메뉴 건너뛰기




Volumn 51, Issue 1, 2016, Pages 16-23

Production of polymalic acid and malic acid from xylose and corncob hydrolysate by a novel Aureobasidium pullulans YJ 6-11 strain

Author keywords

Aureobasidium pullulans; Corncob hydrolysate; Fermentation; Malic acid; Polymalic acid; Xlyose

Indexed keywords

GLUCOSE;

EID: 84951311041     PISSN: 13595113     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.procbio.2015.11.018     Document Type: Article
Times cited : (50)

References (29)
  • 1
    • 54949085794 scopus 로고    scopus 로고
    • Biodegradable nanoparticles of partially methylated fungal poly(beta-l-malic acid) as a novel protein delivery carrier
    • J.A. Portilla-Arias, M. Garcia-Alvarez, J.A. Galbis, and S. Munoz-Guerra Biodegradable nanoparticles of partially methylated fungal poly(beta-l-malic acid) as a novel protein delivery carrier Macromol. Biosci. 8 2008 551 559
    • (2008) Macromol. Biosci. , vol.8 , pp. 551-559
    • Portilla-Arias, J.A.1    Garcia-Alvarez, M.2    Galbis, J.A.3    Munoz-Guerra, S.4
  • 2
    • 84896432306 scopus 로고    scopus 로고
    • Synthesis of controlled molecular weight poly(beta-malic acid) and conjugation with HCPT as a polymeric drug carrier
    • Y. Qiao, X. Duan, L. Fan, W. Li, H. Wu, and Y. Wang Synthesis of controlled molecular weight poly(beta-malic acid) and conjugation with HCPT as a polymeric drug carrier J. Polym. Res. 21 2014 397
    • (2014) J. Polym. Res. , vol.21 , pp. 397
    • Qiao, Y.1    Duan, X.2    Fan, L.3    Li, W.4    Wu, H.5    Wang, Y.6
  • 3
    • 0030242612 scopus 로고    scopus 로고
    • Poly(beta-malic acid): Obtaining high molecular weights by improvement of the synthesis route
    • S. Cammas, I. Renard, V. Langlois, and P. Guerin Poly(beta-malic acid): obtaining high molecular weights by improvement of the synthesis route Polymer 37 1996 4215 4220
    • (1996) Polymer , vol.37 , pp. 4215-4220
    • Cammas, S.1    Renard, I.2    Langlois, V.3    Guerin, P.4
  • 4
    • 0031599052 scopus 로고    scopus 로고
    • Chemical routes to poly(beta-malic acid) and potential applications of this water-soluble bioresorbable poly(beta-hydroxy alkanoate)
    • M. Vert Chemical routes to poly(beta-malic acid) and potential applications of this water-soluble bioresorbable poly(beta-hydroxy alkanoate) Polym. Degrad. Stab. 59 1998 169 175
    • (1998) Polym. Degrad. Stab. , vol.59 , pp. 169-175
    • Vert, M.1
  • 5
    • 84885385772 scopus 로고    scopus 로고
    • Overproduction of poly(beta-malic acid) (PMA) from glucose by a novel Aureobasidium sp. P6 strain isolated from mangrove system
    • Y. Ma, G.-Y. Wang, G.-L. Liu, Z.-P. Wang, and Z.-M. Chi Overproduction of poly(beta-malic acid) (PMA) from glucose by a novel Aureobasidium sp. P6 strain isolated from mangrove system Appl. Microbiol. Biotechnol. 97 2013 8931 8939
    • (2013) Appl. Microbiol. Biotechnol. , vol.97 , pp. 8931-8939
    • Ma, Y.1    Wang, G.-Y.2    Liu, G.-L.3    Wang, Z.-P.4    Chi, Z.-M.5
  • 6
    • 82455188036 scopus 로고    scopus 로고
    • High-level production of poly(beta-l-malic acid) with a new isolated Aureobasidium pullulans strain
    • H. Zhang, J. Cai, J. Dong, D. Zhang, L. Huang, Z. Xu, and P. Cen High-level production of poly(beta-l-malic acid) with a new isolated Aureobasidium pullulans strain Appl. Microbiol. Biotechnol. 92 2011 295 303
    • (2011) Appl. Microbiol. Biotechnol. , vol.92 , pp. 295-303
    • Zhang, H.1    Cai, J.2    Dong, J.3    Zhang, D.4    Huang, L.5    Xu, Z.6    Cen, P.7
  • 7
    • 84879603391 scopus 로고    scopus 로고
    • Production of polymalic acid and malic acid by Aureobasidium pullulans fermentation and acid hydrolysis
    • X. Zou, Y. Zhou, and S.-T. Yang Production of polymalic acid and malic acid by Aureobasidium pullulans fermentation and acid hydrolysis Biotechnol. Bioeng. 110 2013 2105 2113
    • (2013) Biotechnol. Bioeng. , vol.110 , pp. 2105-2113
    • Zou, X.1    Zhou, Y.2    Yang, S.-T.3
  • 8
    • 0031050326 scopus 로고    scopus 로고
