首页> 外文期刊>Applied Microbiology >Sequence Analysis of Leuconostoc mesenteroides Bacteriophage Φ1-A4 Isolated from an Industrial Vegetable Fermentation
【24h】

Sequence Analysis of Leuconostoc mesenteroides Bacteriophage Φ1-A4 Isolated from an Industrial Vegetable Fermentation

机译:从工业蔬菜发酵中分离出的肠膜丙酸杆菌噬菌体Φ1-A4的序列分析

获取原文
       

摘要

Vegetable fermentations rely on the proper succession of a variety of lactic acid bacteria (LAB). Leuconostoc mesenteroides initiates fermentation. As fermentation proceeds, L. mesenteroides dies off and other LAB complete the fermentation. Phages infecting L. mesenteroides may significantly influence the die-off of L. mesenteroides . However, no L. mesenteroides phages have been previously genetically characterized. Knowledge of more phage genome sequences may provide new insights into phage genomics, phage evolution, and phage-host interactions. We have determined the complete genome sequence of L. mesenteroides phage Φ1-A4, isolated from an industrial sauerkraut fermentation. The phage possesses a linear, double-stranded DNA genome consisting of 29,508 bp with a G+C content of 36%. Fifty open reading frames (ORFs) were predicted. Putative functions were assigned to 26 ORFs (52%), including 5 ORFs of structural proteins. The phage genome was modularly organized, containing DNA replication, DNA-packaging, head and tail morphogenesis, cell lysis, and DNA regulation/modification modules. In silico analyses showed that Φ1-A4 is a unique lytic phage with a large-scale genome inversion (~30% of the genome). The genome inversion encompassed the lysis module, part of the structural protein module, and a cos site. The endolysin gene was flanked by two holin genes. The tail morphogenesis module was interspersed with cell lysis genes and other genes with unknown functions. The predicted amino acid sequences of the phage proteins showed little similarity to other phages, but functional analyses showed that Φ1-A4 clusters with several Lactococcus phages. To our knowledge, Φ1-A4 is the first genetically characterized L. mesenteroides phage.
机译:蔬菜发酵依赖于各种乳酸菌(LAB)的适当继承。肠膜明串珠菌启动发酵。随着发酵的进行,中肠艾美球虫死亡,其他LAB完成发酵。感染猪肠球菌的噬菌体可能会严重影响猪肠球菌的死亡。但是,尚没有以前的遗传方法鉴定肠膜乳杆菌的噬菌体。对更多噬菌体基因组序列的了解可能为噬菌体基因组学,噬菌体进化和噬菌体-宿主相互作用提供新的见解。我们已经确定了从工业酸菜发酵中分离出的猪肠杆菌L. mesenteroides噬菌体Φ1-A4的完整基因组序列。该噬菌体具有线性,双链DNA基因组,其由29,508 bp组成,G + C含量为36%。预测了五十个开放阅读框(ORF)。推定的功能分配给26个ORF(占52%),包括5个ORF结构蛋白。噬菌体基因组是模块化组织的,包含DNA复制,DNA包装,头部和尾部形态发生,细胞裂解以及DNA调节/修饰模块。电脑分析表明,Φ1-A4是独特的裂解噬菌体,具有大规模的基因组倒置(约占基因组的30%)。基因组反转包含裂解模块,结构蛋白模块的一部分和一个cos位点。内溶素基因的侧翼是两个holin基因。尾部形态发生模块散布着细胞裂解基因和其他功能未知的基因。噬菌体蛋白的预测氨基酸序列与其他噬菌体几乎没有相似性,但是功能分析表明,Φ1-A4与几个乳球菌噬菌体成簇。据我们所知,Φ1-A4是第一个具有遗传特征的肠系膜劳森氏菌噬菌体。

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