[1] GREWAL J, WOŁA CEWICZ M, PYTER W, et al.Colorful treasure from agro-industrial wastes:A sustainable chassis for microbial pigment production[J].Frontiers in Microbiology, 2022, 13:832918.
[2] VENIL C K, ZAKARIA Z A, AHMAD W A.Bacterial pigments and their applications[J].Process Biochemistry, 2013, 48(7):1065-1079.
[3] QIN Z J, WANG X L, GAO S, et al.Production of natural pigments using microorganisms[J].Journal of Agricultural and Food Chemistry, 2023, 71(24):9243-9254.
[4] ARULDASS C A, DUFOSSÉ L, AHMAD W A.Current perspective of yellowish-orange pigments from microorganisms- a review[J].Journal of Cleaner Production, 2018, 180:168-182.
[5] SAJJAD W, DIN G, RAFIQ M, et al.Pigment production by cold-adapted bacteria and fungi:Colorful tale of cryosphere with wide range applications[J].Extremophiles, 2020, 24(4):447-473.
[6] NIGAM P S, LUKE J S.Food additives:Production of microbial pigments and their antioxidant properties[J].Current Opinion in Food Science, 2016, 7:93-100.
[7] JURIĆ S, JURIĆ M, KRÓL-KILINĆSKA, et al.Sources, stability, encapsulation and application of natural pigments in foods[J].Food Reviews International, 2022, 38(8):1 735-1 790.
[8] 徐春明, 王晓丹, 焦志亮.食用微生物色素的研究进展[J].中国食品添加剂, 2015,26(2):162-168.
XU C M, WANG X D, JIAO Z L.Research progress of edible pigments by microorganisms[J].China Food Additives, 2015,26(2):162-168.
[9] SHEN N, REN J N, LIU Y X, et al.Natural edible pigments:A comprehensive review of resource, chemical classification, biosynthesis pathway, separated methods and application[J].Food Chemistry, 2023, 403:134422.
[10] 于雪, 张威, 吴玉洁, 等.微生物产色素机制及其生物活性[J].微生物学报, 2022, 62(4):1231-1246.
YU X, ZHANG W, WU Y J, et al.Production mechanism and biological activity of microbial pigments[J].Acta Microbiologica Sinica, 2022, 62(4):1231-1246.
[11] 刘洋. 红色素产生菌株的分离鉴定及红色素性质研究[D].黄石:湖北师范大学, 2020.
LIU Y.Isolation and identification of red pigment producing strain and study on the properties of red pigment[D].Huangshi:Hubei Normal University, 2020.
[12] DASGUPTA MANDAL D, MAJUMDAR S.Bacteria as biofactory of pigments:Evolution beyond therapeutics and biotechnological advancements[J].Journal of Bioscience and Bioengineering, 2023, 135(5):349-358.
[13] 鲍奕达, 张丽杰, 郑鹏飞, 等.郫县豆瓣发酵过程的微生物多样性及溯源分析[J].微生物学报, 2020, 60(11):2555-2571.
BAO Y D, ZHANG L J, ZHENG P F, et al.Diversity and source tracking of microbial community in Pixian broad bean paste[J].Acta Microbiologica Sinica, 2020, 60(11):2 555-2 571.
[14] 吉礼, 蒲开阳, 秦覃, 等.农家日晒与阴制郫县豆瓣产品品质对比分析[J].食品与发酵科技, 2022, 58(3):119-123.
JI L, PU K Y, QIN Q, et al.Comparative analysis on the quality of Pixian broad-bean paste made by sunlight and shade in farmhouse[J].Food and Fermentation Science & Technology, 2022, 58(3):119-123.
[15] 李春燕, 牟希, 张媛, 等.1株产灵菌红素家族红色色素细菌的分离鉴定及其色素性质研究[J].食品与发酵工业, 2017, 43(1):1-6.
LI C Y, MOU X, ZHANG Y, et al.The identification of prodigiosin family red pigment producing bacterium and characterization of the red pigment[J].Food and Fermentation Industries, 2017, 43(1):1-6.
[16] 李小群. 海洋细菌Notoacmeibacter sp.BGMRC2072鉴定及其次级代谢产物研究[D].南宁:广西大学, 2018.
LI X Q.Identification of the marine bacterium Notoacmeibacter sp.BGMRC2072 and study on its secondary metabolites[D].Nanning:Guangxi University, 2018.
[17] 王鹏宇, 徐晨琪, 彭涵, 等.一株产灵菌红素菌株黏质沙雷氏菌H04的分离鉴定及发酵条件优化[J].食品与发酵工业, 2023, 49(11):20-26.
