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首页> 外文期刊>Journal of Bioscience and Bioengineering >Optimization of heterotrophic culture conditions for n-alkane utilization and phylogenetic position based on the 18S rDNA sequence of a thermotolerant prototheca zopfii strain
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Optimization of heterotrophic culture conditions for n-alkane utilization and phylogenetic position based on the 18S rDNA sequence of a thermotolerant prototheca zopfii strain

机译:基于耐高温变形菌Prototheca zopfii菌株的18S rDNA序列,优化正链烷利用和系统发育位置的异养培养条件

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This study reports on the optimization of the culture conditions for a thermotolerant eukaryotic algal strain, Prototheca zopfii RND16, which can effectively degrade and assimilate n-alkanes at elevated temperatures. RND16 was able to grow on 1% (v/v) n-alkanes (C_(14)-C_(17)) at temperatures up to 38 deg C. This ability differs from a previous finding that P. zopfii did not grow on hydrocarbons under temperature conditions above 25 deg C. Increasing the temperature from 25 deg C to 30-35 deg C resulted in an increase in the rate of n-alkane consumption during growth of RND16 in quiescent culture. In shaking culture at 35 deg C, RND16 removed a 1% n-alkane mixture almost completely at the basal medium salinity within 8 d. However, an appreciable decrease in the extent of hydrocarbon utilization was observed with increasing salinity and substrate concentration in the medium. The slow consumption of the n-alkanes in the early stage of degradation at 25 deg C was improved by supplementing 0.1% glucose. A comparative study on the nuclear small subunit rDNA (18S rDNA) sequences of three strains within the genus Protocheca revealed that both P. zopfii ATCC 30253, which utilize n-alkanes at room temperature, and P. moriformis ATCC 50081, which does not assimilate n-alkanes, are closely related to RND16.
机译:这项研究报告了耐热真核藻类菌株Prototheca zopfii RND16的培养条件的优化,该菌株可以在高温下有效降解和吸收正构烷烃。 RND16能够在高达38摄氏度的温度下在1%(v / v)正构烷烃(C_(14)-C_(17))上生长。这种能力不同于先前发现的P. zopfii不能在在高于25摄氏度的温度条件下使用碳氢化合物。将温度从25摄氏度提高到30-35摄氏度会导致RND16在静态培养中生长过程中正构烷消耗速率的增加。在35摄氏度的振荡培养条件下,RND16在8 d内几乎完全除去了基础培养基盐度下的1%正构烷烃混合物。但是,随着介质中盐度和底物浓度的增加,观察到烃利用程度的明显下降。通过补充0.1%的葡萄糖,可以改善25℃降解初期正构烷烃的缓慢消耗。对Protocheca属中的三个菌株的核小亚基rDNA(18S rDNA)序列的比较研究表明,在室温下利用正构烷烃的zopfii ATCC 30253和不吸收的桑蚕P. moriformis ATCC 50081均如此。正构烷烃与RND16密切相关。

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