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从甜椒(L.)果实中鉴定具有潜在治疗用途的化合物及其对一氧化氮(NO)的调节作用。

Identification of Compounds with Potential Therapeutic Uses from Sweet Pepper ( L.) Fruits and Their Modulation by Nitric Oxide (NO).

机构信息

Group of Antioxidant, Free Radicals and Nitric Oxide in Biotechnology, Food and Agriculture, Department of Biochemistry, Cell and Molecular Biology of Plants, Estación Experimental del Zaidín, CSIC, 18008 Granada, Spain.

Department of Screening & Target Validation, Fundación MEDINA, 18016 Granada, Spain.

出版信息

Int J Mol Sci. 2021 Apr 25;22(9):4476. doi: 10.3390/ijms22094476.

Abstract

Plant species are precursors of a wide variety of secondary metabolites that, besides being useful for themselves, can also be used by humans for their consumption and economic benefit. Pepper ( L.) fruit is not only a common food and spice source, it also stands out for containing high amounts of antioxidants (such as vitamins C and A), polyphenols and capsaicinoids. Particular attention has been paid to capsaicin, whose anti-inflammatory, antiproliferative and analgesic activities have been reported in the literature. Due to the potential interest in pepper metabolites for human use, in this project, we carried out an investigation to identify new bioactive compounds of this crop. To achieve this, we applied a metabolomic approach, using an HPLC (high-performance liquid chromatography) separative technique coupled to metabolite identification by high resolution mass spectrometry (HRMS). After chromatographic analysis and data processing against metabolic databases, 12 differential bioactive compounds were identified in sweet pepper fruits, including quercetin and its derivatives, L-tryptophan, phytosphingosin, FAD, gingerglycolipid A, tetrahydropentoxylin, blumenol C glucoside, colnelenic acid and capsoside A. The abundance of these metabolites varied depending on the ripening stage of the fruits, either immature green or ripe red. We also studied the variation of these 12 metabolites upon treatment with exogenous nitric oxide (NO), a free radical gas involved in a good number of physiological processes in higher plants such as germination, growth, flowering, senescence, and fruit ripening, among others. Overall, it was found that the content of the analyzed metabolites depended on the ripening stage and on the presence of NO. The metabolic pattern followed by quercetin and its derivatives, as a consequence of the ripening stage and NO treatment, was also corroborated by transcriptomic analysis of genes involved in the synthesis of these compounds. This opens new research perspectives on the pepper fruit's bioactive compounds with nutraceutical potentiality, where biotechnological strategies can be applied for optimizing the level of these beneficial compounds.

摘要

植物物种是多种次生代谢物的前体,这些代谢物不仅对自身有用,而且可以被人类用于消费和经济利益。辣椒(L.)果实不仅是一种常见的食物和香料来源,而且还因其含有大量抗氧化剂(如维生素 C 和 A)、多酚和辣椒素而引人注目。人们特别关注辣椒素,其抗炎、抗增殖和镇痛活性已在文献中报道。由于人们对辣椒代谢物对人类的潜在兴趣,在这个项目中,我们进行了一项调查,以确定这种作物的新生物活性化合物。为了实现这一目标,我们采用了代谢组学方法,使用高效液相色谱(HPLC)分离技术,并结合高分辨率质谱(HRMS)对代谢物进行鉴定。经过色谱分析和针对代谢物数据库的数据处理,在甜椒果实中鉴定出 12 种差异生物活性化合物,包括槲皮素及其衍生物、L-色氨酸、植物鞘氨醇、FAD、gingerglycolipid A、四氢戊基氧芴、blumenol C 葡萄糖苷、colnelenic 酸和 capsoside A。这些代谢物的丰度取决于果实的成熟阶段,要么是未成熟的绿色,要么是成熟的红色。我们还研究了这些 12 种代谢物在外源一氧化氮(NO)处理下的变化情况,NO 是一种自由基气体,参与高等植物的许多生理过程,如发芽、生长、开花、衰老和果实成熟等。总的来说,发现分析代谢物的含量取决于成熟阶段和 NO 的存在。槲皮素及其衍生物的代谢模式,由于成熟阶段和 NO 处理的原因,也得到了参与这些化合物合成的基因的转录组分析的证实。这为具有营养潜力的辣椒果实的生物活性化合物开辟了新的研究前景,其中生物技术策略可用于优化这些有益化合物的水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/105d/8123290/b547521b1d99/ijms-22-04476-g001.jpg

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