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Analysis of Genes for Succinoyl Trehalose Lipid Production and Increasing Production in Rhodococcus sp. Strain SD-74

机译:Rhodococcus sp。中琥珀酰海藻糖脂质产生和增加产量的基因分析。 SD-74株

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Succinoyl trehalose lipids (STLs) are promising glycolipid biosurfactants produced from n -alkanes that are secreted by Rhodococcus species bacteria. These compounds not only exhibit unique interfacial properties but also demonstrate versatile biochemical actions. In this study, three novel types of genes involved in the biosynthesis of STLs, including a putative acyl coenzyme A (acyl-CoA) transferase ( tlsA ), fructose-bisphosphate aldolase ( fda ), and alkane monooxygenase ( alkB ), were identified. The predicted functions of these genes indicate that alkane metabolism, sugar synthesis, and the addition of acyl groups are important for the biosynthesis of STLs. Based on these results, we propose a biosynthesis pathway for STLs from alkanes in Rhodococcus sp. strain SD-74. By overexpressing tlsA , we achieved a 2-fold increase in the production of STLs. This study advances our understanding of bacterial glycolipid production in Rhodococcus species.
机译:琥珀酰海藻糖脂质(STL)是由红球菌属细菌分泌的正构烷烃生产的有前途的糖脂生物表面活性剂。这些化合物不仅具有独特的界面特性,而且还具有多种生化作用。在这项研究中,确定了STL生物合成中涉及的三种新型基因,包括推定的酰基辅酶A(酰基辅酶A)转移酶(tlsA),果糖-双磷酸醛缩醛糖酶(fda)和烷烃单加氧酶(alkB)。这些基因的预测功能表明烷烃代谢,糖合成和酰基的添加对于STL的生物合成很重要。基于这些结果,我们提出了红球菌属中烷烃的STL的生物合成途径。 SD-74株。通过过度表达tlsA,我们使STL的产量增加了2倍。这项研究提高了我们对红球菌属细菌糖脂生产的了解。

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