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从意大利西西里岛巴勒莫的一个中世纪中期土壤样本中分离出的细菌的新生物多样性和生物分子来源。

Novel Sources of Biodiversity and Biomolecules from Bacteria Isolated from a High Middle Ages Soil Sample in Palermo (Sicily, Italy).

机构信息

School of Biosciences and Veterinary Medicine, University of Camerino, Camerino (MC), Italy.

Department of Biology, University of Florence, Florence (FI), Italy.

出版信息

Microbiol Spectr. 2023 Jun 15;11(3):e0437422. doi: 10.1128/spectrum.04374-22. Epub 2023 Apr 18.

Abstract

The urban plan of Palermo (Sicily, Italy) has evolved throughout Punic, Roman, Byzantine, Arab, and Norman ages until it stabilized within the borders that correspond to the current historic center. During the 2012 to 2013 excavation campaign, new remains of the Arab settlement, directly implanted above the structures of the Roman age, were found. The materials investigated in this study derived from the so-called Survey No 3, which consists of a rock cavity of subcylindrical shape covered with calcarenite blocks: it was probably used to dispose of garbage during the Arabic age and its content, derived from daily activities, included grape seeds, scales and bones of fish, small animal bones, and charcoals. Radiocarbon dating confirmed the medieval origin of this site. The composition of the bacterial community was characterized through a culture-dependent and a culture-independent approach. Culturable bacteria were isolated under aerobic and anaerobic conditions and the total bacterial community was characterized through metagenomic sequencing. Bacterial isolates were tested for the production of compounds with antibiotic activity: a strain, whose genome was sequenced, was of particular interest because of its inhibitory activity, which was due to the Type I polyketide aureothin. Moreover, all strains were tested for the production of secreted proteases, with those belonging to the genus having the most active enzymes. Finally, protocols commonly used for ancient DNA studies were applied to evaluate the antiquity of isolated bacterial strains. Altogether these results show how paleomicrobiology might represent an innovative and unexplored source of novel biodiversity and new biotechnological tools. One of the goals of paleomicrobiology is the characterization of the microbial community present in archaeological sites. These analyses can usually provide valuable information about past events, such as occurrence of human and animal infectious diseases, ancient human activities, and environmental changes. However, in this work, investigations about the composition of the bacterial community of an ancient soil sample (harvested in Palermo, Italy) were carried out aiming to screen ancient culturable strains with biotechnological potential, such as the ability to produce bioactive molecules and secreted hydrolytic enzymes. Besides showing the biotechnological relevance of paleomicrobiology, this work reports a case of germination of putatively ancient bacterial spores recovered from soil rather than extreme environments. Moreover, in the case of spore-forming species, these results raise questions about the accuracy of techniques usually applied to estimate antiquity of DNA, as they could lead to its underestimation.

摘要

巴勒莫(意大利西西里岛)的城市规划历经了腓尼基、罗马、拜占庭、阿拉伯和诺曼时代的发展,最终稳定在现今历史中心的边界内。在 2012 年至 2013 年的挖掘活动中,发现了新的阿拉伯定居点的遗迹,这些遗迹直接建在罗马时代的建筑之上。本研究调查的材料源自所谓的 3 号调查,这是一个亚圆柱形的岩石洞穴,覆盖着白垩质砾石块:它可能是在阿拉伯时代用来处理垃圾的,其内容物来源于日常活动,包括葡萄种子、鱼鳞和鱼骨、小动物骨骼和木炭。放射性碳测年证实了该遗址的中世纪起源。通过培养依赖和非培养依赖的方法来描述细菌群落的组成。在需氧和厌氧条件下分离可培养细菌,并通过宏基因组测序来描述总细菌群落。测试了细菌分离株产生具有抗生素活性的化合物的能力:由于其抑制活性,尤其是由于 I 型聚酮 aureothin,因此对其基因组进行了测序的 菌株特别有趣。此外,还测试了所有菌株产生分泌蛋白酶的能力,其中属于 属的菌株具有最活跃的酶。最后,应用了常用于古代 DNA 研究的方案来评估分离细菌菌株的古老程度。总的来说,这些结果表明古微生物学如何成为新生物多样性和新技术工具的创新和未开发来源。古微生物学的目标之一是描述考古遗址中存在的微生物群落。这些分析通常可以提供有关过去事件的有价值信息,例如人类和动物传染病的发生、古代人类活动和环境变化。然而,在这项工作中,对取自意大利巴勒莫的古代土壤样本的细菌群落组成进行了调查,旨在筛选具有生物技术潜力的古代可培养菌株,例如产生生物活性分子和分泌水解酶的能力。除了展示古微生物学的生物技术相关性外,本工作还报告了从土壤而不是极端环境中回收的推定古老细菌孢子萌发的情况。此外,对于形成孢子的物种,这些结果引发了对通常用于估计 DNA 古老程度的技术准确性的质疑,因为它们可能导致其低估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce66/10269861/c094e7954c14/spectrum.04374-22-f001.jpg

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