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Changes in lipid metabolism during adaptation of the Dunaliella salina photosynthetic apparatus to high CO2 concentration

机译:杜氏盐藻光合装置适应高CO2浓度期间脂质代谢的变化

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The effects of CO2 on the content and composition of lipid fatty acids (FA) and on the photosynthetic characteristics of unicellular halophilic green alga Dunaliella salina (known to be susceptible to CO2 stress) were investigated. It was shown that even one-day-long increase in the CO2 concentration (from 2 to 10%) provoked an increase in the total amount of FA on the dry weight basis by 30%. After 7-day-long growth at 10% CO2, this value was 2.7-fold higher than that at 2% CO2. The difference in the FA content and composition indicated the activation of FA synthesis de novo and inhibition of their elongation and desaturation, as well as the increase in the relative content of saturated FA at 10% CO2. It was demonstrated that, after one-day-long CO2 stress, the MGDG/DGDG ratio increased fourfold without change in the sum of their FA, which indicates the increase in the proportion of lipids predisposed to micellar (hexagonal phase) but not lamellar structure formation. Under short-term CO2 stress, the ratio of omega3/omega6 FA increased and the content of E-16:1omega13 FA in phosphatidylglycerols increased sharply. The drop in protein content especially in the photosystem I (PSI) preparations, as well as diminishing the ratio of F-700-to-F-686 nm fluorescence (F-700/F-686) under short-term CO2 stress argued for the significant damage to PSI. The reversibility of these changes at more prolonged treatment (7 and 10 days) demonstrated that D. salina cells could restore the functional activity of PSI. The lower level of F-700/F-686, chlorophyll a (Chla)/Chlb, and omega3/omega6 FA ratio in line with the higher level of E-16:1omega13 in the cells growing for a long time at the high CO2 concentration is characteristic for the new structural and functional state of the photosynthetic apparatus providing for the effective photosynthesis of D. salina under these conditions.
机译:研究了CO2对脂质脂肪酸(FA)的含量和组成以及单细胞嗜盐绿藻Dunaliella salina(已知易受CO2胁迫影响)的光合特性的影响。结果表明,即使将CO2浓度提高一天(从2%增至10%),也可以使FA的总量(以干重计)增加30%。在10%CO2下生长7天后,该值比2%CO2时高2.7倍。 FA含量和组成的差异表明从头开始的FA合成的活化和其伸长和去饱和的抑制,以及在10%CO 2下饱和FA的相对含量的增加。结果表明,在一天的CO2胁迫后,MGDG / DGDG的比例增加了四倍,而其FA的总和没有变化,这表明易胶束(六方相)而不是层状结构的脂质比例增加了编队。在短期CO 2胁迫下,磷脂酰甘油中omega3 / omega6 FA的比例增加,E-16:1omega13 FA的含量急剧增加。蛋白质含量的下降,特别是在光系统I(PSI)制剂中的下降,以及在短期CO2胁迫下降低F-700与F-686 nm荧光的比率(F-700 / F-686)的原因是对PSI的重大损害。这些变化在更长时间的治疗(7天和10天)中具有可逆性,这表明盐藻D. salina细胞可以恢复PSI的功能活性。 F-700 / F-686,叶绿素a(Chla)/ Chlb和omega3 / omega6 FA比值的较低水平与高CO2长时间生长的细胞中E-16:1omega13的较高水平一致浓度是光合作用装置新的结构和功能状态的特征,在这些条件下提供了盐藻的有效光合作用。

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