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带有特殊考虑的 的分类学、生态学和与食品安全的相关性,特别是在 2010 年至 2022 年期间描述的新 物种。

Taxonomy, ecology, and relevance to food safety of the genus with a particular consideration of new species described between 2010 and 2022.

机构信息

Department of Food Science, Cornell University, Ithaca, New York, USA.

Department of Civil and Environmental Engineering, Virginia Tech, Blacksburg, Virginia, USA.

出版信息

mBio. 2024 Feb 14;15(2):e0093823. doi: 10.1128/mbio.00938-23. Epub 2023 Dec 21.

Abstract

Since 2010, the genus has had the addition of 22 new species that more than tripled the number of species identified until 2010. Sixteen of these 22 new species are distantly related to the type species, , and several of these present phenotypes that distinguish them from classical species (, , , , and ). These 22 newly described species also show that is more genetically diverse than previously estimated. While future studies and surveys are needed to clarify the distribution of these species, at least some of these species may not be widely spread, while other species may be frequently found spread to human-related settings (e.g., farms and processing facilities), and others may be adapted to specific environmental habitats. Here, we review the taxonomic, phylogenetic, and ecological characteristics of these new species identified since 2010 and re-iterate the suggestion of re-classification of some species into three new genera: , , and . We also provide a review of current detection issues and the relevance to food safety related to the identification of these new species. For example, several new non-pathogenic species could be misidentified as the pathogen , based on methods that do not target -specific virulence genes/factors, leading to unnecessary product recalls. Moreover, eight species in the proposed new genus are not good indicators of environmental conditions that could allow to grow since species are unable to grow at low temperatures.

摘要

自 2010 年以来,已新增 22 个新物种,使 2010 年前鉴定的物种数量增加了两倍多。这 22 个新物种中有 16 个与模式种 远缘相关,其中一些表现出与经典 物种不同的表型( 、 、 、 和 )。这些新描述的物种也表明 比之前估计的具有更多的遗传多样性。虽然需要进一步的研究和调查来澄清这些物种的分布情况,但至少有一些物种可能分布不广泛,而其他物种可能经常在与人类相关的环境中发现(例如农场和加工设施),还有一些物种可能适应特定的环境栖息地。在这里,我们回顾了自 2010 年以来鉴定的这些新 物种的分类学、系统发育和生态特征,并再次提出将一些物种重新分类为三个新属: 、 和 。我们还综述了当前与食品安全相关的检测问题和与鉴定这些新物种的相关性。例如,一些新的非致病性物种可能会被错误地鉴定为病原体 ,这是因为基于不针对特定毒力基因/因子的方法进行鉴定,从而导致不必要的产品召回。此外,拟议的新属 中的 8 个物种并不是能够生长的环境条件的良好指标,因为 物种无法在低温下生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b58/10865800/46244006e93c/mbio.00938-23.f001.jpg

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