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Kinetics and Mechanism Analysis on Microbial Oil Production by Trichosporon fermentans in Rice Straw Hydrolysate

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논문

Kinetics and Mechanism Analysis on Microbial Oil Production by Trichosporon fermentans in Rice Straw Hydrolysate

학술지

Industrial & engineering chemistry research

저자명

Huang, Chao; Li, Yuan-yuan; Liu, Li-ping; Wu, Hong; Zong, Min-hua; Lou, Wen-yong

초록

<P>To give an insight into the kinetics of microbial oil fermentation with lignocellulosic hydrolysate as substrate, lipid production by <I>Trichosporon fermentans</I> in rice straw hydrolysate was investigated in a 5 L fermentor. For comparison, fermentation in its simulated medium was also performed to evaluate the effect of inhibitors present in the rice straw hydrolysate on the cell growth and lipid accumulation of <I>T. fermentans</I>. The optimum fermentation time, maximum biomass, and lipid content of <I>T. fermentans</I> in the rice straw hydrolysate were 10.5 days, 28.6 g/L, and 43.9%, respectively, while the corresponding values in the simulated medium were 8.5 days, 27.0 g/L, and 65.0%, respectively, indicating that the inhibitors in the rice straw hydrolysate did show some inhibition on the cell growth and lipid accumulation of <I>T. fermentans</I>. Kinetic models of lipid fermentation with <I>T. fermentans</I> showed the maximum specific growth rate and the correlation coefficient of lipid synthesis to cell growth in the rice straw hydrolysate were 0.40 and 0.51, respectively, which are much lower than those in the simulated medium (0.58 and 0.73). To better understand the influential mechanism of inhibitors in the rice straw hydrolysate on the growth and lipid accumulation of <I>T. fermentans</I>, the physiological and biochemical changes of cells in the fermentation were further investigated. The reduced activities of adenosine triphosphate (ATP) citrate lyase, malic enzyme, and xylose reductase, and the elongation of cells at the beginning of fermentation, partly account for the inhibitory effect of inhibitors in the rice straw hydrolysate.</P><P><A href='http://pubs.acs.org/doi/suppl/10.1021/ie502185u'>ACS Electronic Supporting Info</A></P>

발행연도

2014

발행기관

American Chemical Society

ISSN

0888-5885

ISSN

1520-5045

53

49

페이지

pp.19034-19043

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논문; 2014-12-31

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