[Multi-omics analysis of hormesis effect of lanthanum chloride on carotenoid synthesis in Rhodotorula mucilaginosa].

Q4 Biochemistry, Genetics and Molecular Biology
Hong Zhang, Tong Wen, Zhihong Wang, Xin Zhao, Hao Wu, Pengcheng Xiang, Yong Ma
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引用次数: 0

Abstract

Hormesis effect has been observed in the secondary metabolite synthesis of microorganisms induced by rare earth elements. However, the underlying molecular mechanism remains unclear. To analyze the molecular mechanism of the regulatory effect of Rhodotorula mucilaginosa in the presence of lanthanum chloride, different concentrations of lanthanum chloride were added to the fermentation medium of Rhodotorula mucilaginosa, and the carotenoid content was subsequently measured. It was found that the concentrations of La3+ exerting the promotional and inhibitory effects were 0-100 mg/L and 100-400 mg/L, respectively. Furthermore, the expression of 33 genes and the synthesis of 55 metabolites were observed to be up-regulated, while the expression of 85 genes and the synthesis of 123 metabolites were found to be down-regulated at the concentration range of the promotional effect. Notably, the expression of carotenoid synthesis-related genes except AL1 was up-regulated. Additionally, the content of β-carotene, lycopene, and astaxanthin demonstrated increases of 10.74%, 5.02%, and 3.22%, respectively. The expression of 5 genes and the synthesis of 91 metabolites were up-regulated, while the expression of 35 genes and the synthesis of 138 metabolites were down-regulated at the concentration range of the inhibitory effect. Meanwhile, the content of β-carotene, lycopene, and astaxanthin decreased by 21.73%, 34.81%, and 35.51%, respectively. In summary, appropriate concentrations of rare earth ions can regulate the synthesis of secondary metabolites by modulating the activities of various enzymes involved in metabolic pathways, thereby exerting the hormesis effect. The findings of this study not only contribute to our comprehension for the mechanism of rare earth elements in organisms but also offer a promising avenue for the utilization of rare earth elements in diverse fields, including agriculture, pharmaceuticals, and healthcare.

氯化镧对黏胶红霉菌类胡萝卜素合成的多组学效应分析
稀土元素对微生物次生代谢产物的合成具有激效效应。然而,潜在的分子机制尚不清楚。为分析黏红酵母在氯化镧存在下调控作用的分子机制,在黏红酵母发酵培养基中加入不同浓度的氯化镧,测定其类胡萝卜素含量。结果表明,La3+的浓度分别为0 ~ 100 mg/L和100 ~ 400 mg/L。在促进作用的浓度范围内,有33个基因表达上调,55个代谢物合成下调,85个基因表达下调,123个代谢物合成下调。值得注意的是,除AL1外,类胡萝卜素合成相关基因的表达均上调。β-胡萝卜素、番茄红素和虾青素含量分别提高了10.74%、5.02%和3.22%。在抑制作用的浓度范围内,5个基因表达上调,91个代谢物合成下调,35个基因表达下调,138个代谢物合成下调。β-胡萝卜素、番茄红素和虾青素含量分别下降21.73%、34.81%和35.51%。综上所述,适当浓度的稀土离子可以通过调节参与代谢途径的各种酶的活性来调节次生代谢物的合成,从而发挥激效效应。该研究结果不仅有助于我们对稀土元素在生物体内的作用机制的理解,而且为稀土元素在农业、医药、医疗等领域的应用提供了一条有希望的途径。
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来源期刊
Sheng wu gong cheng xue bao = Chinese journal of biotechnology
Sheng wu gong cheng xue bao = Chinese journal of biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
1.50
自引率
0.00%
发文量
298
期刊介绍: Chinese Journal of Biotechnology (Chinese edition) , sponsored by the Institute of Microbiology, Chinese Academy of Sciences and the Chinese Society for Microbiology, is a peer-reviewed international journal. The journal is cited by many scientific databases , such as Chemical Abstract (CA), Biology Abstract (BA), MEDLINE, Russian Digest , Chinese Scientific Citation Index (CSCI), Chinese Journal Citation Report (CJCR), and Chinese Academic Journal (CD version). The Journal publishes new discoveries, techniques and developments in genetic engineering, cell engineering, enzyme engineering, biochemical engineering, tissue engineering, bioinformatics, biochips and other fields of biotechnology.
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