首页> 外文期刊>FEMS Yeast Research >Physiological and comparative genomic analysis of new isolated yeasts Spathaspora sp. JA1 and Meyerozyma caribbica JA9 reveal insights into xylitol production
【24h】

Physiological and comparative genomic analysis of new isolated yeasts Spathaspora sp. JA1 and Meyerozyma caribbica JA9 reveal insights into xylitol production

机译:新菌酵母SPATHASPORA SP的生理学和比较基因组分析。 JA1和Meyerozyma Caribbica JA9揭示了思想洞中的木糖醇生产

获取原文
获取原文并翻译 | 示例
           

摘要

Xylitol is a five-carbon polyol of economic interest that can be produced by microbial xylose reduction from renewable resources. The current study sought to investigate the potential of two yeast strains, isolated from Brazilian Cerrado biome, in the production of xylitol as well as the genomic characteristics that may impact this process. Xylose conversion capacity by the new isolates Spathaspora sp. JA1 and Meyerozyma caribbica JA9 was evaluated and compared with control strains on xylose and sugarcane biomass hydrolysate. Among the evaluated strains, Spathaspora sp. JA1 was the strongest xylitol producer, reaching product yield and productivity as high as 0.74 g/g and 0.20 g/(L.h) on xylose, and 0.58 g/g and 0.44 g/(L.h) on non-detoxified hydrolysate. Genome sequences of Spathaspora sp. JA1 and M. caribbica JA9 were obtained and annotated. Comparative genomic analysis revealed that the predicted xylose metabolic pathway is conserved among the xylitol-producing yeasts Spathaspora sp. JA1, M. caribbica JA9 and Meyerozyma guilliermondii, but not in Spathaspora passalidarum, an efficient ethanol-producing yeast. Xylitol-producing yeasts showed strictly NADPH-dependent xylose reductase and NAD+-dependent xylitol-dehydrogenase activities. This imbalance of cofactors favors the high xylitol yield shown by Spathaspora sp. JA1, which is similar to the most efficient xylitol producers described so far.
机译:木糖醇是一种经济兴趣的五碳多元醇,可以通过可再生资源的微生物木糖减少来生产。目前的研究旨在探讨两种酵母菌株的潜力,从巴西的Cerrado生物群系中分离,在西瓜醇的生产中以及可能影响该过程的基因组特征。木糖转换能力通过新分离株Spathaspora Sp。评估JA1和Meyerozyma Caribbica JA9并与木糖和甘蔗生物质水解产物的对照菌株进行比较。在评估的菌株中,spathaspora sp。 JA1是最强的木糖醇生产者,在木糖上达到0.74g / g和0.20g /(L.H)的产品产率和生产率,在非解毒水解产物上0.58g / g和0.44g /(l.h)。 spathaspora sp的基因组序列。获得JA1和M. Caribbica JA9并注释。比较基因组分析表明,预测的木糖代谢途径在西瓜醇的酵母孢子菌SP中保守。 JA1,M. Caribbica Ja9和Meyerozyma Guilliermondii,但不是在Spathaspora Passalidarum,一种有效的乙醇生产酵母。产生木糖醇的酵母,显示出严格的NADPH依赖性木糖还原酶和NAD +依赖性木糖醇 - 脱氢酶活性。 Cofactors的这种不平衡有利于Spathaspora Sp所示的高Xylitol产量。 JA1,类似于到目前为止描述的最有效的木糖醇生产商。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号