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中国生物工程杂志

CHINA BIOTECHNOLOGY
中国生物工程杂志  2013, Vol. 33 Issue (9): 111-118    
综述     
产油酵母利用不同基质累积油脂的研究进展
许继飞, 张艳芬, 赵桂琦, 赵吉
内蒙古大学环境污染控制与废物资源化自治区重点实验室 呼和浩特 010021
Research Progress in Different Substrates Used by Oleaginous Yeast for Lipid Production
XU Ji-fei, ZHANG Yan-fen, ZHAO Gui-qi, ZHAO Ji
Key Laboratory of Environmental Pollution Prevention and Waste Resource Utilization of Inner Mongolia Autonomous Region, Inner Mongolia University, Hohhot 010021, China
 全文: PDF(439 KB)   HTML
摘要: 产油酵母是一类能够产生并积累三酰甘油酯等脂质体的产油微生物,对日益严峻的能源与环境安全问题具有重要启示作用,寻找廉价易得且转化效率高的发酵基质将促进微生物油脂生产的工业化进程。本文介绍了产油酵母对各种基质的利用情况,包括混合糖类、纤维素类生物质、发酵过程产物、食品行业废水和其他有机质等;概述并比较了不同基质的油脂积累及产油特性,指出了目前产油酵母对各基质的利用问题和未来可能的发展方向。
关键词: 产油酵母基质微生物油脂    
Abstract: The oleaginous yeast is a kind of oleaginous microorganisms which generate and accumulate liposome such as triacylglycerol, and have significant implications for the increasingly serious energy and environmental security issues. The search for the cheap, freely available and with high conversion efficiency fermentation substrate will promote the industrialization process of the microbial oil production. In this review, the utilization of oleaginous yeast on a variety of substrates, including mixed sugars, cellulosic biomass, substances produced during fermentation, food industry wastewater and other organic matter, is introduced. Additionally, characteristics of lipid accumulation and oil production are summarized and compared; the current utilizing questions and future direction of development of all kinds of substrates oleaginous yeast can utilize are indicated also.
Key words: Oleaginous yeast    Substrates    Microbial oils
收稿日期: 2013-05-02 出版日期: 2013-09-25
ZTFLH:  Q815  
基金资助: 国家自然科学基金资助项目(51108226)
通讯作者: 许继飞Jifeixu@126.com     E-mail: Jifeixu@126.com
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引用本文:

许继飞, 张艳芬, 赵桂琦, 赵吉. 产油酵母利用不同基质累积油脂的研究进展[J]. 中国生物工程杂志, 2013, 33(9): 111-118.

XU Ji-fei, ZHANG Yan-fen, ZHAO Gui-qi, ZHAO Ji. Research Progress in Different Substrates Used by Oleaginous Yeast for Lipid Production. China Biotechnology, 2013, 33(9): 111-118.

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https://manu60.magtech.com.cn/biotech/CN/        https://manu60.magtech.com.cn/biotech/CN/Y2013/V33/I9/111

[1] Meng X, Yang J M, Xu X, et al. Biodiesel production from oleaginous microorganisms. Renewable Energy, 2009, 34: 1-5.
[2] Ratledge C, Wynn J P. The biochemistry and molecular biology of lipid accumulation in oleaginous microorganisms. Advances in Applied Microbiology, 2002, 51: 1-51.
[3] Wild R, Patil S, Popovic M, et al. Lipids from Lipomyces starkeyi. Food Technology and Biotechnology, 2010, 18: 329-335.
[4] Thiru M, Sankh S, Rangaswamy V. Process for biodiesel production from Cryptococcus curvatus. Bioresource Technology, 2011, 102(22): 10436-10440.
[5] 李永红, 刘波, 赵宗保, 等. 圆红冬孢酵母菌发酵产油脂培养基及发酵条件的优化研究. 生物工程学报, 2006, 22(4): 650-656. Li Y H, Liu B, Zhao Z B, et al. Optimized culture medium and fermentation conditions for lipid production by Rhodosporidium toruloides. Chinese Journal of Biotechnology, 2006, 22(4): 650-656.