    • Production of poly(malic acid) from different carbon sources and its regulation in Aureobasidium pullulans
    • S.J. Liu, and A. Steinbuchel Production of poly(malic acid) from different carbon sources and its regulation in Aureobasidium pullulans Biotechnol. Lett. 19 1997 11 14
    • (1997) Biotechnol. Lett. , vol.19 , pp. 11-14
    • Liu, S.J.1    Steinbuchel, A.2
  • 9
    • 84883760704 scopus 로고    scopus 로고
    • Efficient production of polymalic acid from raw sweet potato hydrolysate with immobilized cells of Aureobasidium pullulans CCTCC M2012223 in aerobic fibrous bed bioreactor
    • Z.Q. Zan, and X. Zou Efficient production of polymalic acid from raw sweet potato hydrolysate with immobilized cells of Aureobasidium pullulans CCTCC M2012223 in aerobic fibrous bed bioreactor J. Chem. Technol. Biotechnol. 88 2013 1822 1827
    • (2013) J. Chem. Technol. Biotechnol. , vol.88 , pp. 1822-1827
    • Zan, Z.Q.1    Zou, X.2
  • 10
    • 84877969997 scopus 로고    scopus 로고
    • Enhanced fumaric acid production by fermentation of xylose using a modified strain of Rhizopus arrhizus
    • S. Wen, L. Liu, K.L. Nie, L. Deng, T.W. Tan, and W. Fang Enhanced fumaric acid production by fermentation of xylose using a modified strain of Rhizopus arrhizus Bioresources 8 2013 2186 2194
    • (2013) Bioresources , vol.8 , pp. 2186-2194
    • Wen, S.1    Liu, L.2    Nie, K.L.3    Deng, L.4    Tan, T.W.5    Fang, W.6
  • 11
    • 68349109625 scopus 로고    scopus 로고
    • Ethanol production from xylose in engineered Saccharomyces cerevisiae strains: Current state and perspectives
    • A. Matsushika, H. Inoue, T. Kodaki, and S. Sawayama Ethanol production from xylose in engineered Saccharomyces cerevisiae strains: current state and perspectives Appl. Microbiol. Biotechnol. 84 2009 37 53
    • (2009) Appl. Microbiol. Biotechnol. , vol.84 , pp. 37-53
    • Matsushika, A.1    Inoue, H.2    Kodaki, T.3    Sawayama, S.4
  • 12
    • 34249993002 scopus 로고    scopus 로고
    • Butanol production from agricultural residues: Impact of degradation products on Clostridium beijerinckii growth and butanol fermentation
    • T. Ezeji, N. Qureshi, and H.P. Blaschek Butanol production from agricultural residues: impact of degradation products on Clostridium beijerinckii growth and butanol fermentation Biotechnol. Bioeng. 97 2007 1460 1469
    • (2007) Biotechnol. Bioeng. , vol.97 , pp. 1460-1469
    • Ezeji, T.1    Qureshi, N.2    Blaschek, H.P.3
  • 13
  • 14
    • 0012340259 scopus 로고
    • Fermentative production of poly(β-l-malic acid), a polyelectrolytic biopolyester, by Aureobasidium sp
    • N. Nagata, T. Nakahara, and T. Tabuchi Fermentative production of poly(β-l-malic acid), a polyelectrolytic biopolyester, by Aureobasidium sp Biosci. Biotechnol. Biochem. 57 1993 638 642
    • (1993) Biosci. Biotechnol. Biochem. , vol.57 , pp. 638-642
    • Nagata, N.1    Nakahara, T.2    Tabuchi, T.3
  • 16
    • 34547781750 scopus 로고    scopus 로고
    • MEGA4: Molecular evolutionary genetics analysis (MEGA) software version 4.0
    • K. Tamura, J. Dudley, M. Nei, and S. Kumar MEGA4: molecular evolutionary genetics analysis (MEGA) software version 4.0 Mol. Biol. Evol. 24 2007 1596 1599
    • (2007) Mol. Biol. Evol. , vol.24 , pp. 1596-1599
    • Tamura, K.1    Dudley, J.2    Nei, M.3    Kumar, S.4
  • 18
    • 84930714462 scopus 로고    scopus 로고
    • 2 donor regulation involved in reductive routes for polymalic acid production by Aureobasidium pullulans CCTCC M2012223
    • 2 donor regulation involved in reductive routes for polymalic acid production by Aureobasidium pullulans CCTCC M2012223 Bioproc. Biosyst. Eng. 37 2014 2131 2136
    • (2014) Bioproc. Biosyst. Eng. , vol.37 , pp. 2131-2136
    • Zou, X.1    Tu, G.W.2    Zan, Z.Q.3
  • 20
    • 79960095900 scopus 로고    scopus 로고
    • GTME for improved adaptation of Saccharomyces cerevisiae to corncob acid hydrolysate
    • H. Liu, K. Liu, M. Yan, L. Xu, and P. Ouyang gTME for improved adaptation of Saccharomyces cerevisiae to corncob acid hydrolysate Appl. Biochem. Biotechnol. 164 2011 1150 1159
