Genome Characterization of the Oleaginous Fungus Mortierella alpina

被引:126
作者
Wang, Lei [1 ,3 ,4 ]
Chen, Wei [2 ]
Feng, Yun [1 ,3 ]
Ren, Yan [1 ]
Gu, Zhennan [5 ]
Chen, Haiqin [2 ,5 ]
Wang, Hongchao [2 ]
Thomas, Michael J. [6 ]
Zhang, Baixi [2 ]
Berquin, Isabelle M. [5 ]
Li, Yang [1 ]
Wu, Jiansheng [5 ]
Zhang, Huanxin [1 ]
Song, Yuanda [2 ]
Liu, Xiang [7 ]
Norris, James S. [7 ]
Wang, Suriguga [1 ]
Du, Peng [8 ]
Shen, Junguo [8 ]
Wang, Na [8 ]
Yang, Yanlin [8 ]
Wang, Wei [1 ]
Feng, Lu [1 ,3 ,4 ]
Ratledge, Colin [9 ]
Zhang, Hao [2 ]
Chen, Yong Q. [5 ]
机构
[1] Nankai Univ, Tianjin Econ Technol Dev Area, TEDA Sch Biol Sci & Biotechnol, Tianjin 300071, Peoples R China
[2] Jiangnan Univ, Sch Food Sci & Technol, State Key Lab Food Sci & Technol, Wuxi, Peoples R China
[3] Tianjin Res Ctr Funct Genom & Biochip, Tianjin Econ Technol Dev Area, Tianjin, Peoples R China
[4] Nankai Univ, Key Lab Mol Microbiol & Technol, TEDA Sch Biol Sci & Biotechnol, Minist Educ, Tianjin 300071, Peoples R China
[5] Wake Forest Sch Med, Dept Canc Biol, Winston Salem, NC USA
[6] Wake Forest Sch Med, Dept Biochem, Winston Salem, NC USA
[7] Med Univ S Carolina, Dept Microbiol & Immunol, Charleston, SC 29425 USA
[8] Tianjin Biochip Corp, Tianjin Econ Technol Dev Area, Tianjin, Peoples R China
[9] Univ Hull, Dept Biol Sci, Kingston Upon Hull HU6 7RX, N Humberside, England
基金
国家高技术研究发展计划(863计划); 美国国家卫生研究院; 美国国家科学基金会;
关键词
FATTY-ACID SYNTHASE; TANDEM MASS-SPECTROMETRY; CELL OIL PRODUCTION; ARACHIDONIC-ACID; HETEROLOGOUS EXPRESSION; QUANTITATIVE-ANALYSIS; LIPID-ACCUMULATION; MALIC ENZYME; PHYLOGENETIC CLASSIFICATION; SACCHAROMYCES-CEREVISIAE;
D O I
10.1371/journal.pone.0028319
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Mortierella alpina is an oleaginous fungus which can produce lipids accounting for up to 50% of its dry weight in the form of triacylglycerols. It is used commercially for the production of arachidonic acid. Using a combination of high throughput sequencing and lipid profiling, we have assembled the M. alpina genome, mapped its lipogenesis pathway and determined its major lipid species. The 38.38 Mb M. alpina genome shows a high degree of gene duplications. Approximately 50% of its 12,796 gene models, and 60% of genes in the predicted lipogenesis pathway, belong to multigene families. Notably, M. alpina has 18 lipase genes, of which 11 contain the class 2 lipase domain and may share a similar function. M. alpina's fatty acid synthase is a single polypeptide containing all of the catalytic domains required for fatty acid synthesis from acetyl-CoA and malonyl-CoA, whereas in many fungi this enzyme is comprised of two polypeptides. Major lipids were profiled to confirm the products predicted in the lipogenesis pathway. M. alpina produces a complex mixture of glycerolipids, glycerophospholipids and sphingolipids. In contrast, only two major sterol lipids, desmosterol and 24(28)-methylene-cholesterol, were detected. Phylogenetic analysis based on genes involved in lipid metabolism suggests that oleaginous fungi may have acquired their lipogenic capacity during evolution after the divergence of Ascomycota, Basidiomycota, Chytridiomycota and Mucoromycota. Our study provides the first draft genome and comprehensive lipid profile for M. alpina, and lays the foundation for possible genetic engineering of M. alpina to produce higher levels and diverse contents of dietary lipids.
引用
收藏
页数:16
相关论文
共 94 条
[1]   Gapped BLAST and PSI-BLAST: a new generation of protein database search programs [J].
Altschul, SF ;
Madden, TL ;
Schaffer, AA ;
Zhang, JH ;
Zhang, Z ;
Miller, W ;
Lipman, DJ .
NUCLEIC ACIDS RESEARCH, 1997, 25 (17) :3389-3402
[2]   Genomic Analysis of the Necrotrophic Fungal Pathogens Sclerotinia sclerotiorum and Botrytis cinerea [J].
