境的适应机制,研究了通过对聚丙烯酰胺凝胶进行活性染色确定的超氧化物歧化酶(SOD)活性以及分别从高和低辐照环境中收集的日光和阴凉植物的丙二醛(MDA)含量。与遮荫植物相比,干燥引起的SOD活性明显更高的诱导,因此MDA含量在阳光下的增加较小。补水六天后,日光和阴凉植物的MDA含量和SOD活性均恢复。然而,与水合良好的初始阶段相比,水合防晒的叶片中的SOD活性仍然较高。脱水日晒植物中SOD活性的早期增强有助于提高这些种群的抗逆性。

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