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四氢嗜热球菌的核糖醇含量细胞壁磷壁酸是噬菌体 phiWJ7 的结合受体。

Ribitol-Containing Wall Teichoic Acid of Tetragenococcus halophilus Is Targeted by Bacteriophage phiWJ7 as a Binding Receptor.

机构信息

Manufacturing Division, Yamasa Corporation, Choshi, Japan.

NODAI Genome Research Center, Tokyo University of Agriculturegrid.410772.7, Tokyo, Japan.

出版信息

Microbiol Spectr. 2022 Apr 27;10(2):e0033622. doi: 10.1128/spectrum.00336-22. Epub 2022 Mar 21.

Abstract

Tetragenococcus halophilus, a halophilic lactic acid bacterium, is used in the fermentation process of soy sauce manufacturing. For many years, bacteriophage infections of have been a major industrial problem that causes fermentation failure. However, studies focusing on the mechanisms of tetragenococcal host-phage interactions are not sufficient. In this study, we generated two phage-insensitive derivatives from the parental strain WJ7, which is susceptible to the virulent phage phiWJ7. Whole-genome sequencing of the derivatives revealed that insertion sequences were transposed into a gene encoding poly(ribitol phosphate) polymerase (TarL) in both derivatives. TarL is responsible for the biosynthesis of ribitol-containing wall teichoic acid, and WJ7 was confirmed to contain ribitol in extracted wall teichoic acid, but the derivative was not. Cell walls of WJ7 irreversibly adsorbed phiWJ7, but those of the phage-insensitive derivatives did not. Additionally, 25 phiWJ7-insensitive derivatives were obtained, and they showed mutations not only in but also in and , which are responsible for the synthesis of CDP-ribitol. These results indicate that phiWJ7 targets the ribitol-containing wall teichoic acid of host cells as a binding receptor. Information about the mechanisms of host-phage interactions is required for the development of efficient strategies against bacteriophage infections. Here, we identified the ribitol-containing wall teichoic acid as a host receptor indispensable for bacteriophage infection. The complete genome sequence of tetragenococcal phage phiWJ7 belonging to the family is also provided here. This study could become the foundation for a better understanding of host-phage interactions of tetragenococci.

摘要

适盐乳酸杆菌是一种嗜盐乳酸菌,用于酱油酿造的发酵过程。多年来,噬菌体感染一直是导致发酵失败的主要工业问题。然而,针对四球菌宿主-噬菌体相互作用机制的研究还不够充分。在这项研究中,我们从对毒性噬菌体 phiWJ7 敏感的亲本菌株 WJ7 中生成了两个噬菌体不敏感的衍生物。两个衍生物的全基因组测序显示,插入序列转位到编码聚(核糖醇磷酸盐)聚合酶(TarL)的基因中。TarL 负责合成含有核糖醇的壁磷壁酸,WJ7 被证实含有提取的壁磷壁酸中的核糖醇,但衍生物中没有。WJ7 的细胞壁不可逆地吸附 phiWJ7,但噬菌体不敏感衍生物的细胞壁没有。此外,获得了 25 个对 phiWJ7 不敏感的衍生物,它们不仅在 中,而且在 和 中都显示出突变,这两个基因负责 CDP-核糖醇的合成。这些结果表明,phiWJ7 将含有核糖醇的细胞壁磷壁酸作为宿主细胞的结合受体。了解宿主-噬菌体相互作用的机制对于开发有效的噬菌体感染防治策略是必要的。在这里,我们确定了含有核糖醇的细胞壁磷壁酸是噬菌体感染所必需的宿主受体。还提供了属于科的四球菌噬菌体 phiWJ7 的完整基因组序列。这项研究可以为更好地理解四球菌的宿主-噬菌体相互作用奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba36/9045211/7525ae6efa35/spectrum.00336-22-f001.jpg

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