[1] D’AGOSTINO M F, SANZ J, SANZ M L, et al.Optimization of a solid-phase microextraction method for the gas chromatography-mass spectrometry analysis of blackberry (Rubus ulmifolius Schott) fruit volatiles[J].Food Chemistry, 2015, 178:10-17.
[2] INGA M, GARCÍA J M, AGUILAR-GALVEZ A, et al.Chemical characterization of odour-active volatile compounds during Lucuma (Pouteria lucuma) fruit ripening[J].CyTA-Journal of Food, 2019, 17(1):494-500.
[3] 张玉萍, 莫丽媛, 丁惠敏, 等.双乙酰处理对鲜切西兰花贮藏品质及抗氧化能力的影响[J/OL].食品与发酵工业, 2024.https://doi.org/10.13995/j.cnki.11-1802/ts.038197.
ZHANG Y P, MO L Y, DING H M, et al.Effects of diacetyl treatment on storage quality and antioxidant capacity of fresh-cut broccoli[J/OL].Food and Fermentation Industries, 2024.https://doi.org/10.13995/j.cnki.11-1802/ts.038197.
[4] LIU J M, CHAN S H J, BROCK-NANNESTAD T, et al.Combining metabolic engineering and biocompatible chemistry for high-yield production of homo-diacetyl and homo-(S,S)-2, 3-butanediol[J].Metabolic Engineering, 2016, 36:57-67.
[5] WANG Y, LI L X, MA C Q, et al.Engineering of cofactor regeneration enhances (2S, 3S)-2, 3-butanediol production from diacetyl[J].Scientific Reports, 2013, 3(1):2643.
[6] HALLAGAN J B.The use of diacetyl (2, 3-butanedione) and related flavoring substances as flavorings added to foods:Workplace safety issues[J].Toxicology, 2017, 388:1-6.
[7] 周全.一种2,3-丁二酮合成方法的研究[D].长沙:湖南师范大学, 2011.
ZHOU Q.Study on a synthetic method of 2,3-butanedione[D].Changsha:Hunan Normal University, 2011.
[8] 王悦鹏. 产丁二酮芽孢杆菌的改造及发酵优化[D].大连:大连理工大学, 2019.
WANG Y P. Transformation and fermentation optimization of butanone-producing Bacillus[D]. Dalian: Dalian University of Technology, 2019.
[9] 练敏, 纪晓俊, 黄和, 等.香料2,3-丁二酮的合成现状及展望[J].现代化工, 2008, 28(8):29-32;34.
LIAN M, JI X J, HUANG H, et al.Present production and prospect of flavor 2,3-butanedione[J].Modern Chemical Industry, 2008, 28(8):29-32;34.
[10] 陈聪. 谷氨酸棒状杆菌合成双乙酰的代谢工程研究[D].天津:天津大学, 2020.
CHEN C. Study on metabolic engineering of diacetyl synthesis by Corynebacterium glutamicum[D]. Tianjin: Tianjin University, 2020.
[11] ANUNZIATA O A, PIERELLA L B, COSTA M G, et al.Studies on the synthesis of diacetyl over oxidation zeolite catalysts[J].Catalysis Letters, 2001, 71(1):127-131.
[12] BELTRAMONE A, GOMEZ M, PIERELLA L, et al.Synthesis of 2, 3-butanedione over TS-1, Ti-NCl, TiMCM-41, Ti-beta, Fe-Si, Fe-beta and VS-1 zeolites[J].Molecules, 2000, 5(3):610-611.
[13] 谢海燕. 丁酮气相催化氧化制丁二酮[D].长沙:湖南师范大学, 2001.
XIE H Y. Preparation of butanone by gas phase catalytic oxidation of butanone[D]. Changsha: Hunan Normal University, 2001.
[14] 刘耀华. 微波辐射三氯化铁氧化乙偶姻合成丁二酮[J].化学世界, 2017, 58(9):531-533.
LIU Y H.Butanedione preparation by oxidizing acetoin with ferric chloride under microwave radiation[J].Chemical World, 2017, 58(9):531-533.
[15] 王江梅, 张银新, 丁世玲, 等.电化学合成丁二酮的研究[J].辽宁化工, 2011, 40(5):451-452.
WANG J M, ZHANG Y X, DING S L, et al.Synthesis of diacetyl with electrochemical method[J].Liaoning Chemical Industry, 2011, 40(5):451-452.
[16] TESHOME E, FORSIDO S F, VASANTHA RUPASINGHE H P, et al.Potentials of natural preservatives to enhance food safety and shelf life:A review[J].The Scientific World Journal, 2022, 2022(1):9901018.
