guanosine-monophosphate and malic-acid

guanosine-monophosphate has been researched along with malic-acid* in 1 studies

Other Studies

1 other study(ies) available for guanosine-monophosphate and malic-acid

ArticleYear
Analysis and Evaluation of the Characteristic Taste Components in Portobello Mushroom.
    Journal of food science, 2018, Volume: 83, Issue:6

    To identify the characteristic taste components of the common cultivated mushroom (brown; Portobello), Agaricus bisporus, taste components in the stipe and pileus of Portobello mushroom harvested at different growth stages were extracted and identified, and principal component analysis (PCA) and taste active value (TAV) were used to reveal the characteristic taste components during the each of the growth stages of Portobello mushroom. In the stipe and pileus, 20 and 14 different principal taste components were identified, respectively, and they were considered as the principal taste components of Portobello mushroom fruit bodies, which included most amino acids and 5'-nucleotides. Some taste components that were found at high levels, such as lactic acid and citric acid, were not detected as Portobello mushroom principal taste components through PCA. However, due to their high content, Portobello mushroom could be used as a source of organic acids. The PCA and TAV results revealed that 5'-GMP, glutamic acid, malic acid, alanine, proline, leucine, and aspartic acid were the characteristic taste components of Portobello mushroom fruit bodies. Portobello mushroom was also found to be rich in protein and amino acids, so it might also be useful in the formulation of nutraceuticals and functional food.. The results in this article could provide a theoretical basis for understanding and regulating the characteristic flavor components synthesis process of Portobello mushroom.

    Topics: Agaricus; Amino Acids; Citric Acid; Dietary Proteins; Flavoring Agents; Food Analysis; Fruiting Bodies, Fungal; Functional Food; Glutamic Acid; Guanosine Monophosphate; Humans; Lactic Acid; Malates; Nucleotides; Taste

2018