从牡蛎壳生物膜中分离的 Planctomycetota 的抗菌药耐药性概况:同一健康概念中的生态相关性

Bárbara Guedes, Ofélia Godinho, Sandra Quinteira, O. Lage
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引用次数: 0

摘要

背景:纯培养的 Planctomycetota 分离仍具有挑战性,大多数报道的数据来自基于分子的方法。在此,我们打算从滤食性太平洋牡蛎 Magallana gigas 中分离出 Planctomycetota,将研究扩展到一个尚未开发的天然储藏库,并确定其抗菌药耐药性表型的特征。方法:在选择性培养基中分离来自不同超市和农场生产商的牡蛎样本。接种从外壳生物膜中进行,并在食用内容物富集后进行。结果只从贝壳生物膜中获得了 Planctomycetota 分离物(n = 65),并确定了四个不同的物种:分别是:Rhodopirellula baltica(n = 62)、Rhodopirellula rubra(n = 1)、Rhodopirellula heiligendammensis(n = 1)和 Gimesia chilikensis(n = 1)。本研究报告了 Planctomycetota 成员与牡蛎的首次联系,以及葡萄牙对 R. heiligendammensis 的首次描述。此外,最初在葡萄牙发现的 R. rubra 也是从法国产的牡蛎中分离出来的。对属于两个物种的菌株进行的抗生素敏感性测试显示,这些菌株对多种临床相关抗生素(如β-内酰胺类和氨基糖苷类)具有耐药性。结论讨论了 Planctomycetota 对牡蛎全生物群的生态作用和影响,以及最终在 "一个健康 "理念下对公共卫生的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antimicrobial Resistance Profile of Planctomycetota Isolated from Oyster Shell Biofilm: Ecological Relevance within the One Health Concept
Background: Planctomycetota isolation in pure culture is still challenging with most of the reported data coming from molecular-based methods. Here, we intended to isolate Planctomycetota from the filter-feeder Pacific oyster Magallana gigas, extending the search to a not yet explored natural reservoir and to characterize their antimicrobial resistance phenotype. Methods: Oyster samples from different supermarkets and from a farm producer were subject to isolation in selective medium. Inoculation was performed from the shell biofilm and after an enrichment of the edible content. Results: Planctomycetota isolates (n = 65) were only obtained from the shell biofilm with four different species identified: Rhodopirellula baltica (n = 62), Rhodopirellula rubra (n = 1), Rhodopirellula heiligendammensis (n = 1) and Gimesia chilikensis (n = 1). This study reports the first association of Planctomycetota members with oysters and the first description of R. heiligendammensis in Portugal. Moreover, R. rubra, originally identified in Portugal, was isolated from oysters of French origin. Antibiotic susceptibility testing, conducted in strains belonging to two species never assayed before revealed multidrug resistance phenotypes with bacteria showing resistance to several classes of clinically relevant antibiotics (e.g., β-lactams and aminoglycosides). Conclusion: The ecological role and impact of Planctomycetota on oyster holobiont and, ultimately, in public health, under the One Health concept, is discussed.
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