Impact of different cooking methods on the chemical profile of Orange-fleshed sweet potato (Ipomoea batatas L.)
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[1] B. Biduski,et al. Untargeted metabolomics analysis reveals improved phenolic profile in whole wheat bread with yerba mate and the effects of the bread-making process. , 2022, Food research international.
[2] Changyuan Wang,et al. Effect of Thermal Processing on the Metabolic Components of Black Beans on Ultra-High-Performance Liquid Chromatography Coupled with High-Field Quadrupole-Orbitrap High-Resolution Mass Spectrometry , 2022, Molecules.
[3] R. Joshi,et al. A comparative metabolomic investigation in fruit sections of Citrus medica L. and Citrus maxima L. detecting potential bioactive metabolites using UHPLC-QTOF-IMS. , 2022, Food research international.
[4] Aide Wang,et al. Integrated metabolome and transcriptome analysis of the regulatory network of volatile ester formation during fruit ripening in pear. , 2022, Plant physiology and biochemistry : PPB.
[5] Jianjun Wang,et al. Untargeted metabolomics and comparative flavonoid analysis reveal the nutritional aspects of pak choi. , 2022, Food chemistry.
[6] L. F. V. Ferrão,et al. Metabolomic selection for enhanced fruit flavor , 2020, Proceedings of the National Academy of Sciences.
[7] Jianan Huang,et al. Dynamic changes in the aroma profile of Qingzhuan tea during its manufacture. , 2021, Food chemistry.
[8] Jin-ming Zhang,et al. Comprehensive Metabolome and Volatilome Analyses in Eggplant and Tomato Reveal Their Differential Responses to Tuta absoluta Infestation , 2021, Frontiers in Plant Science.
[9] Kai-Min Yang,et al. Effects of Roasting Sweet Potato (Ipomoea batatas L. Lam.): Quality, Volatile Compound Composition, and Sensory Evaluation , 2021, Foods.
[10] Chaochen Tang,et al. Optimization of HS-SPME for GC-MS Analysis and Its Application in Characterization of Volatile Compounds in Sweet Potato , 2021, Molecules.
[11] C. Paton,et al. Design and Nutrient Analysis of a Carotenoid-Rich Food Product to Address Vitamin A and Protein Deficiency , 2021, Foods.
[12] Caifeng Xie,et al. Key aroma-active compounds in brown sugar and their influence on sweetness. , 2021, Food chemistry.
[13] J. Gallegos‐Infante,et al. Effect of ultrasound and steam treatments on bioaccessibility of β-carotene and physicochemical parameters in orange-fleshed sweet potato juice , 2021, Heliyon.
[14] M. Akhtaruzzaman,et al. Minerals, vitamin C, and effect of thermal processing on carotenoids composition in nine varieties orange-fleshed sweet potato (Ipomoea batatas L.) , 2020 .
[15] Do Yup Lee,et al. Discrimination of Cultivated Regions of Soybeans (Glycine max) Based on Multivariate Data Analysis of Volatile Metabolite Profiles , 2020, Molecules.
[16] Z. Bie,et al. Comparative analysis of volatile compounds in thirty nine melon cultivars by headspace solid-phase microextraction and gas chromatography-mass spectrometry. , 2020, Food chemistry.
[17] X. Zou,et al. Integrative analysis of metabolome and transcriptome reveals the mechanism of color formation in pepper fruit (Capsicum annuum L.). , 2020, Food chemistry.
[18] Xinbo Guo,et al. Effect of Thermal Processing on Carotenoids and Folate Changes in Six Varieties of Sweet Potato (Ipomoes Batata L.) , 2019, Foods.
[19] Taihua Mu,et al. Effects of cooking process on carotenoids and antioxidant activity of orange-fleshed sweet potato , 2019, LWT.
[20] Taihua Mu,et al. Optimization of processing technology using response surface methodology and physicochemical properties of roasted sweet potato. , 2019, Food chemistry.
[21] Jonathan P. Benskin,et al. Development, characterization and comparisons of targeted and non-targeted metabolomics methods , 2018, PloS one.
[22] M. Faber,et al. Incorporating orange-fleshed sweet potato into the food system as a strategy for improved nutrition: The context of South Africa. , 2017, Food research international.
[23] S. Martins,et al. Strecker Aldehyde Formation in Wine: New Insights into the Role of Gallic Acid, Glucose, and Metals in Phenylacetaldehyde Formation. , 2017, Journal of agricultural and food chemistry.
[24] C. Nicoletto,et al. Effect of different home-cooking methods on textural and nutritional properties of sweet potato genotypes grown in temperate climate conditions. , 2018, Journal of the science of food and agriculture.
[25] Heping Cao,et al. Effects of cooking methods on starch and sugar composition of sweetpotato storage roots , 2017, PloS one.
[26] F. Schütz,et al. Validation of the Mass-Extraction-Window for Quantitative Methods Using Liquid Chromatography High Resolution Mass Spectrometry. , 2016, Analytical chemistry.
[27] Michael R. La Frano,et al. Absorption, metabolism, and functions of β-cryptoxanthin. , 2016, Nutrition reviews.
[28] M. Ahn,et al. Variations in the carotenoid and anthocyanin contents of Korean cultural varieties and home-processed sweet potatoes , 2015 .
[29] H. Hwang. NMR spectroscopy for assessing lipid oxidation , 2015 .
[30] T. Palazoğlu,et al. Processing treatments for mitigating acrylamide formation in sweetpotato French fries. , 2014, Journal of agricultural and food chemistry.
[31] Natalia Dudareva,et al. Biosynthesis, function and metabolic engineering of plant volatile organic compounds. , 2013, The New phytologist.
[32] Brittany L. White,et al. Compositional and mechanical properties of peanuts roasted to equivalent colors using different time/temperature combinations. , 2012, Journal of food science.
[33] L. Soubigou-Taconnat,et al. Carotenoid oxidation products are stress signals that mediate gene responses to singlet oxygen in plants , 2012, Proceedings of the National Academy of Sciences.
[34] Ayhan Topuz,et al. Effects of Baking and Boiling on the Nutritional and Antioxidant Properties of Sweet Potato [Ipomoea batatas (L.) Lam.] Cultivars , 2011, Plant foods for human nutrition.
[35] S. Kays,et al. EFFECT OF COOKING METHOD ON THE AROMA CONSTITUENTS OF SWEET POTATOES [IPOMOEA BATATAS (L.) LAM.] , 2001 .