首页> 外文期刊>Applied Microbiology and Biotechnology >Importance of malate synthase in the glyoxylate cycle of Ashbya gossypii for the efficient production of riboflavin
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Importance of malate synthase in the glyoxylate cycle of Ashbya gossypii for the efficient production of riboflavin

机译:苹果酸合酶在棉铃虫乙醛酸循环中对有效生产核黄素的重要性

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摘要

The glyoxylate cycle is an anabolic pathway that is necessary for growth on nonfermentable carbon sources such as vegetable oils and is important for riboflavin production by the filamentous fungus Ashbya gossypii. The aim of this study was to identify malate synthase in the glyoxylate cycle of A. gossypii and to investigate its importance in riboflavin production from rapeseed oil. The ACR268C gene was identified as the malate synthase gene that encoded functional malate synthase in the glyoxylate cycle. The ACR268C gene knockout mutant lost malate synthase activity, and its riboflavin production and oil consumption were 10- and 2-fold lower, respectively, than the values of the wild-type strain. In contrast, the ACR268C gene-overexpressing strain showed a 1.6-fold increase in the malate synthase activity and 1.7-fold higher riboflavin production than the control strain. These results demonstrate that the malate synthase in the glyoxylate cycle has an important role not only in riboflavin production but also in oil consumption.
机译:乙醛酸循环是合成代谢途径,对于在不可发酵碳源(例如植物油)上生长是必需的,并且对于丝状真菌Ashbya gossypii生产核黄素至关重要。这项研究的目的是在棉铃虫的乙醛酸循环中鉴定苹果酸合酶,并研究其在菜籽油生产核黄素中的重要性。 ACR268C基因被鉴定为在乙醛酸循环中编码功能性苹果酸合酶的苹果酸合酶基因。 ACR268C基因敲除突变体丧失了苹果酸合酶活性,其核黄素生成和油耗分别比野生型菌株低10倍和2倍。相反,与对照菌株相比,ACR268C基因过表达菌株的苹果酸合酶活性提高了1.6倍,核黄素产量提高了1.7倍。这些结果表明,乙醛酸循环中的苹果酸合酶不仅在核黄素的产生中而且在油的消耗中具有重要作用。

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