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Cross tolerance to heavy-metal and cold-induced photoinhibiton in leaves of Pisum sativum acclimated to low temperature

机译:低温适应的豌豆叶片对重金属和冷诱导的光抑制的交叉耐受

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摘要

Under high light intensity, low temperatures as well as heavy metals induce photoinhibition of PSII and oxidative stress in leaves. Since cold acclimation of leaves ameliorates their capacity of antioxidative defence, cross tolerance between cold-induced and heavy metal-induced photoinhibition was investigated in pea leaves grown at either 22 °C or 6 °C. The experimental conditions were chosen to induce a uniform level of short-term photoinhibition at low temperature or in the presence of CuSO4 or CdCl2 in leaves grown at 22 °C. Under all conditions photoinhibition of PSII was lower in cold-acclimated (6°C-grown) than in non-acclimated (22°C-grown) pea leaves. In darkness PSII was not affected by all treatments. Other parameters like catalase activity, chlorophyll content and metabolite contents were most sensitive to CuSO4, but less affected by CdCl2 and low temperature treatments. Strong oxidation of ascorbate and concomitant loss of catalase activity showed the enhanced oxidative stress in CuSO4-treated leaves. Generally, all measured parameters were less affected in cold-acclimated leaves than in non-acclimated leaves under all experimental conditions. Cold-acclimated pea leaves contained higher levels of ascorbate and particularly of glutathione and a higher capacity to keep the primary electron acceptor of PSII more oxidised. Incubation with heavy metals caused a nearly complete loss of reduced glutathione. It is suggested that reduced glutathione served as a source for phytochelatin synthesis. The extraordinarily high glutathione content in cold-acclimated pea leaves might therefore increase their ability to chelate heavy metals and thus to protect leaves from heavy-metal induced damage.
机译:在高光照强度下,低温以及重金属会诱导PSII的光抑制和叶片中的氧化胁迫。由于叶片的冷驯化可改善其抗氧化防御能力,因此在生长于22°C或6°C的豌豆叶片中,研究了冷诱导和重金属诱导的光抑制之间的交叉耐受性。选择实验条件以诱导低温或在22°C下生长的叶片中存在CuSO4或CdCl2的情况下短期光抑制的均匀水平。在所有条件下,冷适应(6°C生长)的豌豆叶片中PSII的光抑制均低于未适应(22°C生长)的豌豆叶片。在黑暗中,PSII不受所有治疗的影响。过氧化氢酶活性,叶绿素含量和代谢产物含量等其他参数对CuSO4最敏感,但受CdCl2和低温处理的影响较小。抗坏血酸的强氧化作用和过氧化氢酶活性的同时丧失表明,用CuSO4处理的叶片氧化应激增强。通常,在所有实验条件下,冷驯化叶片中所有测得的参数受到的影响要小于未驯化叶片中所有测得的参数。冷适应的豌豆叶含有较高水平的抗坏血酸,尤其是谷胱甘肽,并且具有较高的保持PSII的主要电子受体被氧化的能力。与重金属一起孵育会导致还原型谷胱甘肽几乎完全丧失。建议还原型谷胱甘肽可作为植物螯合素合成的来源。因此,冷适应的豌豆叶片中谷胱甘肽含量过高,可能会增加其螯合重金属的能力,从而保护叶片免受重金属诱导的伤害。

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