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利用颗粒状米根霉NRRL 395优化L-(+)-乳酸的生产

Optimization of L-(+)-lactic acid production using pelletized filamentous Rhizopus oryzae NRRL 395.

作者信息

Liu Yan, Liao Wei, Liu Chuanbin, Chen Shulin

机构信息

Department of Biological Systems Engineering and Center for Multiphase Environmental Research, Washington State University, L. J. Smith 213, Pullman, WA 99164-6120, USA.

出版信息

Appl Biochem Biotechnol. 2006 Mar;131(1-3):844-53. doi: 10.1385/ABAB:131:1-3:844.

Abstract

Lactic acid is used as a food additive for flavor and preservation and a precursor in the development of poly-lactic acid, a product used to make biodegradable plastics and textiles. Rhizopus oryzae NRRL 395 is known to be a strain that produces optically pure L-(+)-lactic acid. The morphology of Rhizopus cultures is complex, forming filamentous, clumps, and pellet mycelia. Different morphology growth has significant effects on lactic acid production. In bioreactors, the filamentous or clump mycelia increase the viscosity of the medium, wrap around impellers, and block the nutrient transportation, leading to a decrease in production efficiency and bioreactor performance. Growing fungi in pellet form can significantly improve these problems. In this study, factors that affect lactic acid production in pelletized flask cultures using R. oryzae NRRL 395 were investigated in detail. Completely randomized designs were used to determine the influence of culture temperature, time, concentration of glucose, and inoculum size. Lactic acid fermentation using clump and pellet morphologies were performed in a 5 L fermentor at the optimal values obtained from flask culture. Finally, fed-batch culture was used to enhance the lactate concentration in broth. The final lactate concentration of fed-batch culture reached 92 g/L. The data presented in the article can provide useful information on optimizing lactic acid production using alternative source materials.

摘要

乳酸用作食品添加剂以增添风味和防腐,也是聚乳酸生产的前体,聚乳酸用于制造可生物降解的塑料和纺织品。米根霉NRRL 395是一种已知能产生光学纯L-(+)-乳酸的菌株。根霉培养物的形态复杂,会形成丝状、团块状和颗粒状菌丝体。不同形态的生长对乳酸生产有显著影响。在生物反应器中,丝状或团块状菌丝体会增加培养基的粘度,缠绕在搅拌器周围,并阻碍营养物质的运输,导致生产效率和生物反应器性能下降。以颗粒形式培养真菌可以显著改善这些问题。在本研究中,详细研究了使用米根霉NRRL 395进行颗粒化摇瓶培养时影响乳酸生产的因素。采用完全随机设计来确定培养温度、时间、葡萄糖浓度和接种量的影响。在5 L发酵罐中,以摇瓶培养获得的最佳值,对团块状和颗粒状形态进行乳酸发酵。最后,采用分批补料培养来提高发酵液中的乳酸浓度。分批补料培养的最终乳酸浓度达到92 g/L。本文所呈现的数据可为利用替代原料优化乳酸生产提供有用信息。

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