WANG P Y, XU C Q, PENG H, et al.Isolation, identification, and optimization of fermentation conditions of a high-yielding prodigiosin Serratia marcescens H04[J].Food and Fermentation Industries, 2023, 49(11):20-26.
[18] RODRÍGUEZ J, LOBATO C, VÁZQUEZ L, et al.Prodigiosin-producing Serratia marcescens as the causal agent of a red colour defect in a blue cheese[J].Foods, 2023, 12(12):2388.
[19] TANG L, CHEN Y C, JIANG Z B, et al.Purification, partial characterization and bioactivity of sulfated polysaccharides from Grateloupia livida[J].International Journal of Biological Macromolecules, 2017, 94:642-652.
[20] 张叶飞. 产色素粘质沙雷氏菌的分离鉴定及含灵菌红素合成酶的载体构建[D].成都:成都理工大学, 2019.
ZHANG Y F.Isolation and identification of pigmented Serratia marcescens and construction of vector containing prodigiosin synthase[D].Chengdu:Chengdu University of Technology, 2019.
[21] 刘思航, 邹宜均, 常菲菲, 等.一株高产灵菌红素粘质沙雷氏菌的分离鉴定及发酵条件优化[J].应用与环境生物学报, 2018, 24(1):26-32.
LIU S H, ZOU Y J, CHANG F F, et al.Isolation and identification of Serratia marcescens producing high levels of prodigiosin and its fermentation optimization[J].Chinese Journal of Applied and Environmental Biology, 2018, 24(1):26-32.
[22] XU H, WANG S S, TIAN Y J, et al.2-Keto-D-gluconic acid and prodigiosin producing by a Serratia marcescens[J].Preparative Biochemistry & Biotechnology, 2021, 51(7):678-685.
[23] ARIVIZHIVENDHAN K V, MAHESH M, BOOPATHY R, et al.A novel method for the extraction of prodigiosin from bacterial fermenter integrated with sequential batch extraction reactor using magnetic iron oxide[J].Process Biochemistry, 2016, 51(10):1731-1737.
[24] 李雪. 粘质沙雷氏菌次级代谢产物灵菌红素的结构鉴定及生物学活性研究[D].济南:齐鲁工业大学, 2021.
LI X.Structure identification and biological activity of prodigiosin, a secondary metabolite of Serratia marcescens[D].Jinan:Qilu University of Technology, 2021.
[25] JARDAK M, ATOISSI A, MSALBI D, et al.Antibacterial, antibiofilm and cytotoxic properties of prodigiosin produced by a newly isolated Serratia sp.C6LB from a milk collection center[J].Microbial Pathogenesis, 2022, 164:105449.
[26] VIJAY D, ALSHAMSI N S, MOUSSA Z, et al.Extraction of the anticancer and antimicrobial agent, prodigiosin, from Vibrio gazogenes PB1 and its identification by 1D and 2D NMR[J].Molecules, 2022, 27(18):6030.
[27] ARIVUSELVAM R, DERA A A, PARWEEN ALI S, et al.Isolation, identification, and antibacterial properties of prodigiosin, a bioactive product produced by a new Serratia marcescens JSSCPM1 strain:Exploring the biosynthetic gene clusters of Serratia species for biological applications[J].Antibiotics, 2023, 12(9):1466.
[28] WILF N M, SALMOND G P C.The stationary phase sigma factor, RpoS, regulates the production of a carbapenem antibiotic, a bioactive prodigiosin and virulence in the enterobacterial pathogen Serratia sp.ATCC 39006[J].Microbiology, 2012, 158(Pt3):648-658.
[29] BHUPATHI P, ELHASSAN A-ELGADIR T M, MOHAMMED ALI R H, et al.Fluorescence resonance energy transfer (FRET)-based sensor for detection of foodborne pathogenic bacteria:A review[J].Critical Reviews in Analytical Chemistry, 2023: 1-18.
[30] TOUSHIK S H, PARK J H, KIM K, et al.Antibiofilm efficacy of Leuconostoc mesenteroides J.27-derived postbiotic and food-grade essential oils against Vibrio parahaemolyticus, Pseudomonas aeruginosa, and Escherichia coli alone and in combination, and their application as a green preservative in the seafood industry[J].Food Research International, 2022, 156:111163.
[31] CHOI S Y, LIM S, YOON K H, et al.Biotechnological activities and applications of bacterial pigments violacein and prodigiosin[J].Journal of Biological Engineering, 2021, 15(1):10.
[32] LIM S, BHAK J, JEON S, et al.The kiss of death:Serratia marcescens antibacterial activities against Staphylococcus aureus requires both de novo prodigiosin synthesis and direct contact[J].Microbiology Spectrum, 2022, 10(3):e0060722.