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对巴基斯坦卡拉克盐矿嗜盐微生物多样性的宏基因组学见解。

Metagenomic Insights Into the Diversity of Halophilic Microorganisms Indigenous to the Karak Salt Mine, Pakistan.

作者信息

Cycil Leena Mavis, DasSarma Shiladitya, Pecher Wolf, McDonald Ryan, AbdulSalam Maria, Hasan Fariha

机构信息

Applied Environmental and Geomicrobiology Laboratory, Department of Microbiology, Quaid-i-Azam University, Islamabad, Pakistan.

Institute of Marine and Environmental Technology, Department of Microbiology and Immunology, University of Maryland School of Medicine, Baltimore, MD, United States.

出版信息

Front Microbiol. 2020 Jul 14;11:1567. doi: 10.3389/fmicb.2020.01567. eCollection 2020.

Abstract

Hypersaline regions are terrestrial analogs of the Earth's primitive ecosystem and extraterrestrial environment. The salt range in Pakistan is considered among a few of the ancient salt deposits in the subcontinent. Karak salt mine is situated at the Northwest end in Pakistan. Despite the fact that halophiles initiated the formation of terrestrial ecosystems, their products and identities remain hidden. Some preliminary studies limited to culture-dependent isolations have been reported. Characterizing the microbiome that spans over centuries of ecosystem development is crucial, given their role in shaping landscape succession and biogeochemical cycles. Here, we used metagenomics techniques to explore the microbial diversity of the Karak salt mine. We used 16S rRNA Illumina amplicon sequencing to characterize the halophilic communities entrapped in Karak mine. The results were interpreted using Illumina Basespace, QIIME, and Cytoscape. Cultures were isolated at 16-25% salinity. Metagenomics data was consistent with our preliminary culturing data, indicating remarkable species to strain-level diversity of unique halophiles. A total of 107,099 (brine) and 122,679 (salt) reads were obtained. 16S rRNA based sequencing revealed a microbiome with bacteria (66% brine and 72% salt) dominated by Bacteroidetes and Proteobacteria with a strikingly high abundance of Archaea (18% brine and 13% salt). Alpha diversity has higher values in salt than in the brine. The study of the halophiles in the Karak salt mine provides clues for species contributing to the maintenance of biogeochemical cycles of the ecosystem. This is the first report of a metagenomic study of any hypersaline region of Pakistan.

摘要

高盐地区是地球原始生态系统和外星环境的陆地类似物。巴基斯坦的盐层被认为是该次大陆少数古老盐矿床之一。卡拉奇盐矿位于巴基斯坦的西北端。尽管嗜盐菌引发了陆地生态系统的形成,但其产物和身份仍然未知。此前已有一些限于依赖培养的分离方法的初步研究报道。鉴于微生物群落在塑造景观演替和生物地球化学循环中的作用,对跨越数百年生态系统发展的微生物群落进行特征描述至关重要。在此,我们运用宏基因组学技术探索卡拉奇盐矿的微生物多样性。我们使用16S rRNA Illumina扩增子测序来表征被困在卡拉奇矿中的嗜盐群落。结果通过Illumina Basespace、QIIME和Cytoscape进行解读。在盐度为16%-25%的条件下进行培养物分离。宏基因组学数据与我们的初步培养数据一致,表明独特嗜盐菌在物种到菌株水平上具有显著的多样性。共获得107,099条(盐水)和122,679条(盐)读数。基于16S rRNA的测序揭示了一个微生物群落,其中细菌(盐水样本中占66%,盐样本中占72%)以拟杆菌门和变形菌门为主,古菌的丰度极高(盐水样本中占18%,盐样本中占13%)。盐样本中的α多样性值高于盐水样本。对卡拉奇盐矿中嗜盐菌的研究为有助于维持生态系统生物地球化学循环的物种提供了线索。这是巴基斯坦任何高盐地区宏基因组学研究的首份报告。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e13/7386132/e1d9017f4e6d/fmicb-11-01567-g001.jpg

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