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Responses to β-alanine and carnosine supplementation of mussel Mytilus coruscus as revealed by UPLC–MS/MS based untargeted metabolomics

机译:基于UPLC-MS / MS的未明确的代谢组学揭示了对贻贝霉菌Coruscus的β-丙氨酸和肉核苷酸的反应

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Histidine-containing dipeptides (HCDs) have been demonstrated with important physiological functions in vertebrates. This study was executed to investigate the contents and metabolic profiles of HCDs in an invertebrate, the mussel Mytilus coruscus was selected. The carnosine/anserine analysis indicated that M. coruscus contain anserine with a higher concentration than that of carnosine, and the increases in HCDs concentrations due to β-alanine injection and carnosine injection were observed, confirming that Mytilus belongs to a species with the ability of HCDs synthesis. Further metabolomics analysis was performed based on ultra-performance liquid chromatography-tandem mass spectrometry technology to explore the effects of β-alanine injection and carnosine injection, respectively, on the whole mussel tissue. A total of 1,868 significantly differential metabolites (SDMs) were detected between the β-alanine injected, carnosine injected, and the control M. coruscus groups. The SDMs induced by β-alanine injection were enriched mainly in energy metabolism, lipid metabolism, and amino acid metabolism of mussel, while carnosine injection mainly disrupted arachidonic acid metabolism, steroid hormone biosynthesis, and retinol metabolism in the mussel. The activities of antioxidant enzymes from the whole mussel tissue extracts before and after β-alanine/carnosine injection were measured, and both treatments showed significant elevation of enzymatic activities of superoxide dismutase and catalase. Considering the positive effects of β-alanine injection on mussel metabolism, this study provided a clue for the potential application of β-alanine supplementation in mussel farming.
机译:已经证明了含组氨酸二肽(HCD),在脊椎动物中具有重要的生理功能。执行该研究以研究无脊椎动物中HCD的内容和代谢谱,贻贝·米蒂斯科斯科鲁斯被选中。肉瘤/连环分析表明,M. Coruscus含有浓度高于肉肽的苯胺,并且观察到由于β-丙氨酸注射液和肉毒碱液注射引起的HCD浓度的增加,证实米利卢斯属于具有含有能力的物种HCD合成。进一步的代谢组科分析是基于超高性能液相色谱 - 串联质谱技术进行的,以探讨β-丙氨酸注射液和肉毒鱼注射的影响,分别对整个贻贝组织。在注射β-丙氨酸注射的β-丙氨酸,注射的肉藻胺和对照组Coruscus组之间,总共1,868种显着差异的代谢物(SDMS)。由β-丙氨酸注射诱导的SDMS主要富含能量代谢,脂质代谢和贻贝的氨基酸代谢,而肉毒肽注射主要破坏了贻贝的类肝酸代谢,类固醇激素生物合成和视黄醇代谢。测量了β-丙氨酸注射液之前和之后的全贻贝组织提取物的抗氧化酶的活性,并且两种治疗表明超氧化物歧化酶和过氧化氢酶的酶活性显着升高。考虑到β-丙氨酸注射对贻贝代谢的积极影响,本研究提供了一种用于潜在应用β-丙氨酸补充在贻贝养殖中的线索。

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