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Growth rate assessment of high lipid producing microalga Botryococcus braunii in different culture media

机译:不同培养基中的高脂质生长微观菌菌菌的生长速率评价

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The green colonial microalga, Botryococcus braunii is well known for its high lipid content and has already been proposed as a renewable energy source for various aquaculture and biotechnological applications. However, due to its slow growth rate compared with other microalgae, B. braunii has not yet been used in mass culture to produce more biomass. Therefore, in this study we tested different culture media to enhance the growth rate of B. braunii. B. braunii samples were collected from natural habitat, isolated and purified by repeated streaking on agar plate. The purified samples were cultured in six treatments containing different culture media with incubation conditions of pH 7.5, temperature 25±1°C under 1.2±0.2 klux light intensity with 12 hr photoperiod to observe their growth rate and morphology. The results of this study showed the highest growth rate (μ=0.20 day-1) in the autoclaved lake water with 427 colonies/ml. Bold’s basal medium (BBM) and modified Chu No. 10 medium showed moderate growth after 24 days of incubation. The growth rates amongst all media were significantly different (p<0.05) except between un-autoclaved lake water and autoclaved water medium added with half concentration of BBM. Morphological observation showed that B. braunii varied in different culture media. This study illustrated that autoclaved lake water has the highest growth rate compared to formulated media such as BBM and modified Chu No. 10 medium. This indicates that the autoclaved lake water medium had high concentration of nutrients and can be used for the mass production of B. braunii at lower cost.
机译:绿色殖民地微藻,Botryococcus Braunii以其高脂质含量众所周知,并且已经被提出为各种水产养殖和生物技术应用的可再生能源。然而,由于其缓慢的增长率与其他微藻相比,B.Braunii尚未用于大规模培养物以产生更多生物量。因此,在本研究中,我们测试了不同的培养基,以提高B. Braunii的生长速率。 B.从天然栖息地收集BRAUNII样品,通过在琼脂平板上重复条纹分离和纯化。将纯化的样品在含有不同培养基的六种处理中培养,其具有pH 7.5的温育条件,温度为25±1℃,具有12小时光周期的1.2±0.2 klux光强度,观察其生长速率和形态。该研究的结果显示,高压灭菌湖水中的最高生长速率(μ= 0.20天-1),具有427个菌落/ ml。大胆的基础培养基(BBM)和改性的楚氏培养后的10次培养基在孵育24天后显示中等生长。所有培养基中的生长速率显着不同(P <0.05),除非未加工的湖水和高压灭菌水介质加入的半浓度BBM。形态学观察表明,B. Braunii在不同的培养基中变化。本研究表明,与配制介质如BBM和改性的Chu No.10培养基相比,高压灭菌的湖水具有最高的生长速率。这表明高压灭菌的湖水介质具有高浓度的营养素,可用于较低成本的B. Braunii的批量生产。

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