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首页> 外文期刊>Biotechnology Progress >Reduced Formation of Byproduct Component C in Acarbose Fermentation by Actinoplanes sp.CKD485-16
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Reduced Formation of Byproduct Component C in Acarbose Fermentation by Actinoplanes sp.CKD485-16

机译:放线猕猴桃sp.CKD485-16减少阿卡波糖发酵过程中副产物C的形成

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摘要

Acarbose fermentation was conducted by cultivation of Actinoplanes sp.CKD485-16.Approximately 2,300 mg/L of acarbose was produced at the end of cultivation along with 600 mg/L of the acarbose byproduct component C.Maltose,a know moiety of acarbose,should be maintained at high concentration levels in culture broths for efficient acarbose production.The acarbose yield increased with an increasing osmolality of the culture medium,with a maximum value of 3,200 mg/L obtained at 500 mOsm/kg.Component C was also produced in proportion ot the osmolality.Conversion of acarbose to component C was accomplished with resting whole cells.Inhibitors of the conversion of acarbose to compoennt C were sought since component C is probably derived from acarbose.Valienamine was found to be a potent inhibitor,reslting in a more than 90% reduction in component C formation at a 10 muM concentration.Effects were similar in a 1,500-L pilot fermentor with acarbose and component C yields of 3,490 and 43 mg/L at 500 mOsm/kg,respectively.
机译:阿卡波糖发酵是通过放线放线菌sp.CKD485-16的培养进行的。在培养结束时产生了约2,300 mg / L的阿卡波糖以及600 mg / L的阿卡波糖副产物组分C.在培养液中保持高浓度水平以有效生产阿卡波糖。阿卡波糖产量随培养基渗透压的增加而增加,在500 mOsm / kg下的最大值为3200 mg / L。也按比例生产组分C阿卡波糖向C成分的转化是通过静息的全细胞完成的,因此寻求了将阿卡波糖转化为C成分的抑制剂,因为C成分可能源自阿卡波糖。缬草胺被发现是一种有效的抑制剂,具有更强的渗透性。浓度为10μM时组分C的形成减少了90%。在阿卡波糖1,500-L的中试发酵罐中,效果相似,在5和5时组分C的产量为3,490和43 mg / L分别为00 mOsm / kg。

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