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Fermentation Behavior of an Osmotolerant Yeast D. hansenii for Xylitol Production

机译:耐渗透性酵母汉逊木糖醇生产的发酵行为

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摘要

Realizing the importance of xylitol as a high-valued compound that serves as a sugar substitute, a new, one step thin layer chromatographic procedure for quick, reliable, and efficient determination of xylose and xylitol from their mixture was developed. Two hundred and twenty microorganisms from the laboratory stock cultures were screened for their ability to produce xylitol from D-xylose. Amongst these, an indigenous yeast isolate no.139 (SM-139) was selected and identified as Debaryomyces hansenii on the basis of morphological and biochemical characteristics and (26S) D1ID2 r DNA region sequencing. Debaryomyces hansenii produced 9.33 gL~(-1) of xylitol in presence of 50.0 gL~ of xylose in 84 h at pH 5.5, 30°C, 200 rpm. In order to utilize even higher concentrations of xylose for maximum xylitol production, a xylose enrichment technique was developed. The strain of Debaryomyces hansenii was obtained through xylose enrichment technique in a statistically optimized medium containing 0.3% yeast extract, 0.2% peptone, 0.03% MgSO4.7H2O along with 1% methanol. The culture was inoculated with 6% inoculum and incubated at 30°C and 250 rpm. A yield of 0.6 gg~(-1) was obtained with a xylitol volumetric productivity of 0.65 g/L h~(-1) in the presence of 200 gL~(-1) of xylose although up to 300 gL~(-1) of xylose could be tolerated through batch fermentation. Through this technique, even higher concentrations of xylose as substrate could be potentially utilized for maximum xylitol production.
机译:意识到木糖醇作为糖替代品的高价值化合物的重要性,开发了一种新的一步式薄层色谱程序,用于从其混合物中快速,可靠和有效地测定木糖和木糖醇。筛选了来自实验室培养物的220种微生物从D-木糖生产木糖醇的能力。其中,根据形态和生化特征以及(26S)D1ID2 r DNA区域测序,选择了一种本地酵母分离株No.139(SM-139),并将其鉴定为汉逊德巴利酵母。在pH 5.5、30℃,200 rpm下84小时内,在50.0 gL-木糖的存在下,汉逊德巴利酵母产生9.33 gL(-1)的木糖醇。为了利用甚至更高浓度的木糖以最大程度地生产木糖醇,开发了木糖富集技术。通过木糖富集技术,在统计优化的培养基中获得汉森德巴利酵母的菌株,所述培养基包含0.3%的酵母提取物,0.2%的蛋白one,0.03%的MgSO4·7H2O以及1%的甲醇。用6%的接种物接种培养物,并在30°C和250 rpm下孵育。在存在200 gL〜(-1)木糖的情况下,木糖醇的体积产率为0.65 g / L h〜(-1),木糖醇的产量为0.6 gg〜(-1),尽管最高可达300 gL〜(-1)通过分批发酵可以耐受木糖)。通过这种技术,甚至可以使用更高浓度的木糖作为底物来最大程度地生产木糖醇。

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