[6] 赵宗保, 胡翠敏. 能源微生物油脂技术进展. 生物工程学报. 2011, 27(3): 427-435. Zhao Z B, Hu C M. Progress in bioenergy-oriented microbial lipid technology. Chinese Journal of Biotechnology. 2011, 27(3): 427-435.
[7] 孔祥莉, 刘波, 赵宗保, 等. 斯达氏油脂酵母利用混合糖发酵产油脂. 生物加工过程, 2007, 5: 36-41. Kong X L, Liu B, Zhao Z B, et al. Microbial production of lipids by co-fermentation of glucose and xylose with Lipomyces starkeyi 2#. Chinese Journal of Bioprocess Engineering, 2007, 5: 36-41.
[8] Zhao X, Kong X L, Hua Y Y, et al. Medium optimization for lipid production through co-fermentation of glucose and xylose by the oleaginous yeast Lipomyces starkeyi. European Journal of Lipid Science and Technology, 2008, 110(5): 405-412.
[9] Gong Z W, Wang Q, Shen H W, et al. Co-fermentation of cellobiose and xylose by Lipomyces starkeyi for lipid production. Bioresource Technology, 2012, 117: 20-24.
[10] 刘文剑, 刘扬林, 刘淑云, 等. 糖蜜废水处理与资源化研究进展. 中国资源综合利用, 2009, 7: 39-41. Liu W J, Liu Y L, Liu SH Y, et al. The progress of research on treating molasses wastewater and resources. China Resources Comprehensive Utilization, 2009, 7: 39-41.
[11] 李建政, 王茜, 班巧英. Rhodotorula glutinis发酵糖蜜产油脂影响因素研究. 科技导报, 2010, 28(20): 77-81. Li J ZH, Wang J, Ban Q Y. Influencing factors in molass fermentation by Rhodotorula glutinis for microbial oil production. Science and Technology Review, 2010, 28(20): 77-81.
[12] Cheirsilp B, Suwannarat W, Niyomdecha R. Mixed culture of oleaginous yeast Rhodotorula glutinis and microalga Chlorella vulgaris for lipid production from industrial wastes and its use as biodiesel feedstock. New Biotechnology, 2011, 28: 362-368.
[13] Takakuwa N, Saito K. Conversion of beet molasses and cheese whey into fatty acid methyl esters by the yeast Cryptococcus curvatus. Journal of Oleo Science, 2010, 59(5): 255-260.
[14] 殷桃, 李新社, 胡墩柱, 等. 多菌种混合发酵玉米秸秆生产微生物油脂的研究. 中国酿造, 2011, 6: 110-112. Yin T, Li X SH, Hu D ZH, et al. Production of microbial oils fermented by multi-strains with corn stalks. China Brewing, 2011, 6: 110-112.
[15] 孙军德, 杨冉. 产油酵母菌的筛选及其利用玉米秸秆发酵产油研究. 沈阳农业大学学报, 2010, 41(3): 335-338. Sun D J, Yang R. Screening, fermentation and identification characters of oleaginous yeasts by utilizing corn strews. Journal of Shenyang Agricultural University, 2010, 41(3): 335-338.
[16] 张杰, 张晓东, 李岩, 等. 多纤维素酶协同降解玉米秸秆及水解液微生物油脂发酵研究. 现代化工, 2008, 28(2): 133-135. Zhang J, Zhang X D, Li Y, et al. Research on cellulase co-operative hydrolysis of corn stalk and microbial lipids fermentation from hydrolysates. Modern Chemical Industry, 2008, 28(2): 133-135.
[17] Yu X C, Zheng Y B, Dorgan K M, et al. Oil production by oleaginous yeasts using the hydrolysate from pretreatment of wheat straw with dilute sulfuric acid. Bioresource Technology, 2011, 102: 6134-6140.
