Xylan-hydrolyzing thermotolerant Candida tropicalis HNMA-1 for bioethanol production from sugarcane bagasse hydrolysate

被引:0
|
作者
Hoda Nouri
Mehrdad Azin
Mir Latif Mousavi
机构
[1] Shahed University,Department of Biology, Faculty of Science
[2] Iranian Research Organization for Science and Technology,Department of Biotechnology
来源
Annals of Microbiology | 2017年 / 67卷
关键词
Bioethanol; Sugarcane bagasse hydrolysate; Thermotolerant; Xylan;
D O I
暂无
中图分类号
学科分类号
摘要
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.
引用
收藏
页码:633 / 641
页数:8
相关论文
共 34 条
  • [1] Xylan-hydrolyzing thermotolerant Candida tropicalis HNMA-1 for bioethanol production from sugarcane bagasse hydrolysate
    Nouri, Hoda
    Azin, Mehrdad
    Mousavi, Mir Latif
    ANNALS OF MICROBIOLOGY, 2017, 67 (09) : 633 - 641
  • [2] Xylitol Production by Candida tropicalis 31949 from Sugarcane Bagasse Hydrolysate
    Xu, Linlin
    Liu, Lei
    Li, Sijia
    Zheng, Wenjing
    Cui, Yuanyuan
    Liu, Rong
    Sun, Weidong
    SUGAR TECH, 2019, 21 (02) : 341 - 347
  • [3] Xylitol Production by Candida tropicalis 31949 from Sugarcane Bagasse Hydrolysate
    Linlin Xu
    Lei Liu
    Sijia Li
    Wenjing Zheng
    Yuanyuan Cui
    Rong Liu
    Weidong Sun
    Sugar Tech, 2019, 21 : 341 - 347
  • [4] Investigation of the influence of Candida tropicalis on bioethanol production using sugarcane bagasse: stochastic and in silico analysis
    Jeyaram K.
    Murugan D.
    Velmurugan S.
    Prabhu A.A.
    Raja S.
    Bose S.A.
    Balakrishnan D.
    Environmental Science and Pollution Research, 2024, 31 (56) : 64476 - 64492
  • [5] Xylitol production from corn fiber and sugarcane bagasse hydrolysates by Candida tropicalis
    Rao, R. Sreenivas
    Jyothi, Ch. Pavana
    Prakasham, R. S.
    Sarma, P. N.
    Rao, L. Venkateswar
    BIORESOURCE TECHNOLOGY, 2006, 97 (15) : 1974 - 1978
  • [6] Bioethanol Production from Water Hyacinth Hydrolysate by Candida tropicalis Y-26
    Madian, Hekmat R.
    Sidkey, Nagwa M.
    Elsoud, Mostafa M. Abo
    Hamouda, Hamed I.
    Elazzazy, Ahmed M.
    ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING, 2019, 44 (01) : 33 - 41
  • [7] Bioethanol Production from Water Hyacinth Hydrolysate by Candida tropicalis Y-26
    Hekmat R. Madian
    Nagwa M. Sidkey
    Mostafa M. Abo Elsoud
    Hamed I. Hamouda
    Ahmed M. Elazzazy
    Arabian Journal for Science and Engineering, 2019, 44 : 33 - 41
  • [8] Statistical optimization of bioethanol production from giant reed hydrolysate by Candida tropicalis using Taguchi design
    Madian, Hekmat R.
    Hamouda, Hamed I.
    Hosny, Mohamed
    JOURNAL OF BIOTECHNOLOGY, 2022, 360 : 71 - 78
  • [9] Ultrasonic enhancement of xylitol production from sugarcane bagasse using immobilized Candida tropicalis MTCC 184
    Tizazu, Belachew Zegale
    Roy, Kuldeep
    Moholkar, Vijayanand S.
    BIORESOURCE TECHNOLOGY, 2018, 268 : 247 - 258
  • [10] Xylitol Production by Candida tropicalis from Sugarcane Bagasse and Straw: an Adaptive Approach to Improve Fermentative Performance
    Bianchini, Italo de Andrade
    Jofre, Fanny Machado
    Lacerda, Talita Martins
    Felipe, Maria das Gracas de Almeida
    BIOENERGY RESEARCH, 2024, 17 (02) : 1041 - 1054