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首页> 外文期刊>International Journal of Food Microbiology >Genetic analysis of the plantaricin EFI locus of Lactobacillus plantarum PCS20 reveals an unusual plantaricin E gene sequence as a result of mutation.
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Genetic analysis of the plantaricin EFI locus of Lactobacillus plantarum PCS20 reveals an unusual plantaricin E gene sequence as a result of mutation.

机译:对植物乳杆菌PCS20的plant菌素EFI基因座进行的遗传分析显示,由于突变,mutation菌素E基因序列异常。

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摘要

Lactobacillus plantarum strains produce a variety of chromosomally encoded bacteriocins and often multiple bacteriocins are encoded by a single strain. In this study, the genetic loci for bacteriocin production of L. plantarum strains BFE 5092 and PCS20 were studied. These strains were investigated for their possible application as protective cultures in food preservation. The bacteriocin locus of strain BFE 5092 showed remarkable similarity to the plantaricin loci previously described for L. plantarum strains C11 and WCFS1. However, the locus of the L. plantarum PCS20 strain was unusual in that it showed an interesting mutation as a result of deletions within the plnE gene. These deletions led to a hypothetically produced peptide which is 2 amino acids shorter than plantaricin E. Furthermore, it differs by 24 amino acids, while it shares 30 identical amino acids i.e., 15 at the amino end and 15 at the carboxyl end of the hypothetical peptide. As a consequence, the amino acid sequence is changed such that a double-glycine-type leader peptide would not be encoded. This raises the question whether a functional peptide is being produced, even though RT-PCR studies showed that the plnE gene is obviously expressed. Furthermore, a transposase gene was located upstream of the plnEFI gene cluster and was inserted into a bacteriocin regulatory gene, the histidine protein kinase gene. Taken together, these facts indicate a loss of plantaricin gene function in L. plantarum PCS20 as a result of transposition and mutation.
机译:植物乳杆菌菌株产生多种染色体编码的细菌素,并且单个菌株通常编码多种细菌素。在这项研究中,研究了产乳杆菌菌株BFE 5092和PCS20细菌素生产的遗传基因座。研究了这些菌株在食品保鲜中作为保护性培养物的可能应用。 BFE 5092菌株的细菌素基因座显示出与先前针对植物乳杆菌C11和WCFS1所述的植物霉素基因座非常相似。然而,植物乳杆菌PCS20菌株的基因座是不寻常的,因为其由于plnE基因内的缺失而显示出有趣的突变。这些缺失导致了一个假想产生的肽,该肽比plant藤素E短2个氨基酸。此外,它相差24个氨基酸,而它共有30个相同的氨基酸,即假设的氨基末端为15个,羧基末端为15个肽。结果,改变了氨基酸序列,使得不会编码双甘氨酸型前导肽。即使RT-PCR研究表明明显表达了plnE基因,这也引发了一个问题,即是否正在产生功能性肽。此外,转座酶基因位于plnEFI基因簇的上游,并插入细菌素调节基因,即组氨酸蛋白激酶基因中。综上所述,这些事实表明,由于转座和突变,植物乳杆菌PCS20中的植物霉素基因功能丧失。

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