[1] 郑力铭,王鹏超.微生物合成四萜类化合物研究进展[J].中国生物工程杂志,2023,43(10):96-108.
ZHENG L M,WANG P C.Progress in the synthesis of tetraterpenes by microorganisms[J].China Biotechnology,2023,43(10):96-108.
[2] 张志平,段乃心,魏湘楠,等.基于光胁迫粘红酵母合成高值化类胡萝卜素发酵条件优化[J].轻工学报,2022,37(4):10-17.
ZHANG Z P,DUAN N X,WEI X N,et al.Optimization of fermentation conditions for high value carotenoid synthesis by Rhodotorula glutinis under light stress[J].Journal of Light Industry,2022,37(4):10-17.
[3] 周琳,梁轩铭,赵磊.天然类胡萝卜素的生物合成研究进展[J].生物技术通报,2022,38(7):119-127.
ZHOU L,LIANG X M,ZHAO L.Biosynthesis of natural carotenoids:Progress and perspective[J].Biotechnology Bulletin,2022,38(7):119-127.
[4] MARTÍNEZ-CÁMARA S,IBAÑEZ A,RUBIO S,et al.Main carotenoids produced by microorganisms[J].Encyclopedia,2021,1(4):1223-1245.
[5] LIU Z Y,YU W L,NOMURA C T,et al.Increased flux through the TCA cycle enhances bacitracin production by Bacillus licheniformis DW2[J].Applied Microbiology and Biotechnology,2018,102(16):6935-6946.
[6] HAN J Y,SONG J M,SEO S H,et al.Ty1-fused protein-body formation for spatial organization of metabolic pathways in Saccharomyces cerevisiae[J].Biotechnology and Bioengineering,2018,115(3):694-704.
[7] BIAN Q,JIAO X,CHEN Y,et al.Hierarchical dynamic regulation of Saccharomyces cerevisiae for enhanced lutein biosynthesis[J].Biotechnology and Bioengineering,2023,120(2):536-552.
[8] 刘晓桐,孙欣宇,刘玥,等.诱变筛选高产虾青素法夫酵母及发酵条件优化[J].大连工业大学学报,2021,40(6):396-400.
LIU X T,SUN X Y,LIU Y,et al.Screening of high astaxanthin producing Phaffia rhodozyma by mutagenesis and optimization of fermentation conditions[J].Journal of Dalian Polytechnic University,2021,40(6):396-400.
[9] VILLEGAS-MÉNDEZ M Á,MONTAÑEZ J,CONTRERAS-ESQUIVEL J C,et al.Scale-up and fed-batch cultivation strategy for the enhanced co-production of microbial lipids and carotenoids using renewable waste feedstock[J].Journal of Environmental Management,2023,339:117866.
[10] JIN D,ZHANG X N,ZHOU L,et al.Emerging applications and mechanisms of algal-bacterial symbiosis on sustainable wastewater treatment:A comprehensive review[J].Journal of Water Process Engineering,2024,65:105912.
[11] GONG G P,WU B,LIU L P,et al.Enhanced biomass and lipid production by light exposure with mixed culture of Rhodotorula glutinis and Chlorella vulgaris using acetate as sole carbon source[J].Bioresource Technology,2022,364:128139.
[12] 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].基因组学与应用生物学,2020,39(8):3612-3619.
LIU F Z,REN H Y,CHEN H F,et al.Effects of different carbon sources on lipid production in co-culture of Chlorella vulgaris and Rhodotorula glutinis[J].Genomics and Applied Biology,2020,39(8):3612-3619.
[13] 杜梦帆,王露.不同碳源对小球藻生长的影响[J].生物化工,2022,8(4):93-95.
DU M F,WANG L.Effects of different carbon sources on the growth of Chlorella[J].Biological Chemical Engineering,2022,8(4):93-95.
[14] FERRO L,GOJKOVIC Z,MUÑOZ R,et al.Growth performance and nutrient removal of a Chlorella vulgaris-Rhizobium sp.co-culture during mixotrophic feed-batch cultivation in synthetic wastewater[J].Algal Research,2019,44:101690.
[15] 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.
ZHU L H,MA Y Q,JI Y Y,et al.Screening of carotenoid-producing yeast and pigment stability analysis[J].China Brewing,2021,40(9):139-144.
[16] 汤冬,张国森,赵晓芳.基于二代测序技术的转录组测序生物信息分析[J].河南大学学报(医学版),2019,38(1):67-76.
TANG D,ZHANG G S,ZHAO X F.Bioinformatics analysis of transcriptome sequencing based on next generation sequencing[J].Journal of Henan University (Medical Science),2019,38(1):67-76.
[17] ZHANG Z P,PANG Z J,XU S Y,et al.Improved carotenoid productivity and COD removal efficiency by co-culture of Rhodotorula glutinis and Chlorella vulgaris using starch wastewaters as raw material[J].Applied Biochemistry and Biotechnology,2019,189(1):193-205.
[18] 梁长利,郑训艺,郑祖凤,等.有机碳源对异养小球藻生长、蛋白质和叶绿素含量的影响[J].广东化工,2021,48(13):71-73.
LIANG C L,ZHENG X Y,ZHENG Z F,et al.Influence of organic carbon sources on the growth,protein and chlorophyll content of heterotrophic Chlorella vulgaris[J].Guangdong Chemical Industry,2021,48(13):71-73.
[19] JOUN J,SIROHI R,SIM S J.The effects of acetate and glucose on carbon fixation and carbon utilization in mixotrophy of Haematococcus Pluvialis[J].Bioresource Technology,2023,367:128218.
[20] CAI Y H,LIU Y H,LIU T Y,et al.Heterotrophic cultivation of Chlorella vulgaris using broken rice hydrolysate as carbon source for biomass and pigment production[J].Bioresource Technology,2021,323:124607.
[21] 郎筱宇,刘志媛,徐梦,等.葡萄糖对小球藻(Chlorella sp.HN08)光合作用和生长的影响[J].微生物学报,2017,57(4):550-559.
LANG X Y,LIU Z Y,XU M,et al.Effects of glucose on photosynthesis and growth of Chlorella sp.HN08 cells[J].Acta Microbiologica Sinica,2017,57(4):550-559.