Gao Mingbo, Zhang Wei, Yu Xingju
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, China.
Sheng Wu Gong Cheng Xue Bao. 2010 Feb;26(2):223-9.
A bioprocess intensification strategy that combines both elicitation and in situ absorption was developed to improve the production of taxuyunnanine c (Tc) in cell suspension cultures of Taxus chinensis. When 100 micromol/L methyl jasmonate was added as an elicitor on Day 7, the Tc content and yield increased 3.6 and 3.3 times respectively, however the cell growth was reduced by 10%-30%. Significant improvement in Tc yield was observed when an absorbent XAD-7 was added on different time of the culture period. The optimum Tc yield was achieved when 100 g/L XAD-7 was added simultaneously with 100 micromol/L methyl jasmonate on Day 7. The maximum Tc yield of 477.4 mg/L was obtained on Day 21 of the culture, being 6.3-fold of the control and 1.9-fold of the 100 micromol/L methyl jasmonate treatment alone. In the combined treatment, 94% of the Tc produced was secreted outside of the cells and absorbed on XAD-7 absorbents. The results demonstrated that the process strategy combining elicitation and in situ absorption was effective to intensify the Tc biosynthesis via elicitation with the removal of product feedback inhibition via absorption, presenting a great potential in commercial applications.
为提高中国红豆杉细胞悬浮培养中紫杉醇C(Tc)的产量,开发了一种结合诱导和原位吸收的生物过程强化策略。当在第7天添加100微摩尔/升茉莉酸甲酯作为诱导剂时,Tc含量和产量分别增加了3.6倍和3.3倍,然而细胞生长减少了10%-30%。在培养期的不同时间添加吸附剂XAD-7时,观察到Tc产量有显著提高。当在第7天同时添加100克/升XAD-7和100微摩尔/升茉莉酸甲酯时,获得了最佳的Tc产量。在培养的第21天获得了最大Tc产量477.4毫克/升,是对照的6.3倍,是单独100微摩尔/升茉莉酸甲酯处理的1.9倍。在联合处理中,产生的Tc中有94%分泌到细胞外并被XAD-7吸附剂吸收。结果表明,结合诱导和原位吸收的过程策略通过诱导有效强化了Tc生物合成,并通过吸收消除了产物反馈抑制,在商业应用中具有巨大潜力。