[1] 朱丽花,马延琴,纪彦宇,等.产类胡萝卜素酵母菌的筛选及色素稳定性分析[J].中国酿造,2021,40(9):139-144.
[2] DA COSTA CARDOSO L A,YURIFEIOSAKANNO K,KARP S G.Microbial production of carotenoids:A review[J].African Journal of Biotechnology,2017,16(4):139-146.
[3] 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.
[4] MARTÍNEZ-CÁMARA S,IBAÑEZ A,RUBIO S,et al.Main carotenoids produced by microorganisms[J].Encyclopedia,2021,1(4):1223-1245.
[5] HERNÁNDEZ-ALMANZA A,MONTANEZ J C,AGUILAR-GDNZALEZ M A,et al.Rhodotorula glutinis as source of pigments and metabolites for food industry[J].Food Bioscience,2014,5:64-72.
[6] MOLINO A,MEHARIYA S,KARATZA D,et al.Bench-scale cultivation of microalgae Scenedesmus almeriensis for CO2 capture and lutein production[J].Energies,2019,12(14):2806.
[7] SAINI R K,KEUM Y S.Microbial platforms to produce commercially vital carotenoids at industrial scale:An updated review of critical issues[J].Journal of Industrial Microbiology&Biotechnology,2019,46(5):657-674.
[8] CHEN W C,HSU Y C,CHANG J S,et al.Enhancing production of lutein by a mixotrophic cultivation system using microalga Scenedesmus obliquus CWL-1[J].Bioresource Technology,2019,291:121891.
[9] ZHANG Z P,ZHANG X,TAN T W.Lipid and carotenoid production by Rhodotorula glutinis under irradiation/high-temperature and dark/low-temperature cultivation[J].Bioresource Technology,2014,157:149-153.
[10] GONG G P,LIU L,ZHANG X,et al.Multi-omics metabolism analysis on irradiation-induced oxidative stress to Rhodotorula glutinis[J].Apply Microbiology and Biotechnology,2019,103(1):361-374.
[11] LIU Z Y,YU W L,NOMURA C,et al.Increased flux through the TCA cycle enhances bacitracin production by Bacillus licheniformis DW2[J].Apply Microbiology Biotechnology,2018,102(16):6935-6948.
[12] LEHMANN M,VAMVAKA E,TORRADO A,et al.Introduction of the carotenoid biosynthesis α-branch into Synechocystis sp.PCC 6803 for lutein production[J].Frontiers in Plant Science,2021,6(12):699424.
[13] GONG G P,ZHANG X,TAN T W.Simultaneously enhanced intracellular lipogenesis and β-carotene biosynthesis of Rhodotorula glutinis by light exposure with sodium acetate as the substrate[J].Bioresource Technology,2020,295(C):122274.
[14] ZHAGN L H,SONG Y L,WANG Q,et al.Culturing Rhodotorula glutinis in fermentation-friendly deep eutectic solvent extraction liquor of lignin for producing microbial lipid[J].Bioresource Technology,2021,337:125475.
[15] MAZA D D,SCVIÑARTA S C,GUILLAMÓN J M,et al.Growth and lipid production of Rhodotorula glutinis R4,in comparison to other oleaginous yeasts[J].Journal of Biotechnology,2020,310:21-32.
[16] MUSSAGY C U,GUIMARAES A A C,ROCHA L V F,et al.Improvement of caroenoids production from Rhodotorula glutinis CCT-2186[J].Biochemical Engineering Journal,2021,165:107827.
[17] 刘方舟,任洪艳,陈红芬,等.不同碳源对普通小球藻和粘红酵母共培养产油脂的影响[J].基因组学与应用微生物学,2020,39(8):3612-3619.
[18] ZHANG Z P,JI H R,GONG G P,et al.Synergistic effects of oleaginous yeast Rhodotorula glutinis and microalga Chlorella vulgaris for enhancement of biomass and lipid yields[J].Bioresource Technology,2014,164:93-99.
[19] CHEN J H,CHEN C Y,HASUNUMA T,et al.Enhancing lutein production with mixotrophic cultivation of Chlorella sorokiniana MB-1-M12 using different bioprocess operation strategies[J].Bioresource Technology,2019,278:17-25.
[20] GONG G P,LIU L,ZHAGN X,et al.Comparative evaluation of different carbon sources supply on simultaneous production of lipid and carotene of Rhodotorula glutinis with irradiation and the assessment of key gene transcription[J].Bioresource Technology,2019,288:121559.