[17] LO R, HO V T T, BANSAL N, et al.The genetic basis underlying variation in production of the flavour compound diacetyl by Lactobacillus rhamnosus strains in milk[J].International Journal of Food Microbiology, 2018, 265:30-39.
[18] MONNET C, AYMES F, CORRIEU G.Diacetyl and α-acetolactate overproduction by Lactococcus lactis subsp.lactis biovar diacetylactis mutants that are deficient in α-acetolactate decarboxylase and have a low lactate dehydrogenase activity[J].Applied and Environmental Microbiology, 2000, 66(12):5518-5520.
[19] NADAL I, RICO J, PÉREZ-MARTÍNEZ G, et al.Diacetyl and acetoin production from whey permeate using engineered Lactobacillus casei[J].Journal of Industrial Microbiology and Biotechnology, 2009, 36(9):1233-1237.
[20] GAO X, XU N, LI S B, et al.Metabolic engineering of Candida glabrata for diacetyl production[J].PLoS One, 2014, 9(3):e89854.
[21] ZHANG L J, ZHANG Y X, LIU Q Y, et al.Production of diacetyl by metabolically engineered Enterobacter cloacae[J].Scientific Reports, 2015, 5:9033.
[22] WANG Y P, SUN W H, ZHENG S H, et al.Genetic engineering of Bacillus sp.and fermentation process optimizing for diacetyl production[J].Journal of Biotechnology, 2019, 301:2-10.
[23] DORAU R, CHEN L, LIU J M, et al.Efficient production of α-acetolactate by whole cell catalytic transformation of fermentation-derived pyruvate[J].Microbial Cell Factories, 2019, 18(1):217.
[24] 杨丽杰, 王俊沪.乳酸乳球菌中双乙酰代谢支路的调控[J].中国乳品工业, 2004, 32(5):24-29.
YANG L J, WANG J H.Genetic manipulation of the pathway for diacetyl metabolism in Lactococcus lactis[J].China Dairy Industry, 2004, 32(5):24-29.
[25] 崔真真, 毛雨丰, 陈聪, 等.生物法合成双乙酰的研究进展[J].生物加工过程, 2017, 15(5):57-64.
CUI Z Z, MAO Y F, CHEN C, et al.Recent advances for microbial production of diacetyl[J].Chinese Journal of Bioprocess Engineering, 2017, 15(5):57-64.
[26] ZHAO L, BAO Y M, WANG J Y, et al.Optimization and mechanism of diacetyl accumulation by Enterobacter aerogenes mutant UV-3[J].World Journal of Microbiology and Biotechnology, 2009, 25(1):57-64.
[27] GAO J, XU Y Y, LI F W, et al.Production of S-acetoin from diacetyl by Escherichia coli transformant cells that express the diacetyl reductase gene of Paenibacillus polymyxa ZJ-9[J].Letters in Applied Microbiology, 2013, 57(4):274-281.
[28] AUNSBJERG S D, HONORÉ A H, MARCUSSEN J, et al.Contribution of volatiles to the antifungal effect of Lactobacillus paracasei in defined medium and yogurt[J].International Journal of Food Microbiology, 2015, 194:46-53.
[29] SALMERÓN I, THOMAS K, PANDIELLA S S.Effect of substrate composition and inoculum on the fermentation kinetics and flavour compound profiles of potentially non-dairy probiotic formulations[J].LWT-Food Science and Technology, 2014, 55(1):240-247.
[30] JANG H W, JIANG Y P, HENGEL M, et al.Formation of 4 (5)-methylimidazole and its precursors, α-dicarbonyl compounds, in Maillard model systems[J].Journal of Agricultural and Food Chemistry, 2013, 61(28):6865-6872.
[31] DUDKIEWICZ A, HAYES W, ONARINDE B.Sensory quality and shelf-life of locally produced British butters compared to large-scale, industrially produced butters[J].British Food Journal, 2022, 124(10):3220-3235.
[32] ATTAIE R.Quantification of volatile compounds in goat milk Jack cheese using static headspace gas chromatography[J].Journal of Dairy Science, 2009, 92(6):2435-2443.
[33] PARK Y W, DRAKE M A.Effect of 3 months frozen-storage on organic acid contents and sensory properties, and their correlations in soft goat milk cheese[J].Small Ruminant Research, 2005, 58(3):291-298.
[34] CHAUHAN J M, LIM S Y, POWERS J R, et al.Short communication:Low-fat ice cream flavor not modified by high hydrostatic pressure treatment of whey protein concentrate[J].Journal of Dairy Science, 2010, 93(4):1452-1458.
[35] KIM Y, AHN H, LEE K G.Analysis of glyoxal, methylglyoxal and diacetyl in soy sauce[J].Food Science and Biotechnology, 2021, 30(11):1403-1408.