[18] 潘丽霞, 杨登峰, 邵利, 等. 利用蔗渣半纤维素水解液产油酵母的筛选、鉴定及发酵实验. 微生物学通报, 2008, 35(8): 1176-1181. Pan L X, Yang D F, Shao L, et al. Screening, identification and fermention characters of oleaginous yeasts by utilizing sugar cane bagasse hemicellulose hydrolysates. Microbiology, 2008, 35(8): 1176-1181.
[19] Liang Y N, Tang T Y, Siddaramu T, et al. Lipid production from sweet sorghum bagasse through yeast fermentation. Renewable Energy, 2012, 40: 130-136.
[20] Zhao X B, Peng F, Du W, et al. Effects of some inhibitors on the growth and lipid accumulation of oleaginous yeast Rhodosporidium toruloides and preparation of biodiesel by enzymatic transerification of the lipid. Bioprocess and Biosysterms Engineering, 2012, 35(6): 993-1004.
[21] Hu C M, Zhao X, Zhao J, et al. Effects of biomass hydrolysis by-products on oleaginous yeast Rhodosporidium toruloides. Bioresource Technology, 2009, 100(20): 4843-4847.
[22] Wang Q, Guo F J, Rong Y J, et al. Lipid production from hydrolysate of cassava starch by Rhodosporidium toruloides 21167 for biodiesel making. Renewable Energy, 2012, 46: 164-168.
[23] 彭枫, 赵雪冰, 刘灿明, 等. 活性炭脱毒甘蔗渣稀酸水解液用于酵母油脂的合成. 可再生能源, 2009, 27(4): 32-36. Peng F, Zhao X B, Liu C M, et al. Detoxification of bagasse acid-hydrolyzate for yeast oil production. Renewable Energy Resources, 2009, 27(4): 32-36.
[24] Taccari M, Canonico L, Comitini F, et al. Screening of yeasts for growth on crude glycerol and optimization of biomass production. Bioresource Technology, 2012, 110: 488-495.
[25] Kitcha S, Cheirsilp B. Screening of oleaginous yeasts and optimization for lipid production using crude glycerol as a carbon source. Energy Procedia, 2011, 9: 274-282.
[26] Saenge C, Cheirsilp B, Suksaroge T, et al. Potential use of oleaginous red yeast Rhodotorula glutinis for the bioconversion of crude glycerol from biodiesel plant to lipids and carotenoids. Process Biochemistry, 2011, 46: 210-218.
[27] Xu J Y, Zhao X B, Wang W C, et al. Microbial conversion of biodiesel byproduct glycerol to triacylglycerols by oleaginous yeast Rhodosporidium toruloides and the individual effect of some impurities on lipid production. Biochemical Engineering Journal, 2012, 65: 30-36.
[28] Fei Q, Chang H N, Shang L G, et al. The effect of volatile fatty acids as a sole carbon source on lipid accumulation by Cryptococcus albidus for biodiesel production. Bioresource Technology, 2011, 102: 2695-2701.
[29] Chi Z Y, Zheng Y B, Ma J W, et al. Oleaginous yeast Cryptococcus curvatus culture with dark fermentation hydrogen production effluent as feedstock for microbial lipid production. International Journal of Hydrogen Energy, 2011, 36: 9542-9550.
[30] Pierre F, Vinod K, Gwendoline C, et al. Bioconversion of volatile fatty acids into lipids by the oleaginous yeast Yarrowia lipolytica. Bioresource Technology, 2012, 114: 443-449.
[31] Christophe G, Lara Deo J, Kumar V, et al. Production of oils from acetic acid by the oleaginous yeast Cryptococcus curvatus. Applied Biochemistry and Biotechnology, 2012, 167: 1270-1279.
[32] 邢旭, 薛飞燕, 谭天伟, 等. 粘红酵母在味精废水中发酵生产油脂. 生物加工过程, 2010, 8: 6-10. Xing X, Xue F Y, Tan T W, et al. Investigation on oil production by Rhodotorula glutinis in waste water from glutamate process. Chinese Journal of Bioprocess Engineering, 2010, 8: 6-10.
