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首页> 外文期刊>Applied Microbiology >Population Analysis of Vibrio cholerae in Aquatic Reservoirs Reveals a Novel Sister Species (Vibrio paracholerae sp. nov.) with a History of Association with Humans
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Population Analysis of Vibrio cholerae in Aquatic Reservoirs Reveals a Novel Sister Species (Vibrio paracholerae sp. nov.) with a History of Association with Humans

机译:水产水库中霍乱的人口分析揭示了一种新的姐妹物种(vibrio paracholerae sp。11月)与人类联合历史

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摘要

Most efforts to understand the biology of Vibrio cholerae have focused on a single group, the pandemic-generating lineage harboring the strains responsible for all known cholera pandemics. Consequently, little is known about the diversity of this species in its native aquatic environment. To understand the differences in the V. cholerae populations inhabiting regions with a history of cholera cases and those lacking such a history, a comparative analysis of population composition was performed. Little overlap was found in lineage compositions between those in Dhaka, Bangladesh (where cholera is endemic), located in the Ganges Delta, and those in Falmouth, MA (no known history of cholera), a small coastal town on the United States east coast. The most striking difference was the presence of a group of related lineages at high abundance in Dhaka, which was completely absent from Falmouth. Phylogenomic analysis revealed that these lineages form a cluster at the base of the phylogeny for the V. cholerae species and were sufficiently differentiated genetically and phenotypically to form a novel species. A retrospective search revealed that strains from this species have been anecdotally found from around the world and were isolated as early as 1916 from a British soldier in Egypt suffering from choleraic diarrhea. In 1935, Gardner and Venkatraman unofficially referred to a member of this group as Vibrio paracholerae . In recognition of this earlier designation, we propose the name Vibrio paracholerae sp. nov. for this bacterium. Genomic analysis suggests a link with human populations for this novel species and substantial interaction with its better-known sister species.IMPORTANCE Cholera continues to remain a major public health threat around the globe. Understanding the ecology, evolution, and environmental adaptation of the causative agent ( Vibrio cholerae ) and tracking the emergence of novel lineages with pathogenic potential are essential to combat the problem. In this study, we investigated the population dynamics of Vibrio cholerae in an inland locality, which is known as endemic for cholera, and compared them with those of a cholera-free coastal location. We found the consistent presence of the pandemic-generating lineage of V. cholerae in Dhaka, where cholera is endemic, and an exclusive presence of a lineage phylogenetically distinct from other V. cholerae lineages. Our study suggests that this lineage represents a novel species that has pathogenic potential and a human link to its environmental abundance. The possible association with human populations and coexistence and interaction with toxigenic V. cholerae in the natural environment make this potential human pathogen an important subject for future studies.
机译:大多数人努力了解霍乱霍乱的生物学专注于单一组,流行发电机谱系涉及所有已知的霍乱大疱的菌株。因此,对其天然水生环境中该物种的多样性几乎是知之甚少。要了解与霍乱病史和缺乏这种历史的人群的霍乱人口居住地区的差异,进行了对群体组成的比较分析。在德哈拉的统计组合物中发现了一点重叠,孟加拉(霍乱是地方性),位于恒河三角洲,马(霍乱的已知历史),美国东海岸的小沿海城镇。最引人注目的差异是在达卡在达卡的高丰度下存在一组相关谱系,这完全没有法尔茅斯。系统染色组织分析显示,这些谱系在霍乱物种的系统碱基中形成簇,并且在遗传上充分分化并表型以形成新颖的物种。回顾性搜索显示,来自世界各地的这种物种的菌株已经从世界各地发现,并且早在1916年被击中的是1916年,埃及的英国士兵患有霍乱腹泻。 1935年,加德纳和Venkatraman非正式地提到了这个群体的成员,为vibrio paracholerae。在认识到这个早期的指定,我们提出了名称vibrio paracholerae sp。 11月。对于这种细菌。基因组分析表明,与人类人群的联系,这种新颖的物种和与其更好的姐妹物种相互作用.Importance霍乱继续仍然是全球主要的公共卫生威胁。了解致病因子(Vibrio Cholerae)的生态,进化和环境适应,跟踪具有致病潜力的新型谱系的出现对于打击问题至关重要。在这项研究中,我们研究了内陆地区的Vibrio Cholerae的人口动态,称为霍乱的地方性,并将其与无霍乱沿海地区的地方进行比较。我们发现霍及拉在达卡的大流行产生谱系的一致存在,其中霍乱是流行的,并且具有与其他V.霍乱谱系的血管发育的谱系的独占存在。我们的研究表明,这种谱系代表了一种具有致病潜力和与其环境丰富的人类联系的新种。在自然环境中,与人群和共存与毒素的共存和相互作用的可能性,使得这种潜在的人为病原体是未来研究的重要主题。

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