Lovell Charles R
Department of Biological Sciences, University of South Carolina, Columbia, SC, 29208, USA.
Appl Microbiol Biotechnol. 2017 Mar;101(5):1781-1794. doi: 10.1007/s00253-017-8096-9. Epub 2017 Jan 31.
Vibrio parahaemolyticus is a commonly encountered and highly successful organism in marine ecosystems. It is a fast-growing, extremely versatile copiotroph that is active over a very broad range of conditions. It frequently occurs suspended in the water column (often attached to particles or zooplankton), and is a proficient colonist of submerged surfaces. This organism is an important pathogen of animals ranging from microcrustaceans to humans and is a causative agent of seafood-associated food poisoning. This review examines specific ecological adaptations of V. parahaemolyticus, including its broad tolerances to temperature and salinity, its utilization of a wide variety of organic carbon and energy sources, and its pervasive colonization of suspended and stationary materials that contribute to its success and ubiquity in temperate and tropical estuarine ecosystems. Several virulence-related features are examined, in particular the thermostable direct hemolysin (TDH), the TDH-related hemolysin (TRH), and the type 3 secretion system, and the possible importance of these features in V. parahaemolyticus pathogenicity is explored. The impact of new and much more effective PCR primers on V. parahaemolyticus detection and our views of virulent strain abundance are also described. It is clear that strains carrying the canonical virulence genes are far more common than previously thought, which opens questions regarding the role of these genes in pathogenesis. It is also clear that virulence is an evolving feature of V. parahaemolyticus and that novel combinations of virulence factors can lead to emergent virulence in which a strain that is markedly more pathogenic evolves and propagates to produce an outbreak. The effects of global climate change on the frequency of epidemic disease, the geographic distribution of outbreaks, and the human impacts of V. parahaemolyticus are increasing and this review provides information on why this ubiquitous human pathogen has increased its footprint and its significance so dramatically.
副溶血性弧菌是海洋生态系统中常见且极为成功的一种生物。它是一种生长迅速、适应性极强的富营养生物,能在非常广泛的条件下活跃生存。它经常悬浮于水柱中(通常附着于颗粒或浮游动物上),并且是水下表面的高效定殖者。这种生物是从微型甲壳类动物到人类等多种动物的重要病原体,也是与海鲜相关的食物中毒的致病因子。本综述探讨了副溶血性弧菌的特定生态适应性,包括其对温度和盐度的广泛耐受性、对多种有机碳和能源的利用,以及其在悬浮和固定物质上的广泛定殖,这些因素促成了它在温带和热带河口生态系统中的成功与广泛分布。文中研究了几种与毒力相关的特征,特别是耐热直接溶血素(TDH)、TDH相关溶血素(TRH)和3型分泌系统,并探讨了这些特征在副溶血性弧菌致病性中的可能重要性。还描述了新型且更有效的PCR引物对副溶血性弧菌检测的影响以及我们对毒力菌株丰度的看法。显然,携带典型毒力基因的菌株比以前认为的更为常见,这引发了关于这些基因在发病机制中作用的问题。同样明显的是,毒力是副溶血性弧菌不断演变的特征,毒力因子的新组合可导致新出现的毒力,即一种致病性明显更强的菌株进化并传播从而引发疫情。全球气候变化对疫病流行频率、疫情地理分布以及副溶血性弧菌对人类影响的作用正在增加,本综述提供了关于为何这种普遍存在的人类病原体如此显著地扩大其影响范围和重要性的相关信息。