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Hyperproduction of Poly-β-Hydroxybutyrate during Exponential Growth of Azotobacter vinelandii UWD

机译:葡萄固氮菌UWD指数生长过程中聚-β-羟基丁酸酯的过量生产

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The transformation of Azotobacter vinelandii UW with A. vinelandii 113 DNA resulted in the formation of rifampin-resistant colonies, 13% of which also inherited a previously unrecognized mutation in the respiratory NADH oxidase. These transformants produced colonies with a white-sectored phenotype after prolonged incubation. Cells from these sectors were separated and purified by streaking and were named UWD. The dense white phenotype was due to the production of a large amount of poly-β-hydroxybutyrate during the exponential growth of strain UWD. The polymer accounted for 65 or 75% of the cell dry weight after 24 h of incubation of cultures containing glucose and either ammonium acetate or N2, respectively, as the nitrogen source. Under the same conditions, strain UW cells contained 22 to 25% poly-β-hydroxybutyrate, but O2-limited growth was required for these optimal production values. Polymer production was not dependent on O2 limitation in strain UWD, but the efficiency of conversion of glucose to poly-β-hydroxybutyrate was enhanced in O2-limited cultures. Conversion efficiencies were >0.25 and 0.33 mg of poly-β-hydroxybutyrate per mg of glucose consumed under vigorous- and low-aeration conditions, respectively, compared with an efficiency of 0.05 achieved by strain UW. Strain UWD, therefore, appeared to from poly-β-hydroxybutyrate under novel conditions, which may be useful in designing new methods for the industrial production of biodegradable plastics.
机译:用葡萄曲霉113 DNA转化葡萄固氮菌UW导致形成了耐利福平的菌落,其中13%的人还遗传了呼吸NADH氧化酶先前无法识别的突变。长时间孵育后,这些转化子产生具有白色扇形表型的菌落。通过划线分离和纯化来自这些区段的细胞,并将其命名为UWD。致密的白色表型是由于在UWD菌株的指数生长过程中产生了大量的聚β-羟基丁酸酯。培养含有葡萄糖和乙酸铵或N2的氮源的培养物24小时后,聚合物占细胞干重的65%或75%。在相同条件下,UW菌株细胞含有22%至25%的聚β-羟基丁酸酯,但是要获得这些最佳的产值,必须限制O2的生长。聚合物的生产不依赖于UWD菌株中O2的限制,但是在O2限制的培养物中,葡萄糖转化为聚β-羟基丁酸酯的效率得到了提高。在强曝气和低曝气条件下,每毫克葡萄糖转化的效率分别为> 0.25和0.33 mg聚-β-羟基丁酸酯,相比之下,UW菌株的转化效率为0.05。因此,在新的条件下,UWD菌株似乎由聚-β-羟基丁酸酯产生,这可能对设计工业化生产可生物降解塑料的新方法很有用。

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