Firrincieli Andrea, Negroni Andrea, Zanaroli Giulio, Cappelletti Martina
Molecular and Applied Microbiology Lab, Department of Pharmacy and Biotechnology, University of Bologna, via Irnerio 42, 40126 Bologna, Italy.
Department of Civil, Chemical, Environmental and Materials Engineering, University of Bologna, via Terracini 28, 40131 Bologna, Italy.
Microorganisms. 2021 Apr 16;9(4):859. doi: 10.3390/microorganisms9040859.
Increasing number of metagenome sequencing studies have proposed a central metabolic role of still understudied Archaeal members in natural and artificial ecosystems. However, their role in hydrocarbon cycling, particularly in the anaerobic biodegradation of aliphatic and aromatic hydrocarbons, is still mostly unknown in both marine and terrestrial environments. In this work, we focused our study on the metagenomic characterization of the archaeal community inhabiting the Mar Piccolo (Taranto, Italy, central Mediterranean) sediments heavily contaminated by petroleum hydrocarbons and polychlorinated biphenyls (PCB). Among metagenomic bins reconstructed from Mar Piccolo microbial community, we have identified members of the Asgardarchaeota superphylum that has been recently proposed to play a central role in hydrocarbon cycling in natural ecosystems under anoxic conditions. In particular, we found members affiliated with Thorarchaeota, Heimdallarchaeota, and Lokiarchaeota phyla and analyzed their genomic potential involved in central metabolism and hydrocarbon biodegradation. Metabolic prediction based on metagenomic analysis identified the malonyl-CoA and benzoyl-CoA routes as the pathways involved in aliphatic and aromatic biodegradation in these Asgardarchaeota members. This is the first study to give insight into the archaeal community functionality and connection to hydrocarbon degradation in marine sediment historically contaminated by hydrocarbons.
越来越多的宏基因组测序研究表明,在自然和人工生态系统中,仍未得到充分研究的古菌成员具有核心代谢作用。然而,它们在碳氢化合物循环中的作用,特别是在脂肪族和芳香族碳氢化合物的厌氧生物降解中的作用,在海洋和陆地环境中大多仍不为人知。在这项研究中,我们重点研究了居住在受石油碳氢化合物和多氯联苯(PCB)严重污染的意大利塔兰托小海(地中海中部)沉积物中的古菌群落的宏基因组特征。在从小海微生物群落重建的宏基因组分类单元中,我们鉴定出了阿斯加德古菌超门的成员,最近有人提出该超门在缺氧条件下的自然生态系统中的碳氢化合物循环中发挥核心作用。特别是,我们发现了与索尔古菌门、海姆达尔古菌门和洛基古菌门相关的成员,并分析了它们参与中心代谢和碳氢化合物生物降解的基因组潜力。基于宏基因组分析的代谢预测确定,丙二酰辅酶A和苯甲酰辅酶A途径是这些阿斯加德古菌成员中脂肪族和芳香族生物降解所涉及的途径。这是第一项深入了解历史上受碳氢化合物污染的海洋沉积物中古菌群落功能及其与碳氢化合物降解之间联系的研究。