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从淡水河流中采集的河豚(Tetraodon cutcutia)是霍乱弧菌 PS-4 蔗糖非发酵变体的中间宿主。

Pufferfish (Tetraodon cutcutia) Sampled from a Freshwater River Serves as an Intermediate Reservoir of a Sucrose Nonfermenting Variant of Vibrio cholerae PS-4.

机构信息

Department of Biotechnology, Institute of Life Sciencesgrid.418782.0, Nalco Square, Bhubaneswar, India.

Regional Center of Biotechnology, NCR Biotech Science Cluster, Faridabad, India.

出版信息

Microbiol Spectr. 2022 Feb 23;10(1):e0122121. doi: 10.1128/spectrum.01221-21. Epub 2022 Feb 16.

Abstract

We describe the genomic characteristics of Vibrio cholerae strain PS-4 that is unable to ferment sucrose on a thiosulfate citrate bile salt sucrose (TCBS) agar medium. This bacterium was isolated from the skin mucus of a freshwater pufferfish. The genome of strain PS-4 was sequenced to understand the sucrose nonfermenting phenotype. The gene encoding the sucrose-specific phosphotransferase system IIB (sucR) was absent, resulting in the defective sucrose fermenting phenotype. In contrast, genes encoding the glucose-specific transport system IIB (ptsG) and fructose-specific transport system IIB (fruA) showed acid production while growing with respective sugars. The overall genome relatedness indices (OGRI), such as DNA-DNA hybridization (DDH), average nucleotide identity (ANI), and average amino acid identity (AAI), were above the threshold value, that is, 70% and 95 to 96%, respectively. Phylogenomic analysis based on genome-wide core genes and the nonrecombinant core genes showed that strain PS-4 clustered with Vibrio cholerae ATCC 14035. Further, genes encoding cholera toxin (), zonula occludens toxin (), accessory cholera enterotoxin (), toxin-coregulated pilus (), and lipopolysaccharide biosynthesis () were absent. PS-4 showed hemolytic activity and reacted strongly to the R antibody. Therefore, the Vibrio cholerae from the pufferfish adds a new ecological niche of this bacterium. Vibrio cholerae is native of aquatic environments. In general, V. cholerae ferments sucrose on thiosulfate citrate bile salt sucrose (TCBS) agar and produces yellow colonies. V. cholerae strain PS-4 described in this study is a sucrose nonfermenting variant associated with pufferfish skin and does not produce yellow colonies on TCBS agar. Genes encoding sucrose-specific phosphotransferase system IIB (sucR) were absent. The observed phenotype in the distinct metabolic pathway indicates niche-specific adaptive evolution for this bacterium. Our study suggests that the nonfermenting phenotype of V. cholerae strains on TCBS agar may not always be considered for species delineation.

摘要

我们描述了一株无法在硫代硫酸盐柠檬酸盐胆盐蔗糖(TCBS)琼脂培养基上发酵蔗糖的霍乱弧菌 PS-4 菌株的基因组特征。该细菌是从淡水河豚鱼的皮肤黏液中分离出来的。为了了解蔗糖不发酵表型,我们对 PS-4 菌株的基因组进行了测序。编码蔗糖特异性磷酸转移酶系统 IIB(sucR)的基因缺失,导致蔗糖发酵表型缺陷。相比之下,编码葡萄糖特异性转运系统 IIB(ptsG)和果糖特异性转运系统 IIB(fruA)的基因在分别用相应的糖生长时显示出产酸现象。全基因组相关指数(OGRI),如 DNA-DNA 杂交(DDH)、平均核苷酸同一性(ANI)和平均氨基酸同一性(AAI),均高于阈值,分别为 70%和 95%至 96%。基于全基因组核心基因和非重组核心基因的系统基因组分析表明,PS-4 菌株与霍乱弧菌 ATCC 14035 聚类。此外,编码霍乱毒素()、紧密连接毒素()、辅助霍乱肠毒素()、毒素调节菌毛()和脂多糖生物合成()的基因缺失。PS-4 表现出溶血活性,并与 R 抗体强烈反应。因此,来自河豚鱼的霍乱弧菌增加了这种细菌的一个新的生态位。霍乱弧菌原产于水生环境。一般来说,霍乱弧菌在硫代硫酸盐柠檬酸盐胆盐蔗糖(TCBS)琼脂上发酵蔗糖,产生黄色菌落。本研究中描述的霍乱弧菌 PS-4 菌株是一种与河豚鱼皮肤相关的蔗糖非发酵变体,在 TCBS 琼脂上不产生黄色菌落。编码蔗糖特异性磷酸转移酶系统 IIB(sucR)的基因缺失。在不同代谢途径中观察到的表型表明该细菌发生了特定于生态位的适应性进化。我们的研究表明,TCBS 琼脂上霍乱弧菌菌株的非发酵表型并不总是可用于种的划分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa19/8849079/d986eb5f1a32/spectrum.01221-21-f001.jpg

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