Nutaratat Pumin, Amsri Weerawan, Srisuk Nantana, Arunrattiyakorn Panarat, Limtong Savitree
Department of Microbiology, Faculty of Science, Kasetsart University.
J Gen Appl Microbiol. 2015;61(1):1-9. doi: 10.2323/jgam.61.1.
Indole 3-acetic acid (IAA) is the principal hormone which regulates various developmental and physiological processes in plants. IAA production is considered as a key trait for supporting plant growth. Hence, in this study, production of indole-3-acetic acid (IAA) by a basidiomycetous red yeast Rhodosporidium paludigenum DMKU-RP301 (AB920314) was investigated and improved by the optimization of the culture medium and culture conditions using one factor at a time (OFAT) and response surface methodology (RSM). The study considered the effects of incubation time, carbon and nitrogen sources, growth factor, tryptophan, temperature, shaking speed, NaCl and pH, on the production of IAA. The results showed that all the factors studied, except NaCl, affected IAA production by R. paludigenum DMKU-RP301. Maximum IAA production of 1,623.9 mg/l was obtained as a result of the studies using RSM. The optimal medium and growth conditions observed in this study resulted in an increase of IAA production by a factor of up to 5.0 compared to the unoptimized condition, i.e. when yeast extract peptone dextrose (YPD) broth supplemented with 0.1% l-tryptophan was used as the production medium. The production of IAA was then scaled up in a 2-l stirred tank fermenter, and the maximum IAA of 1,627.1 mg/l was obtained. This experiment indicated that the obtained optimal medium and condition (pH and temperature) from shaking flask production can be used for the production of IAA in a larger size production. In addition, the present research is the first to report on the optimization of IAA production by the yeast Rhodosporidium.
吲哚-3-乙酸(IAA)是调节植物各种发育和生理过程的主要激素。IAA的产生被认为是支持植物生长的关键特性。因此,在本研究中,对担子菌红酵母沼泽红冬孢酵母DMKU-RP301(AB920314)产生吲哚-3-乙酸(IAA)的情况进行了研究,并通过一次一个因素(OFAT)和响应面法(RSM)对培养基和培养条件进行优化来提高其产量。该研究考察了培养时间、碳源和氮源、生长因子、色氨酸、温度、摇床转速、NaCl和pH对IAA产生的影响。结果表明,除NaCl外,所研究的所有因素均影响沼泽红冬孢酵母DMKU-RP301产生IAA。使用RSM进行研究的结果是获得了最高1623.9mg/L的IAA产量。与未优化的条件相比,即使用添加0.1%L-色氨酸的酵母提取物蛋白胨葡萄糖(YPD)肉汤作为生产培养基时,本研究中观察到的最佳培养基和生长条件使IAA产量提高了高达5.0倍。然后在2L搅拌罐发酵罐中扩大IAA的生产规模,获得了最高1627.1mg/L的IAA产量。该实验表明,从摇瓶生产中获得的最佳培养基和条件(pH和温度)可用于更大规模的IAA生产。此外,本研究首次报道了对红冬孢酵母产生IAA的优化。