Amselem, Joelle ;
Cuomo, Christina A. ;
van Kan, Jan A. L. ;
Viaud, Muriel ;
Benito, Ernesto P. ;
Couloux, Arnaud ;
Coutinho, Pedro M. ;
de Vries, Ronald P. ;
Dyer, Paul S. ;
Fillinger, Sabine ;
Fournier, Elisabeth ;
Gout, Lilian ;
Hahn, Matthias ;
Kohn, Linda M. ;
Lapalu, Nicolas ;
Plummer, Kim M. ;
Pradier, Jean-Marc ;
Quevillon, Emmanuel ;
Sharon, Amir ;
Simon, Adeline ;
ten Have, Arjen ;
Tudzynski, Bettina ;
Tudzynski, Paul ;
Wincker, Patrick ;
Andrew, Marion ;
Anthouard, Veronique ;
Beever, Ross E. ;
Beffa, Rolland ;
Benoit, Isabelle ;
Bouzid, Ourdia ;
Brault, Baptiste ;
Chen, Zehua ;
Choquer, Mathias ;
Collemare, Jerome ;
Cotton, Pascale ;
Danchin, Etienne G. ;
Da Silva, Corinne ;
Gautier, Angelique ;
Giraud, Corinne ;
Giraud, Tatiana ;
Gonzalez, Celedonio ;
Grossetete, Sandrine ;
Gueldener, Ulrich ;
Henrissat, Bernard ;
Howlett, Barbara J. ;
Kodira, Chinnappa ;
Kretschmer, Matthias ;
Lappartient, Anne ;
Leroch, Michaela ;
Levis, Caroline .
PLOS GENETICS, 2011, 7 (08)
[3]   Comparative genomics of citric-acid-producing Aspergillus niger ATCC 1015 versus enzyme-producing CBS 513.88 [J].
Andersen, Mikael R. ;
Salazar, Margarita P. ;
Schaap, Peter J. ;
van de Vondervoort, Peter J. I. ;
Culley, David ;
Thykaer, Jette ;
Frisvad, Jens C. ;
Nielsen, Kristian F. ;
Albang, Richard ;
Albermann, Kaj ;
Berka, Randy M. ;
Braus, Gerhard H. ;
Braus-Stromeyer, Susanna A. ;
Corrochano, Luis M. ;
Dai, Ziyu ;
van Dijck, Piet W. M. ;
Hofmann, Gerald ;
Lasure, Linda L. ;
Magnuson, Jon K. ;
Menke, Hildegard ;
Meijer, Martin ;
Meijer, Susan L. ;
Nielsen, Jakob B. ;
Samson, Rob A. ;
Stam, Hein ;
Tsang, Adrian ;
van den Brink, Johannes M. ;
Atkins, Alex ;
Aerts, Andrea ;
Shapiro, Harris ;
Pangilinan, Jasmyn ;
Salamov, Asaf ;
Lou, Yigong ;
Lindquist, Erika ;
Lucas, Susan ;
Grimwood, Jane ;
Grigoriev, Igor V. ;
Kubicek, Christian P. ;
Martinez, Diego ;
van Peij, Noel N. M. E. ;
Roubos, Johannes A. ;
Nielsen, Jens ;
Baker, Scott E. .
GENOME RESEARCH, 2011, 21 (06) :885-897
[4]   Establishment of Agrobacterium tumefaciens-Mediated Transformation of an Oleaginous Fungus, Mortierella alpina 1S-4, and Its Application for Eicosapentaenoic Acid Producer Breeding [J].
Ando, Akinori ;
Sumida, Yosuke ;
Negoro, Hiroaki ;
Suroto, Dian Anggraini ;
Ogawa, Jun ;
Sakuradani, Eiji ;
Shimizu, Sakayu .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2009, 75 (17) :5529-5535
[5]   PRINTS and its automatic supplement, prePRINTS [J].
Attwood, TK ;
Bradley, P ;
Flower, DR ;
Gaulton, A ;
Maudling, N ;
Mitchell, AL ;
Moulton, G ;
Nordle, A ;
Paine, K ;
Taylor, P ;
Uddin, A ;
Zygouri, C .
NUCLEIC ACIDS RESEARCH, 2003, 31 (01) :400-402
[6]   ARACHIDONIC-ACID PRODUCTION BY FUNGI [J].
BAJPAI, PK ;
BAJPAI, P ;
WARD, OP .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1991, 57 (04) :1255-1258
[7]   Multi-targeted therapy of cancer by omega-3 fatty acids [J].
Berquin, Isabelle M. ;
Edwards, Iris J. ;
Chen, Yong Q. .
CANCER LETTERS, 2008, 269 (02) :363-377
[8]   Simultaneous quantitative analysis of bioactive sphingolipids by high-performance liquid chromatography-tandem mass spectrometry [J].
Bielawski, Jacek ;
Szulc, Zdzislaw M. ;
Hannun, Yusuf A. ;
Bielawska, Alicja .
METHODS, 2006, 39 (02) :82-91
[9]  
BLIGH EG, 1959, CAN J BIOCHEM PHYS, V37, P911
[10]   A human-curated annotation of the Candida albicans genome [J].
Braun, BR ;
Hoog, MV ;
d'Enfert, C ;
Martchenko, M ;
Dungan, J ;
Kuo, A ;
Inglis, DO ;
Uhl, MA ;
Hogues, H ;
Berriman, M ;
Lorenz, M ;
Levitin, A ;
Oberholzer, U ;
Bachewich, C ;
Harcus, D ;
Marcil, A ;
Dignard, D ;
Iouk, T ;
Zito, R ;
Frangeul, L ;
Tekaia, F ;
Rutherford, K ;
Wang, E ;
Munro, CA ;
Bates, S ;
Gow, NA ;
Hoyer, LL ;
Köhler, G ;
Morschhäuser, J ;
Newport, G ;
Znaidi, S ;
Raymond, M ;
Turcotte, B ;
Sherlock, G ;
Costanzo, M ;
Ihmels, J ;
Berman, J ;
Sanglard, D ;
Agabian, N ;
Mitchell, AP ;
Johnson, AD ;
Whiteway, M ;
Nantel, A .
PLOS GENETICS, 2005, 1 (01) :36-57