[36] LIM C M, JHOO J W, KIM G Y.Determination of volatile flavor compounds during storage of cereal added yogurt using HS-SPME[J].Korean Journal for Food Science of Animal Resources, 2013, 33(5):646-654.
[37] RINCON-DELGADILLO M I, LOPEZ-HERNANDEZ A, WIJAYA I, et al.Diacetyl levels and volatile profiles of commercial starter distillates and selected dairy foods[J].Journal of Dairy Science, 2012, 95(3):1128-1139.
[38] BAEK C W, CHANG H J, LEE J H.Method validation and assessment of hazardous substances and quality control characteristics in traditional fruit wines[J].Foods, 2022, 11(19):3047.
[39] WANG J Y, WANG X J, HUI X, et al.Determination of diacetyl in beer by a precolumn derivatization-HPLC-UV method using 4-(2, 3-dimethyl-6-quinoxalinyl)-1, 2-benzenediamine as a derivatizing reagent[J].Journal of Agricultural and Food Chemistry, 2017, 65(12):2635-2641.
[40] FENG T T, XU X B, DU M, et al.Simultaneous determination of glyoxal, methylglyoxal and diacetyl in beverages using Vortex-assisted liquid-liquid microextraction coupled with HPLC-DAD[J].Analytical Methods, 2017, 9(16):2445-2451.
[41] PAPETTI A, MASCHERPA D, GAZZANI G.Free α-dicarbonyl compounds in coffee, barley coffee and soy sauce and effects of in vitro digestion[J].Food Chemistry, 2014, 164:259-265.
[42] MARCEAU E, YAYLAYAN V A.Profiling of α-dicarbonyl content of commercial honeys from different botanical origins:Identification of 3, 4-dideoxyglucoson-3-ene (3, 4-DGE) and related compounds[J].Journal of Agricultural and Food Chemistry, 2009, 57(22):10837-10844.
[43] PAPETTI A, MASCHERPA D, MARRUBINI G, et al.Effect of in vitro digestion on free α-dicarbonyl compounds in balsamic vinegars[J].Journal of Food Science, 2013, 78(4):C514-C519.
[44] ZALÀN Z, HUDÀČEK J, TÓTH-MARKUS M, et al.Sensorically and antimicrobially active metabolite production of Lactobacillus strains on Jerusalem artichoke juice[J].Journal of the Science of Food and Agriculture, 2011, 91(4):672-679.
[45] GUÉRAUD F, ATALAY M, BRESGEN N, et al.Chemistry and biochemistry of lipid peroxidation products[J].Free Radical Research, 2010, 44(10):1098-1124.
[46] HIDALGO F J, ZAMORA R.Carbonyl chemistry and the formation of heterocyclic aromatic amines with the structure of aminoimidazoazaarene[J].Journal of Agricultural and Food Chemistry, 2022, 70(1):79-86.
[47] SHIBAMOTO T.Diacetyl:Occurrence, analysis, and toxicity[J].Journal of Agricultural and Food Chemistry, 2014, 62(18):4048-4053.
[48] HAMZAL1OĞLU A, GÖKMEN V.5-Hydroxymethylfurfural accumulation plays a critical role on acrylamide formation in coffee during roasting as confirmed by multiresponse kinetic modelling[J].Food Chemistry, 2020, 318:126467.
[49] RODRIGUES J A, BARROS A A, ALMEIDA P J, et al.Flow injection square wave cathodic stripping voltammetric determination at a hanging mercury drop electrode of rapidly reduced compounds:Determination of diacetyl in wine as 2, 3-dimethylquinoxaline[J].Analytica Chimica Acta, 2001, 449(1-2):119-127.
[50] CRUZ A G, CASTRO W F, FARIA J A F, et al.Probiotic yogurts manufactured with increased glucose oxidase levels:Postacidification, proteolytic patterns, survival of probiotic microorganisms, production of organic acid and aroma compounds[J].Journal of Dairy Science, 2012, 95(5):2261-2269.
[51] 裴志雯, 殷俊玲, 夏傲喃, 等.高产双乙酰的附属发酵剂筛选及其对切达奶酪品质的影响[J].食品与发酵工业, 2024,50(20):1-8.
PEI Z W, YIN J L, XIA A N, et al.Screening and application of adjunct culture for high productinn of diacetyl in cheddar cheese[J].Food and Fermentation Industries, 2024,50(20):1-8.
[52] KIM Y, YOON S, SHIN H, et al.Isolation of Lactococcus lactis ssp.cremoris LRCC5306 and optimization of diacetyl production conditions for manufacturing sour cream[J].Food Science of Animal Resources, 2021, 41(3):373-385.
[53] MILESI M M, WOLF I V, BERGAMINI C V, et al.Two strains of nonstarter lactobacilli increased the production of flavor compounds in soft cheeses[J].Journal of Dairy Science, 2010, 93(11):5020-5031.
