Several feeding fed-batch culture methods for the production of glutathione (GSH) by Saccharomyces cerevisiae were compared.
比较了酵母菌发酵生产谷胱甘肽(GSH)的几种补料分批培养方式。
During the high density fermentation, some toxic inhibitor metabolites produced, which could be decreased by fed-batch culture.
在高密度发酵过程中,会产生一些有害抑制代谢副产物,但通过分批补料可以降低影响。
The result indicated, fed-batch culture could lead to the increase of thallus but without the increase of plasmid concentration.
结果表明,分批流加菌体量虽然有所增加,但质粒浓度并未明显提高。
The study on improving fermentative production of Monascus pigments by fed-batch culture using disused glucose solution is presented in this paper.
对以葡萄糖母液为原料进行半连续发酵生产红曲色素进行了初步研究。
The results indicate that the model could reflect this glucose feeding law very well, which was very important for guiding the fed-batch culture of yeast.
研究结果表明,流加培养模型能较好地反映酵母流加培养过程中糖流加的规律,对酵母的流加培养具有一定的指导意义。
The biotechnology of flask batch and fed-batch culture to produce yeast from cornhusk hydrolysate was studied and the fed -batch process in 10L bioreactor was conducted.
本文研究了玉米皮水解液发酵生产饲料酵母的摇瓶间歇培养和分批补料培养条件,进行了10L反应器分批补料培养试验。
In this paper, the research progress in modern bioengineering breeding techniques, fed-batch culture of microzyme, and drying techniques were reviewed and their development prospects were discussed.
综述了现代生物工程育种技术、酵母菌流加培养、干燥技术的研究进展,并展望了发展前景。
Production of Monascus pigments is studied by using disused glucose solution in air lift reactor using fed batch culture, and a simple mathematical model to control fed batch is established.
以葡萄糖母液为原料,对在气升式生物反应器中流加发酵生产红曲色素进行了研究,建立了简单的数学模型控制流加。
The effects of plant hormones, IBA and 6-ba, on the flask fed-batch heterotrophic culture and the constituents of Chlorella vulgaris were researched in this paper.
研究了植物激素IBA与6 - BA对摇瓶分批流加异养培养小球藻的生长及化学组成的影响。
The fed-batch fermentation method was studied by flask culture based on the optimal medium.
然后在该培养基配方的基础上进行摇瓶分批补料发酵试验,确定最佳补料方案。
The fed-batch fermentation method was studied by flask culture based on the optimal medium.
然后在该培养基配方的基础上进行摇瓶分批补料发酵试验,确定最佳补料方案。
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