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Cold acclimation of SnRK2.2 kinases mutant Chlamydomonas reinhardtii

机译:SNRK2.2的冷驯化突变酶突变体Chlamydomonas Reinhardtii

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摘要

In Chlamydomonas reinhardtii, plant-specific serine/threonine kinases (SnRK2 kinases) play a central role in sulfur metabolism. However, their role in environmental stress has not been clearly understood. Cold stress is one of the most important factors that limit the growth, productivity, and development of photosynthetic organisms. In this report, the effect of cold stress on some physiological parameters were investigated in SnRK2.2 mutant and wild type C. reinhardtii culture. Our results showed that cold stress had significantly enhanced lipid peroxidation rate in wild type, while no significant change was observed in SnRK2.2 mutant culture. Our data also indicated a decline in Rubisco protein amount of wild type culture under low temperature exposure. Low temperature reduced glutathione reductase (GR) activity in the wild type, while GR activity was enhanced in SnRK2.2 mutant. This result indicated the potential of SnRK2 kinase in cold acclimation process.
机译:在衣原体中,植物特异性丝氨酸/苏氨酸激酶(SNRK2激酶)在硫代谢中起着核心作用。 然而,它们在环境压力中的作用尚未清楚地理解。 冷压力是限制光合生物的生长,生产力和发展的最重要因素之一。 在本报告中,在SNRK2.2突变体和野生型C. Reinhardtii培养中研究了冷应激对一些生理参数的影响。 我们的研究结果表明,野生型脂质过氧化率显着增强了脂质过氧化率,而在SNRK2.2突变体培养中没有观察到显着变化。 我们的数据还表明低温暴露下野生型培养物的Rubisco蛋白质量下降。 低温降低野生型谷胱甘肽还原酶(GR)活性,而SNRK2.2突变体中的GR活性增强。 该结果表明了SNRK2激酶在冷适应过程中的潜力。

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