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肌醇与盐度的偶联调控糖蜜废水中乙烯诱导的微藻油脂过度生产。

Coupling of myo-inositol with salinity regulates ethylene-induced microalgal lipid hyperproduction in molasses wastewater.

机构信息

Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming 650500, China.

Yunnan Yunce Quality Testing Co., Ltd, Kunming 650217, China.

出版信息

Sci Total Environ. 2022 Apr 20;818:151765. doi: 10.1016/j.scitotenv.2021.151765. Epub 2021 Nov 19.

Abstract

With the goal of cost-effective and high-efficient microalgae-based biodiesel production, this study evaluated the feasibility of the joint strategy concerning myo-inositol (MI) and salinity stress on lipid productivity of Monoraphidium sp. QLY-1 in molasses wastewater (MW). The maximal lipid productivity (147.79 mg L d) was obtained under combined 0.5 g L MI and 10 g L NaCl treatment, which was 1.40-fold higher than the control. Meanwhile, the nutrients removal from MW was markedly increased under MI-NaCl treatment. Moreover, exogenous MI upregulated key lipogenic genes' expressions, activated autophagic activity and ethylene (ET) signaling, and ultimately alleviated the salinity-induced damage via reactive oxygen species (ROS) signaling. Further pharmacologic experiment confirmed the indispensable role of ET in the lipogenesis progress under the combined treatment. These data demonstrated the combined salinity stress and MI treatment to be capable for lipid hyperproduction and wastewater nutrients removal, which contributes to practically integrating the microalgae cultivation with wastewater treatment.

摘要

为了实现经济高效的微藻生物柴油生产,本研究评估了肌醇(MI)和盐度胁迫联合策略对在糖蜜废水(MW)中生长的单胞藻 QLY-1 产脂的可行性。在 0.5 g/L MI 和 10 g/L NaCl 的联合处理下,获得了最大的脂产量(147.79 mg/L/d),比对照组提高了 1.40 倍。同时,MI-NaCl 处理显著增加了 MW 中的养分去除。此外,外源性 MI 上调了关键脂生成基因的表达,激活了自噬活性和乙烯(ET)信号通路,并通过活性氧(ROS)信号通路最终减轻了盐度诱导的损伤。进一步的药理学实验证实了 ET 在联合处理下脂生成过程中的不可或缺作用。这些数据表明,盐度胁迫和 MI 处理的联合作用能够促进脂质超量生产和废水养分去除,有助于将微藻培养与废水处理实际结合。

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