1 |
MINUSSI R C, PASTORE G M, DURÁN N .Potential applications of laccase in the food industry[J].Trends in Food Science & Technology,2002,13(6/7):205-216.
|
2 |
GUAN Z, LUO Q, WANG H,et al .Bacterial laccases:promising biological green tools for industrial applications[J].Cellular and Molecular Life Sciences,2018,75(19):3569-3592.
|
3 |
张海华,朱跃进,张士康,等 .茶多酚对高筋粉面团流变特性的影响[J].食品科学,2016,37(13): 42-46.
|
|
ZHANG Haihua, ZHU Yuejin, ZHANG Shikang,et al .Effect of tea polyphenols on rheological properties of high-gluten wheat dough[J].Food Science,2016,37(13):42-46.
|
4 |
SI J Q .Use of laccase in baking:WO1994028728[P].1994-12-22.
|
5 |
MANHIVI V E, AMONSOU E O, KUDANGA T .Laccase-mediated crosslinking of gluten-free amadumbe flour improves rheological properties[J].Food Chemistry,2018,264:157-163.
|
6 |
MCKERCHAR H J, CLERENS S, DOBSON R C J,et al .Protein-protein crosslinking in food:proteomic characterisation methods,consequences and applications[J].Trends in Food Science & Technology,2019,86:217-229.
|
7 |
SELINHEIMO E, KRUUS K, BUCHERT J,et al .Effects of laccase,xylanase and their combination on the rheological properties of wheat doughs[J].Journal of Cereal Science,2006,43(2):152-159.
|
8 |
FLANDER L, ROUAU X, MOREL M,et al .Effects of laccase and xylanase on the chemical and rheological properties of oat and wheat doughs[J].Journal of Agricultural and Food Chemistry,2008,56(14):5732-5742.
|
9 |
PRIMO-MARTIN C, VALERA R, MARTINEZ-ANAYA M A .Effect of pentosanase and oxidases on the characteristics of doughs and the glutenin macropolymer (GMP)[J].Journal of Agricultural and Food Chemistry,2003,51(16):4673-4679.
|
10 |
MATTINEN M L, KRUUS K, BUCHERT J,et al .Laccase-catalyzed polymerization of tyrosine-containing peptides[J].FEBS Journal,2005,272(14):3640-3650.
|
11 |
LANTTO R, SCHÖNBERG C, BUCHERT J,et al .Effects of laccase-mediator combinations on wool[J].Textile Research Journal,2004,74(8):713-717.
|
12 |
DENG N, BIAN X, LUO S,et al .The starch-polyphenol inclusion complex:preparation,characterization and digestion[J].Food Bioscience,2023,53:102655/1-8.
|
13 |
WU N, LI H, TAN B,et al .Free and bound phenolic profiles of the bran from different rice varieties and their antioxidant activity and inhibitory effects on ɑ-amylose and ɑ-glucosidase[J].Journal of Cereal Science,2018,82:206-212.
|
14 |
SCHEFER S, OEST M, ROHN S .Interactions between phenolic acids,proteins,and carbohydrates-influence on dough and bread properties[J].Foods,2021,10(11):2798/1-29.
|
15 |
LABAT E, MOREL M H, ROUAU X .Effects of laccase and ferulic acid on wheat flour doughs[J].Cereal Chemistry,2000,77(6):823-828.
|
16 |
FæRGEMAND M, OTTE J, QVIST K B. Cross-linking of whey proteins by enzymatic oxidation[J].Journal of Agricultural and Food Chemistry,1998,46(4):1326-1333.
|
17 |
MIGLIORI M, GABRIELE D .Effect of pentosan addition on dough rheological properties[J].Food Research International,2010,43(9):2315-2320.
|
18 |
夏明威 .复合改良剂对冷冻全麦面团及其烘焙面包品质的影响[D].广州:华南理工大学,2022.
|
19 |
任顺成,陈玉,陶华 .玉米醇溶蛋白和南瓜子蛋白对面团特性与面制品品质的影响[J].河南工业大学学报(自然科学版),2022,43(2):33-39.
|
|
REN Shuncheng, CHEN Yu, TAO Hua .Effects of zein and pumkin seed protein on dough properties and flour products qualities[J].Journal of Henan University of Technology(Natural Science Edition),2022,43(2): 33-39.
|
20 |
张艳,王彦飞,陈新民,等 .Mixolab参数与粉质、拉伸参数及面包烘烤品质的关系[J].作物学报,2009,35(9):1738-1743.
|
|
ZHANG Yan, WANG Yanfei, CHEN Xinmin,et al .Relationships of Mixolab parameters with farinograph,extensograph parameters,and bread-making quality[J].Acta Agronomica Sinica,2009,35(9):1738-1743.
|
21 |
HAN H M, KOH B K .Effect of phenolic acids on the rheological properties and proteins of hard wheat flour dough and bread[J].Journal of the Science of Food and Agriculture,2011,91(13):2495-2499.
