...
首页> 外文期刊>Systematic and Applied Microbiology >Isolation and characterization of fructophilic lactic acid bacteria from fructose-rich niches.
【24h】

Isolation and characterization of fructophilic lactic acid bacteria from fructose-rich niches.

机译:从富含果糖的壁ni中分离和鉴定果糖乳酸菌。

获取原文
获取原文并翻译 | 示例
           

摘要

Fourteen strains of fructophilic lactic acid bacteria were isolated from fructose-rich niches, flowers, and fruits. Phylogenetic analysis and BLAST analysis of 16S rDNA sequences identified six strains as Lactobacillus kunkeei, four as Fructobacillus pseudoficulneus, and one as Fructobacillus fructosus. The remaining three strains grouped within the Lactobacillus buchneri phylogenetic subcluster, but shared low sequence similarities to other known Lactobacillus spp. The fructophilic strains fermented only a few carbohydrates and fermented D-fructose faster than D-glucose. Based on the growth characteristics, the 14 isolates were divided into two groups. Strains in the first group containing L. kunkeei, F. fructosus, and F. pseudoficulneus grew well on D-fructose and on D-glucose with pyruvate or oxygen as external electron acceptors, but poorly on D-glucose without the electron acceptors. Strains in this group were classified as 'obligately' fructophilic lactic acid bacteria. The second group contained three unidentified strains of Lactobacillus that grew well on D-fructose and on D-glucose with the electron acceptors. These strains grew on D-glucose without the electron acceptors, but at a delayed rate. Strains in this group were classified as facultatively fructophilic lactic acid bacteria. All fructophilic isolates were heterofermentative lactic acid bacteria, but 'obligately' fructophilic lactic acid bacteria mainly produced lactic acid and acetic acid and very little ethanol from D-glucose. Facultatively fructophilic strains produced lactic acid, acetic acid and ethanol, but at a ratio different from that recorded for heterofermentative lactic acid bacteria. These unique characteristics may have been obtained through adaptation to the habitat. All rights reserved, Elsevier.
机译:从富含果糖的壁ni,花朵和果实中分离出十四种果糖乳酸菌。对16S rDNA序列进行系统进化分析和BLAST分析,鉴定出6株为昆克乳杆菌,4株为假纤维杆菌,1株为果糖。其余三个菌株在布氏乳杆菌系统发生亚簇内分组,但与其他已知的乳杆菌属具有较低的序列相似性。果糖菌株仅发酵一些碳水化合物,并且发酵D-果糖的速度比D-葡萄糖快。根据生长特征,将14株分离株分为两组。第一组中含有昆克乳酸杆菌,果糖镰刀菌和假纤维镰刀菌的菌株在D-果糖和带有丙酮酸或氧作为外部电子受体的D-葡萄糖上生长良好,但在没有电子受体的D-葡萄糖上生长较差。该组中的菌株被分类为“专性”果糖乳酸菌。第二组包含三个未鉴定的乳杆菌菌株,它们在D-果糖和带有电子受体的D-葡萄糖上生长良好。这些菌株在没有电子受体的情况下在D-葡萄糖上生长,但是速度较慢。该组中的菌株被分类为兼性果糖乳酸菌。所有果糖分离物均为异发酵乳酸菌,但“专心”果糖乳酸菌主要从D-葡萄糖中产生乳酸和乙酸,很少产生乙醇。兼性果糖菌株产生乳酸,乙酸和乙醇,但比率不同于异发酵乳酸菌记录的比率。这些独特的特征可能是通过适应栖息地而获得的。保留所有权利,Elsevier。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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