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对非典型物种的回顾引出了新的定义。

The Retrospective on Atypical Species Leads to Novel Definitions.

作者信息

Occhialini Alessandra, Hofreuter Dirk, Ufermann Christoph-Martin, Al Dahouk Sascha, Köhler Stephan

机构信息

Institut de Recherche en Infectiologie de Montpellier (IRIM), CNRS, University Montpellier, INSERM, 34293 Montpellier, France.

German Federal Institute for Risk Assessment, 12277 Berlin, Germany.

出版信息

Microorganisms. 2022 Apr 14;10(4):813. doi: 10.3390/microorganisms10040813.

Abstract

The genus currently comprises twelve species of facultative intracellular bacteria with variable zoonotic potential. Six of them have been considered as classical, causing brucellosis in terrestrial mammalian hosts, with two species originated from marine mammals. In the past fifteen years, field research as well as improved pathogen detection and typing have allowed the identification of four new species, namely , , , , and of numerous strains, isolated from a wide range of hosts, including for the first time cold-blooded animals. While their genome sequences are still highly similar to those of classical strains, some of them are characterized by atypical phenotypes such as higher growth rate, increased resistance to acid stress, motility, and lethality in the murine infection model. In our review, we provide an overview of state-of-the-art knowledge about these novel sp., with emphasis on their phylogenetic positions in the genus, their metabolic characteristics, acid stress resistance mechanisms, and their behavior in well-established in cellulo and in vivo infection models. Comparison of phylogenetic classification and phenotypical properties between classical and novel species and strains finally lead us to propose a more adapted terminology, distinguishing between core and non-core, and typical versus atypical brucellae, respectively.

摘要

该属目前包含十二种兼性细胞内细菌,具有不同的人畜共患病潜力。其中六种被认为是经典的,可在陆生哺乳动物宿主中引起布鲁氏菌病,有两种来自海洋哺乳动物。在过去的十五年中,野外研究以及改进的病原体检测和分型方法使得能够鉴定出四个新物种,即[具体物种名1]、[具体物种名2]、[具体物种名3]、[具体物种名4]以及许多菌株,这些菌株从广泛的宿主中分离得到,首次包括冷血动物。虽然它们的基因组序列仍与经典菌株高度相似,但其中一些具有非典型表型,如更高的生长速率、对酸应激的抗性增加、运动性以及在小鼠感染模型中的致死性。在我们的综述中,我们概述了关于这些新型[属名]物种的最新知识,重点介绍了它们在该属中的系统发育位置、代谢特征、抗酸应激机制以及它们在成熟的细胞内和体内感染模型中的行为。经典和新型[属名]物种及菌株之间的系统发育分类和表型特性比较最终使我们提出一种更合适的术语,分别区分核心和非核心以及典型和非典型布鲁氏菌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2231/9025488/c27e8ffa6392/microorganisms-10-00813-g001.jpg

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