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Emergence, ecology and dispersal of the pandemic generating Vibrio cholerae lineage

机译:大流行性霍乱弧菌谱系的出现,生态和扩散

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Although cholera is an ancient disease that first arose at least half a millennium ago, it remains a major health threat globally. Its pandemic form is caused by strains from a single lineage of the bacterium Vibrio cholerae. The ancestor of this lineage harbored several distinctive characteristics, the most notable being the O1 antigen polysaccharide. This lineage generated two biotypes, first Classical, responsible for six pandemics, and later El Tor, responsible for the seventh and ongoing pandemic. Just as El Tor replaced Classical as the main cause of outbreaks in the last fifty years, several variants of El Tor have evolved and displaced their predecessors worldwide. Understanding the ecology, evolution and dispersal of pandemic V. cholerae is central to studying this complex disease with environmental reservoirs. Here, we present recent advancements of our knowledge on the emergence and spread of the pandemic generating lineage of V. cholerae in the light of established eco-evolutionary observations. Specific ecological interactions shape seasonal cholera, playing a role in the abundance and distribution of its causative agent. Both species-specific and lineage-specific genetic determinants play a role in the ability of V. cholerae strains to cause pandemics with seasonal outbreaks, having evolved gradually over centuries. On the basis of the current understanding, we outline future threats and changes in biogeographical and genomic-based investigation strategies to combat this global problem.
机译:尽管霍乱是一种古老的疾病,至少在一千年前就开始出现,但它仍然是全球范围内的主要健康威胁。其大流行形式是由霍乱弧菌的单一谱系菌株引起的。该谱系的祖先具有几个独特的特征,最值得注意的是O1抗原多糖。该血统产生了两种生物型,第一种是古典型,负责六种大流行,第二种是El Tor,负责第七种并持续进行大流行。就像在过去的50年中,埃尔托(El Tor)取代古典音乐成为爆发的主要原因一样,埃尔托(El Tor)的多种变体已经发展并在全球范围内取代了其前身。了解大流行霍乱弧菌的生态,进化和传播是研究具有环境储层的复杂疾病的关键。在这里,我们根据已建立的生态进化观测结果,介绍霍乱弧菌大流行产生谱系的出现和传播的最新知识进展。特定的生态相互作用影响季节性霍乱,并在其致病因子的丰富和分布中起作用。物种特异性和谱系特异性遗传决定因素在霍乱弧菌菌株引起季节性爆发大流行的能力中都发挥了作用,这种进化已持续了多个世纪。基于当前的理解,我们概述了未来的威胁以及生物地理学和基于基因组学的调查策略中的变化,以应对这一全球性问题。

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