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First and second line mechanisms of cadmium detoxification in the lichen photobiont Trebouxia impressa (Chlorophyta)

机译:地衣光生物Trebouxia impressa(Chlorophyta)中镉解毒的一线和二线机制

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摘要

"First line" defence mechanisms, such as phytochelatin biosynthesis, and "second line" mechanisms, such as stress protein induction, were investigated in cadmium-exposed cells of Trebouxia impressa Ahmadjian, a green microalgal species that is a common photobiont of the lichen Physcia adscendens (Fr.) H. Olivier. When T. impressa cells were exposed to 0, 9 and 18 μM Cd for 6, 18 and 48 h, glutathione and phytoche-latins efficiently protected the cells against Cd damage. By contrast, the highest Cd concentration (36 μM) at the longest exposure-time (48 h) caused marked drops in glutathione and phytochelatin content, several types of ultrastructural damage, and decreases in cell density and total chlorophyll concentration. In this case, induction of stress proteins was observed, but only long after the induction of phytochelatins. Thus, stress proteins could represent a "second line" mechanism to counteract Cd stress, activated when there is a decline in the "first line" mechanism of Cd detoxification given by phytochelatins.
机译:在暴露于镉的Trebouxia impressa Ahmadjian(一种绿色的微藻物种)中,镉暴露的细胞研究了“第一线”防御机制(例如植物螯合素的生物合成)和“第二线”机制(例如应激蛋白诱导),这是一种常见的绿色地衣藻类光生物体。 adscendens(F.)H. Olivier。当T. impressa细胞暴露于0、9和18μMCd中6、18和48 h时,谷胱甘肽和植物瘦素有效保护细胞免受Cd损害。相比之下,最高的Cd浓度(36μM)在最长的暴露时间(48 h)导致谷胱甘肽和植物螯合素含量显着下降,几种超微结构损伤,并且细胞密度和总叶绿素浓度下降。在这种情况下,观察到了应激蛋白的诱导,但是仅在植物螯合素的诱导之后很长一段时间。因此,应激蛋白可能代表抵消Cd胁迫的“第二线”机制,当植物螯合素给予的Cd排毒“第一线”机制下降时,该蛋白质被激活。

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