[54] MAKHAL S, KANAWJIA S K, GIRI A.Process for improving the quality of direct acidified C ottage cheese[J].International Journal of Dairy Technology, 2014, 67(4):530-538.
[55] TIAN H X, SHI Y H, ZHANG Y, et al.Screening of aroma-producing lactic acid bacteria and their application in improving the aromatic profile of yogurt[J].Journal of Food Biochemistry, 2019, 43(10):e12837.
[56] LI P, GAO Y Y, WANG C L, et al.Effect of ILV6 deletion and expression of aldB from Lactobacillus plantarum in Saccharomyces uvarum on diacetyl production and wine flavor[J].Journal of Agricultural and Food Chemistry, 2018, 66(32):8556-8565.
[57] LORUSSO A, CODA R, MONTEMURRO M, et al.Use of selected lactic acid bacteria and quinoa flour for manufacturing novel yogurt-like beverages[J].Foods, 2018, 7(4):51.
[58] NGUYEN H T H, GOMES REIS M, WA Y C, et al.Differences in aroma metabolite profile, microstructure, and rheological properties of fermented milk using different cultures[J].Foods, 2023, 12(9):1875.
[59] CHOI E J, AHN H W, KIM W J.Effect of α-acetolactate decarboxylase on diacetyl content of beer[J].Food Science and Biotechnology, 2015, 24(4):1373-1380.
[60] BARTOWSKY E J, HENSCHKE P A.The ‘buttery’attribute of wine:Diacetyl:Desirability, spoilage and beyond[J].International Journal of Food Microbiology, 2004, 96(3):235-252.
[61] WANG L, LIU Y F, YANG F, et al.Microbiome analysis and random forest algorithm-aided identification of the diacetyl-producing microorganisms in the stacking fermentation stage of Maotai-flavor liquor production[J].Food Biotechnology, 2019, 33(4):338-352.
[62] ZHOU Z L, JIAN D Z, GONG M, et al.Characterization of the key aroma compounds in aged Zhenjiang aromatic vinegar by gas chromatography-olfactometry-mass spectrometry, quantitative measurements, aroma recombination and omission experiments[J].Food Research International, 2020, 136:109434.
[63] CALLEJÓN R M, MORALES M L, TRONCOSO A M, et al.Targeting key aromatic substances on the typical aroma of sherry vinegar[J].Journal of Agricultural and Food Chemistry, 2008, 56(15):6631-6639.
[64] 王洪江,赵品贞,姬庆,等.影响蚝油气味品质的关键风味化合物的研究[J/OL].食品与发酵工业, 2024.https://doi.org/10.13995/j.cnki.11-1802/ts.039288.
WANG H J, ZHAO P Z, JI Q, et al.Study on key flavor compounds influencing odor quality of oyster sauce products[J/OL].Food and Fermentation Industries, 2024.https://doi.org/10.13995/j.cnki.11-1802/ts.039288.
[65] WILLIAMS-CAMPBELL A M, JAY J M.Effects of diacetyl and carbon dioxide on spoilage microflora in ground beef[J].Journal of Food Protection, 2002, 65(3):523-527.
[66] 刘英丽, 杨梓妍, 万真, 等.发酵剂对发酵香肠挥发性风味物质形成的作用及影响机制研究进展[J].食品科学, 2021, 42(11):284-296.
LIU Y L, YANG Z Y, WAN Z, et al.Progress in understanding the effect and mechanism of starter cultures on the formation of volatile flavor compounds in fermented sausage[J].Food Science, 2021, 42(11):284-296.
[67] HOLCK A, AXELSSON L, MCLEOD A, et al.Health and safety considerations of fermented sausages[J].Journal of Food Quality, 2017, 2017(1):9753894.
[68] LI X T, MENG Z, MALIK A U, et al.Maintaining the quality of postharvest broccoli by inhibiting ethylene accumulation using diacetyl[J].Frontiers in Nutrition, 2022, 9:1055651.
[69] LING L J, PANG M M, LUO H, et al.Antifungal activity of diacetyl, a volatile organic compound, on Trichoderma lixii F2 isolated from postharvest Lanzhou lily bulbs[J].Food Bioscience, 2023, 52:102365.
[70] LI X T, ZHANG S, WANG Q G, et al.Diacetyl inhibits the browning of fresh-cut stem lettuce by regulating the metabolism of phenylpropane and antioxidant ability[J].Foods, 2023, 12(4):740.
[71] CALVO H, MENDIARA I, ARIAS E, et al.Antifungal activity of the volatile organic compounds produced by Bacillus velezensis strains against postharvest fungal pathogens[J].Postharvest Biology and Technology, 2020, 166:111208.