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氮磷限制对……中脂肪酸含量的影响

Effects of Nitrogen and Phosphorus Limitation on Fatty Acid Contents in .

作者信息

Lv Gongbo, Xu Ying, Tu Yayi, Cheng Xiaojie, Zeng Bin, Huang Jianhua, He Bin

机构信息

Jiangxi Key Laboratory of Bioprocess Engineering and Co-Innovation Center for In-Vitro Diagnostic Reagents and Devices of Jiangxi Province, College of Life Sciences, Jiangxi Science and Technology Normal University, Nanchang, China.

College of Life Sciences, Sichuan Normal University, Chengdu, China.

出版信息

Front Microbiol. 2021 Oct 21;12:739569. doi: 10.3389/fmicb.2021.739569. eCollection 2021.

Abstract

, commonly known as koji mold, has been widely used for the large-scale production of food products (sake, makgeolli, and soy sauce) and can accumulate a high level of lipids. In the present study, we showed the dynamic changes in mycelium growth and conidia formation under nitrogen and phosphorus nutrient stress. The fatty acid profile of was determined and the content of unsaturated fatty acid was found increased under nitrogen and phosphorus limitation. Oleic acid (C), linoleic acid (C), and γ-linolenic acid (C) production were increased on five nitrogen and phosphorus limitation media, especially on nitrogen deep limitation and phosphorus limitation group, showing a 1. 2-, 1. 6-, and 2.4-fold increment, respectively, compared with the control. Transcriptomic analysis showed the expression profile of genes related to nitrogen metabolism, citrate cycle, and linoleic acid synthesis, resulting in the accumulation of unsaturated fatty acid. qRT-PCR results further confirmed the reliability and availability of the differentially expressed genes obtained from the transcriptome analysis. Our study provides a global transcriptome characterization of the nitrogen and phosphorus nutrient stress adaptation process in . It also revealed that the molecular mechanisms of respond to nitrogen and phosphorus stress. Our finding facilitates the construction of industrial strains with a nutrient-limited tolerance.

摘要

米曲霉,通常被称为曲霉菌,已被广泛用于大规模生产食品(清酒、马格利酒和酱油),并且能够积累高水平的脂质。在本研究中,我们展示了米曲霉在氮和磷营养胁迫下菌丝体生长和分生孢子形成的动态变化。测定了米曲霉的脂肪酸谱,发现不饱和脂肪酸含量在氮和磷限制条件下增加。在五种氮和磷限制培养基上,油酸(C)、亚油酸(C)和γ-亚麻酸(C)的产量增加,特别是在深度氮限制和磷限制组,与对照相比分别增加了1.2倍、1.6倍和2.4倍。转录组分析显示了与氮代谢、柠檬酸循环和亚油酸合成相关基因的表达谱,导致不饱和脂肪酸的积累。qRT-PCR结果进一步证实了从转录组分析中获得的差异表达基因的可靠性和可用性。我们的研究提供了米曲霉对氮和磷营养胁迫适应过程的全局转录组特征。它还揭示了米曲霉响应氮和磷胁迫的分子机制。我们的发现有助于构建具有营养限制耐受性的工业菌株。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f73/8566876/5d6745df505d/fmicb-12-739569-g001.jpg

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