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丝状真菌形态控制及其在发酵过程优化中的应用 被引量:17

Controlling the morphology of filamentous fungi for optimization of fermentation process
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摘要 丝状真菌广泛用于发酵产业,在液体深层发酵过程中,其生长形态与产物种类及产量间存在重要关联,成为发酵过程调控的热点。采用数学模型解释丝状真菌的形态发育与调控机制,是近年来工程学界颇为关注的研究手段。本文结合自己的工作着重解释丝状真菌各种生长形态的生长机理及形态发育的数学描述方式,以及如何采用数学模型描述丝状真菌发酵过程中产物、形态及环境的关联,最终实现形态的控制,完成生物发酵过程优化。具体包括:1)丝状真菌的生长机制;2)形态发育数学模型在发酵过程优化中的应用;3)控制丝状真菌形态的策略。 Filamentous fungi have been extensively used in industrial fermentation processes.One of the most interesting topics of filamentous fungi is their bothersome morphology,which closely correlates with the productivity and broth rheology.Aiming at the optimization of the microbial process,works mainly focused on the relationships between morphology,productivity and environment in the last decades.Based on those works,we tried to interpret the mechanism of filamentous fungi growth from physiological aspects,and reviewed the mathematical models describing the hyphal growth,differentiation during the formation of target products.Above all,efficient and effective morphology controlling strategies were addressed from the engineering view.
出处 《生物工程学报》 CAS CSCD 北大核心 2012年第2期178-190,共13页 Chinese Journal of Biotechnology
基金 国家自然科学基金(No.21076104) 国家高技术研究发展计划(863计划)(No.2011AA02A206)资助~~
关键词 丝状真菌 形态生理学 形态工程学 数学模型 发酵过程优化 filamentous fungi morphology physiology morphology engineering mathematical models fermentation process optimization
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参考文献51

  • 1Papagianni M.Fungal morphology and metabolite production in submerged mycelial processes.Biotechnol Adv,2004,22(3):189-259.
  • 2堵国成,刘立明,李寅,陈坚.以高产量、高产率、高生产强度为目标的发酵过程优化技术[J].化工进展,2006,25(10):1128-1133. 被引量:8
  • 3Wucherpfennig T,Kiep KA,Driouch H,et al.Morphology and rheology in filamentous cultivations.Adv Appl Microbiol,2010,72:89-136.
  • 4Krull R,Cordes C,Horn H,et al.Morphology of filamentous fungi:linking cellular biology to process engineering using Aspergillus niger.Adv Biochem Eng Biot,2010,121:121.
  • 5Driouch H,Sommer B,Wittmann C.Morphology engineering of Aspergillus niger for improved enzyme production.Biotechnol Bioeng,2010,105(6):1058-1068.
  • 6Driouch H,H nsch R,Wucherpfennig T,et al.Improved enzyme production by bio-pellets of Aspergillus niger:targeted morphology engineering using titanate microparticles.Biotechnol Bioeng,2011,109(2):462-471.
  • 7Meyer V,Arentshorst M,Flitter SJ,et al.Reconstruction of signaling networks regulating fungal morphogenesis by transcriptomics.Eukaryot Cell,2009,8(11):1677-1691.
  • 8Harris SD,Read ND,Roberson RW,et al.Polarisome meets spitzenk rper:microscopy,genetics,and genomics converge.Eukaryot Cell,2005,4(2):225-232.
  • 9Osiewacz HD.Molecular Biology of Fungal Development.Florida:CRC Press,2002:32-33.
  • 10Grosse C,Heinekamp T,Kniemeyer O,et al.Protein kinase A regulates growth,sporulation,and pigment formation in Aspergillus fumigatus.Appl Environ Microbiol,2008,74(15):4923-4934.

二级参考文献44

  • 1万平,冀志霞,储炬,庄英萍,张嗣良,罗家立,白骅.菌丝形态分化与头孢菌素C合成的关系[J].微生物学通报,2005,32(1):15-21. 被引量:10
  • 2何宁,李寅,陈坚.新型生物絮凝剂REA-11的代谢模型建立与代谢网络分析[J].化工学报,2005,56(4):681-688. 被引量:8
  • 3潘春梅,李寅,堵国成,陈坚.利用广谱性和特异性组合诱变技术选育辅酶Q_(10)高产菌[J].应用与环境生物学报,2005,11(3):363-367. 被引量:13
  • 4聂薇,卫功元,李寅,堵国成,陈坚.利用低pH胁迫作用促进产朊假丝酵母生产谷胱甘肽[J].化工学报,2005,56(9):1750-1756. 被引量:21
  • 5Cao N,Du J,Gong C S,et al.Simultaneous production and recovery of fumaric acid from immobilized Rhizopus oryzae with a rotary biofilm contator and an adsorption column[J].Applied and Environmental Microbiology,1996,62:2926-2931.
  • 6Hang Y D.Direct fermentation of corn to L (+)-lactic acid by Rhizopus oryza[J].Biotechnology Letters,1989,11(4):299-300.
  • 7Yang Xuehao,Wang Bingwu,Cui Fengnan,et al.Production of lipase by repeated batch fermentation with immobilized Rhizopus arrhizus[J].Process Biochemistry,2005,40:2095-2103.
  • 8Casas Lopez J L,Sanchez Perez J A,Fernandez Sevilla J M,et al.Fermentation optimization for the production of lovastatin by Aspergillus terreus:use of response surface methodology[J].Journal of Chemical Technology and Biotechnology,2004,79(10):1119-1126.
  • 9Metz B,Kossen N W F.The growth of molds in the form of pellets[J].Biotechnology and Bioengineering,1977,19(6):781-799.
  • 10Papagianni M.Fungal morphology and metabolite production in submerged mycelial process[J].Biotechnology Advances,2004,22:189-259.

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