首页> 外文期刊>Journal of Plant Biology >External K+ Deficiency Inhibits Photosynthetic Activity Through Superoxide Anion Production in Protoplasts Isolated from the Thallus of Ulva pertusa
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External K+ Deficiency Inhibits Photosynthetic Activity Through Superoxide Anion Production in Protoplasts Isolated from the Thallus of Ulva pertusa

机译:外部钾离子缺乏通过百日草Ul茎原生质体中超氧阴离子产生抑制光合作用。

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To investigate the effects of potassium on photosynthetic activity in the green alga Ulva pertusa, we enzymatically isolated protoplasts from thallus samples. Photochemical quenching showed that protoplasts were capable of electron transport by photosystem II (PS II) during illumination. This quenching was dependent on external pH, with a reduced electron transport rate at pH > 6.8 and less ability to use HCO (3) (-) under alkaline conditions. In the presence of external Na+, K+ enhanced PS II quantum yield, indicating a functional role for K+ during photosynthesis. That yield was enhanced in a [K+]-dependent manner, with maximum activity at 100 mM. However, potassium alone did not maintain photochemical activity, and its addition supported photosynthetic O-2 evolution only in the presence of Na+. A deficiency of K+ led to the production of superoxide anions. Because of that generation, activities of superoxide dismutase and ascorbate peroxidase, two key enzymes involved in scavenging reactive oxygen species in the water-water cycle, also increased during such stress. These results strongly suggest that a series of ROS-scavenging systems are initiated in Ulva chloroplasts in response to K+ deficiency and that enzyme activities might protect algal cell photosynthesis.
机译:为了研究钾对绿藻石va中光合活性的影响,我们酶法分离了来自all体样品的原生质体。光化学猝灭表明,原生质体能够在光照过程中通过光系统II(PS II)进行电子传输。该淬灭取决于外部pH,在pH> 6.8时电子传输速率降低,并且在碱性条件下使用HCO(3)(-)的能力较低。在存在外部Na +的情况下,K +增强了PS II的量子产率,表明K +在光合作用过程中发挥了作用。该产量以[K +]依赖的方式提高,最大活性为100 mM。然而,仅钾并不能维持光化学活性,其添加仅在存在Na +的情况下支持光合作用O-2的进化。钾缺乏会导致产生超氧阴离子。由于这一代,超氧化物歧化酶和抗坏血酸过氧化物酶(在水-水循环中参与清除活性氧的两个关键酶)的活性在这种压力下也会增加。这些结果强烈表明,响应于钾离子缺乏,在Ulva叶绿体中启动了一系列ROS清除系统,并且酶活性可能保护藻类细胞的光合作用。

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