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首页> 外文期刊>Journal of Applied Phycology >The eurythermal adaptivity and temperature tolerance of a newly isolated psychrotolerant Arctic Chlorella sp.
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The eurythermal adaptivity and temperature tolerance of a newly isolated psychrotolerant Arctic Chlorella sp.

机译:一种新分离的抗精神病的北极小球藻的体温热适应性和温度耐受性。

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A new strain of Chlorella sp. (Chlorella-Arc), isolated from Arctic glacier melt water, was found to have high specific growth rates (mu) between 3 and 27 A degrees C, with a maximum specific growth rate of 0.85 day(-1) at 15 A degrees C, indicating that this strain was a eurythermal strain with a broad temperature tolerance range. To understand its acclimation strategies to low and high temperatures, the physiological and biochemical responses of the Chlorella-Arc to temperature were studied and compared with those of a temperate Chlorella pyrenoidosa strain (Chlorella-Temp). As indicated by declining F (v)/F (m), photoinhibition occurred in Chlorella-Arc at low temperature. However, Chlorella-Arc reduced the size of the light-harvesting complex (LHC) to alleviate photoinhibition, as indicated by an increasing Chl a/b ratio with decreasing temperatures. Interestingly, Chlorella-Arc tended to secrete soluble sugar into the culture medium with increasing temperature, while its intracellular soluble sugar content did not vary with temperature changes, indicating that the algal cells might suffer from osmotic stress at high temperature, which could be adjusted by excretion of soluble sugar. Chlorella-Arc accumulated protein and lipids under lower temperatures ( 15 A degrees C), and its metabolism switched to synthesis of soluble sugar as temperatures rose. This reflects a flexible ability of Chlorella-Arc to regulate carbon and energy distribution when exposed to wide temperature shifts. More saturated fatty acids (SFA) in Chlorella-Arc than Chlorella-Temp also might serve as the energy source for growth in the cold and contribute to its cold tolerance.
机译:一种新的小球藻属菌株。从北极冰川融水中分离出的小球藻(Chlorella-Arc)在3至27 A摄氏度之间具有较高的比生长速率(mu),在15 A摄氏度下最大比生长速率为0.85天(-1) ,表明该菌株是具有宽温度耐受范围的耐高温热菌株。为了了解其适应低温和高温的策略,研究了小球藻弧菌对温度的生理和生化响应,并将其与温带小球藻小球藻(Chlorella-Temp)进行比较。如下降的F(v)/ F(m)所示,小球藻Arc在低温下发生了光抑制作用。然而,小球藻Arc减小了光收集复合物(LHC)的尺寸以减轻光抑制,如随温度降低而增加的Chla / b比率所表明的。有趣的是,小球藻Arc倾向于随着温度的升高而向培养基中分泌可溶性糖,而其细胞内可溶性糖含量却不会随温度变化而变化,这表明藻类细胞在高温下可能会受到渗透压的影响,可以通过调节排泄可溶性糖。小球藻弧菌在较低的温度(<15 A摄氏度)下会积聚蛋白质和脂质,并且随着温度的升高,其新陈代谢转换为可溶性糖的合成。这反映了小球藻在暴露于宽温度变化时具有调节碳和能量分布的灵活能力。小球藻弧中的饱和脂肪酸(SFA)比小球藻中的更多,也可能是寒冷中生长的能源,并有助于其耐寒性。

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