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首页> 外文期刊>Annals of microbiology >Xylan-hydrolyzing thermotolerant Candida tropicalis HNMA-1 for bioethanol production from sugarcane bagasse hydrolysate
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Xylan-hydrolyzing thermotolerant Candida tropicalis HNMA-1 for bioethanol production from sugarcane bagasse hydrolysate

机译:木聚糖水解耐热假丝酵母HNMA-1,用于由甘蔗渣水解产物生产生物乙醇

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Sugarcane bagasse is one of the low-cost substrates used for bioethanol production. In order to solubilize sugars in hemicelluloses like xylan, a new thermotolerant isolate of Candida tropicalis HNMA-1 with xylan-hydrolyzing ability was identified and characterized. The strain showed relative tolerance to high temperature. Our results demonstrated 0.211?IU ml?1 xylanase activity at 40?°C compared to 0.236?IU ml?1 at 30?°C. The effect of high temperature on the growth and fermentation of xylose and sugarcane bagasse hydrolysate were also investigated. In both xylose or hydrolysate medium, increased growth was recorded at 40?°C. Meanwhile, the efficiency of ethanol fermentation was adversely affected by temperature since yields of 0.088?g g?1 and 0.076?g g?1 in the xylose medium, in addition to 0.090?g g?1 and 0.078?g g?1 in the hydrolysate medium were noticed at 30?°C and 40?°C, respectively. Inhibitory compounds in the hydrolysate medium demonstrated negative effects on fermentation and productivity, with maximum ethanol concentration attained after 48?h in the hydrolysate, as opposed to 24?h in the xylose medium. Our data show that the newly thermotolerant isolate, C. tropicalis HNMA-1, is able to efficiently ferment xylose and hydrolysate, and also has the capacity for application in ethanol production from hemicellulosic sources.
机译:甘蔗渣是用于生产生物乙醇的低成本底物之一。为了使诸如木聚糖的半纤维素中的糖溶解,鉴定并表征了具有木聚糖水解能力的热带假丝酵母HNMA-1的新耐热分离物。该菌株显示出对高温的相对耐受性。我们的结果表明在40℃下0.211?IU ml?1木聚糖酶的活性与在30℃下0.236?IU ml?1的木聚糖酶活性相比。还研究了高温对木糖和甘蔗渣水解物的生长和发酵的影响。在木糖或水解产物培养基中,在40°C下记录到生长增加。同时,乙醇发酵的效率受到温度的不利影响,因为在木糖培养基中的收率分别为0.088→gg→1和0.076→gg→1,此外在水解产物培养基中的产量为0.090→gg→1和0.078→gg→1。分别在30°C和40°C下观察到。水解产物培养基中的抑制性化合物显示出对发酵和​​生产率的负面影响,水解产物在48小时后达到最大乙醇浓度,而木糖培养基中则达到24小时。我们的数据表明,新的耐热菌株C.tropicis HNMA-1能够有效发酵木糖和水解产物,还具有从半纤维素来源生产乙醇的应用能力。

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