Svalbard Fjord Sediments as a Hotspot of Functional Diversity and a Reservoir of Antibiotic Resistance

Gabriella Caruso, Alessandro Ciro Rappazzo, Giovanna Maimone, Giuseppe Zappalà, Alessandro Cosenza, Marta Szubska, Agata Zaborska
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Abstract

The sea bottom acts as a key natural archive where the memory of long-term timescale environmental changes is recorded. This study discusses some ecological and chemical features of fjord sediments that were explored during the AREX cruise carried out in the Svalbard archipelago in the summer of 2021. The activity rates of the enzymes leucine aminopeptidase (LAP), beta-glucosidase (GLU), and alkaline phosphatase (AP) and community-level physiological profiles (CLPPs) were studied with the aim of determining the functional diversity of the benthic microbial community, while bacterial isolates were screened for their susceptibility to antibiotics in order to explore the role of these extreme environments as potential reservoirs of antibiotic resistance. Enzyme activity rates were obtained using fluorogenic substrates, and CLPPs were obtained using Biolog Ecoplates; antibiotic susceptibility assays were performed through the standard disk diffusion method. Spatial trends observed in the functional profiles of the microbial community suggested variability in the microbial community’s composition, presumably related to the patchy distribution of organic substrates. Complex carbon sources, carbohydrates, and amino acids were the organic polymers preferentially metabolized by the microbial community. Multi-resistance to enrofloxacin and tetracycline was detected in all of the examined samples, stressing the role of sediments as a potential reservoir of chemical wastes ascribable to antibiotic residuals. This study provides new insights on the health status of fjord sediments of West Spitsbergen, applying a dual ecological and biochemical approach. Microbial communities in the fjord sediments showed globally a good functional diversity, suggesting their versatility to rapidly react to changing conditions. The lack of significant diversification among the three studied areas suggests that microbial variables alone cannot be suitable descriptors of sediment health, and that additional measures (i.e., physical–chemical characteristics) should be taken to better define environmental status.
斯瓦尔巴峡湾沉积物是功能多样性的热点和抗生素耐药性的贮藏库
海底是记录长期环境变化的重要天然档案库。本研究讨论了 2021 年夏季在斯瓦尔巴群岛进行的 AREX 巡航期间探索的峡湾沉积物的一些生态和化学特征。研究了亮氨酸氨肽酶(LAP)、β-葡萄糖苷酶(GLU)和碱性磷酸酶(AP)等酶的活性率和群落级生理特征(CLPPs),目的是确定底栖微生物群落的功能多样性,同时筛选细菌分离物对抗生素的敏感性,以探索这些极端环境作为潜在抗生素耐药性库的作用。酶活性率通过荧光底物获得,CLPPs通过Biolog Ecoplates获得;抗生素敏感性检测通过标准盘扩散法进行。从微生物群落功能曲线中观察到的空间趋势表明,微生物群落的组成存在变异,这可能与有机底物的零散分布有关。复合碳源、碳水化合物和氨基酸是微生物群落优先代谢的有机聚合物。在所有受检样本中都检测到了对恩诺沙星和四环素的多重耐药性,这强调了沉积物作为可归因于抗生素残留的潜在化学废物库的作用。这项研究采用生态和生化双重方法,为了解西斯匹次卑尔根峡湾沉积物的健康状况提供了新的视角。峡湾沉积物中的微生物群落在全球范围内显示出良好的功能多样性,这表明它们具有对不断变化的条件做出快速反应的多功能性。所研究的三个地区之间缺乏明显的多样性,这表明仅靠微生物变量无法适当地描述沉积物的健康状况,应采取其他措施(即物理化学特征)来更好地确定环境状况。
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