    • (2011) Appl. Biochem. Biotechnol. , vol.164 , pp. 1150-1159
    • Liu, H.1    Liu, K.2    Yan, M.3    Xu, L.4    Ouyang, P.5
  • 21
    • 84856354127 scopus 로고    scopus 로고
    • Lactic acid production by alkaline hydrothermal treatment of corn cobs
    • C. Sanchez, I. Eguees, A. Garcia, R. Llano-Ponte, and J. Labidi Lactic acid production by alkaline hydrothermal treatment of corn cobs Chem. Eng. J. 181 2012 655 660
    • (2012) Chem. Eng. J. , vol.181 , pp. 655-660
    • Sanchez, C.1    Eguees, I.2    Garcia, A.3    Llano-Ponte, R.4    Labidi, J.5
  • 22
    • 0034501647 scopus 로고    scopus 로고
    • Synthesis, structure and properties of polyhydroxyalkanoates: Biological polyesters
    • K. Sudesh, H. Abe, and Y. Doi Synthesis, structure and properties of polyhydroxyalkanoates: biological polyesters Prog. Polym. Sci. 25 2000 1503 1555
    • (2000) Prog. Polym. Sci. , vol.25 , pp. 1503-1555
    • Sudesh, K.1    Abe, H.2    Doi, Y.3
  • 23
    • 80052023612 scopus 로고    scopus 로고
    • Simultaneous utilization of glucose and xylose for lipid production by Trichosporon cutaneum
    • C. Hu, S. Wu, Q. Wang, G. Jin, H. Shen, and Z.K. Zhao Simultaneous utilization of glucose and xylose for lipid production by Trichosporon cutaneum Biotechnol. Biofuels 2011 4 25
    • (2011) Biotechnol. Biofuels , pp. 4-25
    • Hu, C.1    Wu, S.2    Wang, Q.3    Jin, G.4    Shen, H.5    Zhao, Z.K.6
  • 24
    • 84898053053 scopus 로고    scopus 로고
    • Engineering of yeast hexose transporters to transport d-xylose without inhibition by d-glucose
    • A. Farwick, S. Bruder, V. Schadeweg, M. Oreb, and E. Boles Engineering of yeast hexose transporters to transport d-xylose without inhibition by d-glucose PNAS 111 2014 5159 5164
    • (2014) PNAS , vol.111 , pp. 5159-5164
    • Farwick, A.1    Bruder, S.2    Schadeweg, V.3    Oreb, M.4    Boles, E.5
  • 25
    • 84863430802 scopus 로고    scopus 로고
    • Intensification of β-poly(l-malic acid) production by Aureobasidium pullulans ipe-1 in the late exponential growth phase
    • W. Cao, J. Luo, J. Zhao, C. Qiao, L. Ding, B. Qi, Y. Su, and Y. Wan Intensification of β-poly(l-malic acid) production by Aureobasidium pullulans ipe-1 in the late exponential growth phase J. Ind. Microbiol. Biotechnol. 39 2012 1073 1080
    • (2012) J. Ind. Microbiol. Biotechnol. , vol.39 , pp. 1073-1080
    • Cao, W.1    Luo, J.2    Zhao, J.3    Qiao, C.4    Ding, L.5    Qi, B.6    Su, Y.7    Wan, Y.8
  • 27
    • 84925652370 scopus 로고    scopus 로고
    • Adaptation and transcriptome analysis of Aureobasidium pullulans in corncob hydrolysate for increased inhibitor tolerance to malic acid production
    • X. Zou, Y. Wang, G. Tu, Z. Zan, and X. Wu Adaptation and transcriptome analysis of Aureobasidium pullulans in corncob hydrolysate for increased inhibitor tolerance to malic acid production PLoS One 10 2015 e0121416
    • (2015) PLoS One , vol.10
    • Zou, X.1    Wang, Y.2    Tu, G.3    Zan, Z.4    Wu, X.5
  • 28
    • 84879283453 scopus 로고    scopus 로고
    • Evaluating the effect of medium composition and fermentation condition on the microbial oil production by Trichosporon cutaneum on corncob acid hydrolysate
    • X.F. Chen, C. Huang, X.Y. Yang, L. Xiong, X.D. Chen, and L.L. Ma Evaluating the effect of medium composition and fermentation condition on the microbial oil production by Trichosporon cutaneum on corncob acid hydrolysate Bioresour. Technol. 143 2013 18 24
    • (2013) Bioresour. Technol. , vol.143 , pp. 18-24
    • Chen, X.F.1    Huang, C.2    Yang, X.Y.3    Xiong, L.4    Chen, X.D.5    Ma, L.L.6
  • 29
    • 0031050326 scopus 로고    scopus 로고
    • Production of poly(malic acid) from different carbon sources and its regulation in Aureobasidium pullulans
    • S.J. Liu, and A. Steinbuchel Production of poly(malic acid) from different carbon sources and its regulation in Aureobasidium pullulans Biotechnol. Lett. 19 1997 11 14
    • (1997) Biotechnol. Lett. , vol.19 , pp. 11-14
    • Liu, S.J.1    Steinbuchel, A.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.