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外源谷氨酸促进雨生红球藻 D3 虾青素产量和生物量共积累的能量代谢分析。

Energy metabolism analysis of exogenous glutamate on promoting co-accumulation of astaxanthin yield and biomass in Phaffia rhodozyma D3.

机构信息

College of Food Science and Engineering, Jilin Agricultural University, Changchun, China; Jilin Province Innovation Center for Food Biological Manufacture, Jilin Agricultural University, Changchun, China.

College of Food Science and Engineering, Jilin Agricultural University, Changchun, China; Jilin Province Innovation Center for Food Biological Manufacture, Jilin Agricultural University, Changchun, China; National Engineering Laboratory for Wheat and Corn Deep Processing, Changchun, China.

出版信息

Bioresour Technol. 2024 Jun;402:130834. doi: 10.1016/j.biortech.2024.130834. Epub 2024 May 11.

Abstract

Effective metabolic regulators play an essential role in regulating astaxanthin biosynthesis in Phaffia rhodozyma. In this study, it was found that 5 mM glutamate increased the astaxanthin yield and biomass of P. rhodozyma D3 to 22.34 mg/L and 6.12 g/L, which were 1.22 and 1.33 times higher than the control group, respectively. Meanwhile, glucose uptake was increased and the level of reactive oxygen species (ROS) was reduced with 5 mM glutamate. To further explore the interrelationship between glutamate and astaxanthin synthesis, the energy metabolism of P. rhodozyma D3 with and without glutamate was analysed. Glutamate promoted the Embden-Meyerhof-Parnas pathway (EMP) metabolic flux, modulated the tricarboxylic acid (TCA) cycle and the pentose phosphate pathway (PPP), activated the ornithine cycle and purine metabolism, and provided more ATP and NADPH for astaxanthin accumulation. This study clarified the possible mechanism by which glutamate promoted astaxanthin accumulation in P. rhodozyma.

摘要

有效的代谢调节剂在调节雨生红球藻中天冬氨酸的生物合成中起着至关重要的作用。在这项研究中,发现 5mM 谷氨酸可将雨生红球藻 D3 的虾青素产量和生物量提高到 22.34mg/L 和 6.12g/L,分别比对照组高 1.22 倍和 1.33 倍。同时,5mM 谷氨酸增加了葡萄糖的摄取量,降低了活性氧(ROS)的水平。为了进一步探讨谷氨酸与虾青素合成之间的相互关系,分析了添加和不添加谷氨酸的雨生红球藻 D3 的能量代谢。谷氨酸促进了糖酵解途径(EMP)代谢通量,调节了三羧酸(TCA)循环和磷酸戊糖途径(PPP),激活了鸟氨酸循环和嘌呤代谢,并为虾青素积累提供了更多的 ATP 和 NADPH。本研究阐明了谷氨酸促进雨生红球藻虾青素积累的可能机制。

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