|
22 |
BUENO M M, SILVEIRA THYS R C, RODRIGUES R C .Microbial enzymes as substitutes of chemical additives in baking wheat flour-part I:individual effects of nine enzymes on flour dough rheology[J].Food and Bioprocess Technology,2016,9(12):2012-2023.
|
23 |
JIAO W, LI L, FAN P,et al .Effect of xanthan gum on the freeze-thaw stability of wheat gluten[J].Food Biophysics,2019,14(2):142-153.
|
24 |
FIGUEROA-ESPINOZA M C, MOREL M H, ROUAU X .Effect of lysine,tyrosine,cysteine,and glutathione on the oxidative cross-linking of feruloylated arabinoxylans by a fungal laccase[J].Journal of Agricultural and Food Chemistry,1998,46(7):2583-2589.
|
25 |
KIEFFER R, WIESER H, HENDERSON M H,et al .Correlations of the breadmaking performance of wheat flour with rheological measurements on a micro-scale[J].Journal of Cereal Science,1998,27(1):53-60.
|
26 |
WANG M W, van VLIET T, HAMER R J .How gluten properties are affected by pentosans[J].Journal of Cereal Science,2004,39(3):395-402.
|
27 |
YI J, KERR W L .Combined effects of freezing rate,storage temperature and time on bread dough and baking properties[J].LWT-Food Science and Technology,2009,42(9):1474-1483.
|
28 |
KOH B, NG P K W .Effects of ferulic acid and transglutaminase on hard wheat flour dough and bread[J].Cereal Chemistry,2009,86(1):18-22.
|
29 |
ZHAO X, HAN G, SUN Q,et al .Influence of lard-based diacylglycerol on the rheological and physicochemical properties of thermally induced pork myofibrillar protein gels at different pH levels[J].LWT-Food Science and Technology,2020,117:108708/1-9.
|
30 |
JIANG Y, ZHAO Y, ZHU Y,et al .Effect of dietary fiber-rich fractions on texture,thermal,water distribution,and gluten properties of frozen dough during storage[J].Food Chemistry,2019,297:124902/1-10.
|
31 |
YANG Y, GUAN E, ZHANG T,et al .Influence of water addition methods on water mobility characterization and rheological properties of wheat flour dough[J].Journal of Cereal Science,2019,89:102791/1-10.
|
32 |
PENG B, LI Y, DING S,et al .Characterization of textural,rheological,thermal,microstructural,and water mobility in wheat flour dough and bread affected by trehalose[J].Food Chemistry,2017,233:369-377.
|
33 |
ZHU Q, HAN K, WANG S,et al .Design and structural characterization of edible double network gels based on wheat bran arabinoxylan and pea protein isolate[J].International Journal of Biological Macromolecules,2022,213:824-833.
|
34 |
CABALLERO P A, GOMEZ M, ROSELL C M .Improvement of dough rheology,bread quality and bread shelf-life by enzymes combination[J].Journal of Food Engineering,2007,81(1):42-53.
|
35 |
NIÑO-MEDINA G, GUTIÉRREZ-SOTO G, URÍAS-ORONA V,et al .Effect of laccase from Trametes maxima CU1 on physicochemical quality of bread[J].Cogent Food & Agriculture,2017,3(1):1328762/1-7.
|
36 |
SELINHEIMO E, AUTIO K, KRIJUS K,et al .Elucidating the mechanism of laccase and tyrosinase in wheat bread making[J].Journal of Agricultural and Food Chemistry,2007,55(15):6357-6365.
|
37 |
ZHAO G, WEI L, LIU Y,et al .Impact of the fermentation broth of Ganoderma lucidum on the quality of Chinese steamed bread[J].AMB Express,2019,9:133/1-11.
|
38 |
SERVENTI L, SKIBSTED L H, KIDMOSE U .Individual and combined effects of water addition with xylanases and laccase on the loaf quality of composite wheat-cassava bread[J].European Food Research and Technology,2016,242(10):1663-1672.
|
39 |
JIANG D, CHIARO C, MADDALI P,et al .Identification of hydroxycinnamic acid-Maillard reaction pro-ducts in low-moisture baking model systems[J].Journal of Agricultural and Food Chemistry,2009,57(21):9932-9943.
|
40 |
ADELAKUN O E, KUDANGA T, PARKER A,et al .Laccase-catalyzed dimerization of ferulic acid amplifies antioxidant activity[J].Journal of Molecular Catalysis B-Enzymatic,2012,74(1/2):29-35.
|
41 |
ALJAWISH A, CHEVALOT I, JASNIEWSKI J,et al .Laccase-catalysed oxidation of ferulic acid and ethyl ferulate in aqueous medium:a green procedure for the synthesis of new compounds[J].Food Chemistry,2014,145:1046-1054.
|
42 |
PICO J, BERNAL J, GOMEZ M .Wheat bread aroma compounds in crumb and crust:a review[J].Food Research International,2015,75:200-215.
|
43 |
MILDNER-SZKUDLARZ S, RÓŻAŃSKA M, PIECHOWSKA P,et al .Effects of polyphenols on volatile profile and acrylamide formation in a model wheat bread system[J].Food Chemistry,2019,297:125008/1-10.
|