[33] Liu J X, Yue Q Y, Gao B Y, et al. Microbial treatment of the monosodium glutamate wastewater by Lipomyces starkeyi to produce microbial lipid. Bioresource Technology, 2012, 106: 69-73.
[34] 张博, 黄理辉, 高宝玉, 等. 鱼粉废水发酵生产微生物油脂技术研究. 工业安全与环保, 2011, 37(4): 6-8. Zhang B, Haung L H, Gao B Y, et al. Research on microbial lipid process by fishmeal wastewater fermentation. Industrial Safety and Environmental Protection, 2011, 37(4): 6-8.
[35] Huang L H, Zhang B, Gao B Y, et al. Application of fishmeal wastewater as a potential low-cost medium for lipid production by Lipomyces starkeyi HL. Environmental Technology, 2011, 33(15-16): 1975-1981.
[36] 王华, 刘欢, 郭书贤, 等. 啤酒生产废水培养斯达油脂酵母发酵产油脂培养基的优化. 中国油脂, 2011, 38:31-36. Wang H, Liu H, Guo SH X, et al. Medium optimization of producing lipid with Lipomyces starkeyi from brewery wastewater. China Oils and Fats, 2011, 38: 31-36.
[37] 郭书贤, 王振伟, 刘欢, 等. 斯达油脂酵母发酵食品生产废水产油脂的研究. 中国食品学报, 2010, 10: 245-252. Guo SH X, Wang Z W, Liu H, et al. Study on the microbial lipid production from fermentation of food products waste water by Lipomyces Starkeyi. Journal of Chinese Institute of Food Science and Technology, 2010, 10: 245-252.
[38] 周稳稳, 张永奎, 邹文婷, 等. 圆红冬孢酵母在酒精废水中发酵产油. 化工进展, 2010, 29: 172-175. Zhou W W, Zhang W K, Zou W Y, et al. Lipid production form fermentation of alcohol wastewater by Rhodosporidium toruloides. Chemical Industry and Engineering Progress, 2010, 29: 172-175.
[39] 吴思国, 赵鑫, 胡翠敏, 等. 转化 N-乙酰-D-葡糖胺产油真菌的筛选. 中国生物工程杂志, 2008, 28(11): 58-62. Wu S G, Zhao X, Hu C M, et al. Screening of fungi for microbial oil production using N-Acetyl-D-glucosamine, China Biotechnology, 2008, 28(11): 58-62.
[40] Wu S G, Hu C M, Zhao X, et al. Production of lipid from N-acetylglucosamine by Cryptococcus curvatus. European Journal of Lipid Science and Technology, 2010, 112: 727-733.
[41] Angerbauer C, Siebenhofer M, Mittelbach M, et al. Conversion of sewage sludge into lipids by lipomyces starkeyi for biodiesel production. Bioresource Technology, 2008, 99: 3051-3056.
[42] 徐静阳, 大浦宏隆, 刘德华, 等. 剩余污泥热碱解及其用于微生物油脂生产的探索. 生物工程学报, 2011, 27(3): 482-488. Xu J Y, DaPu L H, Liu D H, et al. Heat-alkaline treatment of excess sludge and the potential use of hydrolysate as nitrogen source for microbial lipid production. Chinese Journal of Biotechnology, 2011, 27(3): 482-488.
[43] 华艳艳, 赵鑫, 张素芳, 等. 圆红冬孢酵母发酵菊芋块茎产油脂的研究. 生物工程学, 2007, 27(10): 59-63. Hua Y Y, Zhao X, Zhang S F, et al. Lipid production by Rhodosporidium toruloides using Jerusalem artichoke tubers, China Biotechnology, 2007, 27(10): 59-63.
[44] Zhao X, Wu S G, Hu C M, et al. Lipid production from Jerusalem artichoke by Rhodosporidium toruloides Y4. Journal of Industrial Microbiology and Biotechnology, 2010, 37(6): 581-585.
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