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首页> 外文期刊>Folia microbiologica >Rapid screening test to estimate temperature optima for microalgae growth using photosynthesis activity measurements
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Rapid screening test to estimate temperature optima for microalgae growth using photosynthesis activity measurements

机译:利用光合作用活动测量,快速筛选测试以估算微藻生长的温度最佳

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We have worked out a rapid 1-day test based on photosynthesis measurements to estimate suitable growth temperature of microalgae cultures. To verify the proposed procedure, several microalgae-Chlorella, Nostoc, Synechocystis, Scenedesmus, and Cylindrospermum-were cultured under controlled laboratory conditions (irradiance, temperature, mixing, CO2, and nutrient supply) to find the optima of photosynthetic activity using the range between 15 and 35 degrees C. These activities were recorded at each temperature step after 2 h of acclimation which should be sufficient as oxygen production and the PQ cycle are regulated by fast processes. Photosynthetic activity was measured using three techniques-oxygen production/respiration, saturating pulse analysis of fluorescence quenching, and fast fluorescence induction kinetics-to estimate the temperature optima which should correspond to high growth rate. We measured all variables that might have been directly related to growth-photosynthetic oxygen evolution, maximum photochemical yield of PSII, F-v/F-m, relative electron transport rate rETR(max), and the transients V-j and V-i determined by fast fluorescence induction curves. When the temperature optima for photosynthetic activity were verified in growth tests, we found good correlation. For most of tested microalgae strains, temperature around 30 degrees C was found to be the most suitable at this setting. We concluded that the developed test can be used as a rapid 1-day pre-screening to estimate a suitable growth temperature of microalgae strains before they are cultured in a pilot scale.
机译:根据光合作用测量,我们制定了快速的1天测试,以估算微藻培养物的合适生长温度。为了验证所提出的程序,在受控实验室条件(辐照度,温度,混合,二氧化碳和营养供应)下培养几种微血糖 - 小球藻,Nostoc,Sengechocystis,Casenedsmus和CylindroSpermum,以找到使用之间的范围的光合活动的最佳选择在氧生产2小时后,将这些活性记录在每个温度步骤中,氧气产生足够,并且PQ循环通过快速方法调节。使用三种技术 - 氧气生产/呼吸测量光合活性,荧光猝灭的饱和脉冲分析和快速荧光诱导动力学 - 估计应对应于高生长速率的温度。我们测量了可能直接相关的所有变量与生长 - 光合氧量,最大光化学产量,F-V / F-M,相对电子传输速率Retr(MAX)和通过快速荧光感应曲线确定的瞬态V-J和V-I。当在生长测试中验证了光合活性的温度最佳时,我们发现了良好的相关性。对于大多数经过大多数测试的微藻菌株,发现在30摄氏度约为30℃的温度下是最合适的。我们得出结论,开发的测试可以用作快速的1天预筛选,以估计在先导尺度培养之前的微藻菌株的合适生长温度。

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