Rahman Mohammad Shamsur, Martino Maria Elena, Cardazzo Barbara, Facco Pierantonio, Bordin Paola, Mioni Renzo, Novelli Enrico, Fasolato Luca
Department of Comparative Biomedicine and Food Science, University of Padua, Legnaro, Italy.
Appl Environ Microbiol. 2014 Apr;80(8):2372-80. doi: 10.1128/AEM.04133-13. Epub 2014 Jan 31.
Vibrio is a very diverse genus that is responsible for different human and animal diseases. The accurate identification of Vibrio at the species level is important to assess the risks related to public health and diseases caused by aquatic organisms. The ecology of Vibrio spp., together with their genetic background, represents an important key for species discrimination and evolution. Thus, analyses of population structure and ecology association are necessary for reliable characterization of bacteria and to investigate whether bacterial species are going through adaptation processes. In this study, a population of Vibrionaceae was isolated from shellfish of the Venice lagoon and analyzed in depth to study its structure and distribution in the environment. A multilocus sequence analysis (MLSA) was developed on the basis of four housekeeping genes. Both molecular and biochemical approaches were used for species characterization, and the results were compared to assess the consistency of the two methods. In addition, strain ecology and the association between genetic information and environment were investigated through statistical models. The phylogenetic and population analyses achieved good species clustering, while biochemical identification was demonstrated to be imprecise. In addition, this study provided a fine-scale overview of the distribution of Vibrio spp. in the Venice lagoon, and the results highlighted a preferential association of the species toward specific ecological variables. These findings support the use of MLSA for taxonomic studies and demonstrate the need to consider environmental information to obtain broader and more accurate bacterial characterization.
弧菌是一个非常多样化的属,可导致不同的人类和动物疾病。在物种水平上准确鉴定弧菌对于评估与公共卫生以及水生生物引起的疾病相关的风险很重要。弧菌属的生态学及其遗传背景是物种鉴别和进化的重要关键。因此,分析种群结构和生态关联对于可靠地表征细菌以及研究细菌物种是否正在经历适应过程是必要的。在本研究中,从威尼斯泻湖的贝类中分离出一群弧菌科细菌,并对其进行深入分析以研究其在环境中的结构和分布。基于四个管家基因开发了多位点序列分析(MLSA)。分子和生化方法都用于物种鉴定,并比较结果以评估两种方法的一致性。此外,通过统计模型研究了菌株生态学以及遗传信息与环境之间的关联。系统发育和种群分析实现了良好的物种聚类,而生化鉴定被证明是不精确的。此外,本研究提供了威尼斯泻湖弧菌属分布的详细概述,结果突出了该物种与特定生态变量的优先关联。这些发现支持将MLSA用于分类学研究,并表明需要考虑环境信息以获得更广泛和更准确的细菌表征。