[1] 李建军,董振山,吕阳波,等.生物酶联合作用改善烟梗梗丝品质的实验研究[J].湖北大学学报(自然科学版),2025,47(5):776-784.
LI J J,DONG Z S,LV Y B,et al.Experimental study on the combined action of biological enzymes to improve the aroma quality of tabacco stem[J].Journal of Hubei University (Natural Science),2025,47(5):776-784.
[2] 杨晓倩,李敏,杨紫刚,等.烟梗处理技术及综合利用研究进展[J].农产品加工,2025(4):58-63. YANG X Q,LI M,YANG Z G,et al.Research progress on tobacco stem treatment technology and comprehensive utilization[J].Agricultural Products Processing,2025.
(4):58-63.
[3] 宋丽丽,霍姗浩,孙永威,等.复合菌群协同发酵烟梗的降解特性及微生物多样性研究[J].轻工学报,2023,38(1):63-70.
SONG L L,HUO S H,SUN Y W,et al.Study on degradation characteristics and microbial diversity of tobacco stem by synergistic fermentation with microbial community[J].Journal of Light Industry,2023,38(1):63-70.
[4] 马亚萍,文武,暴霆杰,等.灵芝产漆酶工艺优化[J].农产品加工,2023(16):61-66. MA Y P,WEN W,BAO T J,et al.Optimization of laccase production process by Ganoderma lucidum[J].Academic Periodical of Farm Products Processing,2023.
(16):61-66.
[5] 魏滔,张长生,陈琼华,等.灵芝真菌液体发酵及其产物应用的研究进展[J].微生物学通报,2022,49(1):336-351.
WEI T,ZHANG C S,CHEN Q H,et al.Liquid fermentation of Ganoderma and application of its products[J].Microbiology China,2022,49(1):336-351.
[6] YAO R N,LIU Y,OUYANG L,et al.Genome-wide analysis of the laccase gene family in Arachis hypogaea and functional characterization of AhLAC63 involved in lignin biosynthesis and abiotic stress[J].International Journal of Biological Macromolecules,2025,289:138886.
[7] DEBNATH R,SAHA T.An insight into the production strategies and applications of the ligninolytic enzyme laccase from bacteria and fungi[J].Biocatalysis and Agricultural Biotechnology,2020,26:101645.
[8] LOU H W,YANG C M,GONG Y,et al.Edible fungi efficiently degrade aflatoxin B1 in cereals and improve their nutritional composition by solid-state fermentation[J].Journal of Hazardous Materials,2023,451:131139.
[9] REYNOLDS A G,KNOX A,DI PROFIO F.Evaluation of macerating pectinase enzyme activity under various temperature,pH and ethanol regimes[J].Beverages,2018,4(1):10.
[10] 黄静,和耀威,李鹏,等.菌丝特性及胞外酶活性对茶树菇继代培养菌丝的相关性分析[J].北方园艺,2025(2):50-58. HUANG J,HE Y W,LI P,et al.Analysis of the correlation between mycelial characteristics and extracellular enzyme activity in subsequent cultivation of Agrocybe aegerita[J].Northern Horticulture,2025.
(2):50-58.
[11] 中华人民共和国国家质量监督检验检疫总局,中国国家标准化管理委员会.饲用纤维素酶活性的测定 滤纸法:GB/T 23881—2009[S].北京:中国标准出版社,2009. General Administration of Quality Supervision,Inspection and Quarantine of the People’s Republic of China,Standardization Administration of the People’s Republic of China.Determination of feed cellulase activity-filter paper assay method:GB/T 23881—2009[S].Beijing:Standards Press of China,2009.
[12] 王静,董梦蝶,李祥,等.黑曲霉固态发酵葡萄皮渣产木聚糖酶的工艺研究[J].饲料工业,2023,44(16):100-106.
WANG J,DONG M D,LI X,et al.Study on the process of producing xylanase with grape pomace fermented by Aspergillus niger[J].Feed Industry,2023,44(16):100-106.
[13] 汪家政,范明.蛋白质技术手册[M].北京:科学出版社,2000. WANG J Z,FAN M.Handbook of Protein Technology [M].Beijing:Science Press,2000.
[14] VAN LA T,SUNG B H,KIM S.Biocatalytic characterization of Hericium erinaceus laccase isoenzymes for the oxidation of lignin derivative substrates[J].International Journal of Biological Macromolecules,2023,241:124658.
[15] NAJJARI M,MOOSAVI N,ASGARAN E.Native page as a tool for semi-purification of catalase from kocuria ASB 107[J].Iranian journal of public health,2014,43(2):61.
[16] SLUITER A,HAMES B,RUIZ R,et al.Determination of structural carbohydrates and lignin in biomass[J].Environmental Science,2011,8:1.
[17] 国家市场监督管理总局,国家标准化管理委员会.卷烟 第4部分:感官技术要求:GB/T 5606.4—2005[S].北京:中国标准出版社,2005. State Administration for Market Regulation,Standardization Administration of the People’s Republic of China.Cigarettes-technical requirements for sense evaluation:GB/T 5606.4—2005.
[S].Beijing:Standards Press of China,2005.
[18] GONZÁLEZ-GONZÁLEZ P,GÓMEZ-MANZO S,TOMASINI A,et al.Laccase production from Agrocybe pediades:Purification and functional characterization of a consistent laccase isoenzyme in liquid culture[J].Microorganisms,2023,11(3):568.
[19] ALSHIEKHEID M A,UMAR A,AMEEN F,et al.Biodegradation of chromium by laccase action of Ganoderma multipileum[J].Journal of King Saud University-Science,2023,35(10):102948.
[20] LU J H,SHI Y Y,JI Y F,et al.Transformation of triclosan by laccase catalyzed oxidation:The influence of humic acid-metal binding process[J].Environmental Pollution,2017,220:1418-1423.
[21] 方华,黄俊,陈曌,等.缓冲体系和金属离子对漆酶催化活性的影响[J].武汉理工大学学报,2009,31(5):27-30.
FANG H,HUANG J,CHEN Z,et al.Effect of buffer solutions and metal ions on the laccase activity[J].Journal of Wuhan University of Technology,2009,31(5):27-30.
[22] PATEL S K S,KALIA V C,KIM S Y,et al.Immobilization of laccase through inorganic-protein hybrids using various metal ions[J].Indian Journal of Microbiology,2022,62(2):312-316.
[23] ZHOU C X,DONG A X,WANG Q,et al.Effect of common metal ions and anions on laccase catalysis of guaiacol and lignocellulosic fiber[J].BioResources,2017,12(3):5102-5117.
[24] ROBERTS S A,WEICHSEL A,GRASS G,et al.Crystal structure and electron transfer kinetics of CueO,a multicopper oxidase required for copper homeostasis inEscherichia coli[J].Proceedings of the National Academy of Sciences of the United States of America,2002,99(5):2766-2771.
[25] 付秋娟,郝贤伟,杜咏梅,等.烤烟上部烟叶中非挥发性有机酸及高级脂肪酸与烟叶内在品质的关系[J].烟草科技,2024,57(9):24-32.
FU Q J,HAO X W,DU Y M,et al.Relationship between non-volatile organic acids and higher fatty acids in upper flue-cured tobacco leaves and intrinsic leaf quality[J].Tobacco Science & Technology,2024,57(9):24-32.
[26] KAISSAR F Z,BENINE M L,ABBOUNI B,et al.Revealing of multifunctional newly isolated Bacillus strains from Algerian wastes with high pectinase activity for sustainable biotechnological application[J].Biologia,2025,80(4):1007-1022.