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对冰前系统岩石风化和固氮功能概况的分类群视角洞察

A Taxon-Wise Insight Into Rock Weathering and Nitrogen Fixation Functional Profiles of Proglacial Systems.

作者信息

Varliero Gilda, Anesio Alexandre M, Barker Gary L A

机构信息

School of Biological Sciences, University of Bristol, Bristol, United Kingdom.

Department of Environmental Sciences, Aarhus University, Roskilde, Denmark.

出版信息

Front Microbiol. 2021 Sep 16;12:627437. doi: 10.3389/fmicb.2021.627437. eCollection 2021.

Abstract

The Arctic environment is particularly affected by global warming, and a clear trend of the ice retreat is observed worldwide. In proglacial systems, the newly exposed terrain represents different environmental and nutrient conditions compared to later soil stages. Therefore, proglacial systems show several environmental gradients along the soil succession where microorganisms are active protagonists of the soil and carbon pool formation through nitrogen fixation and rock weathering. We studied the microbial succession of three Arctic proglacial systems located in Svalbard (Midtre Lovénbreen), Sweden (Storglaciären), and Greenland (foreland close to Kangerlussuaq). We analyzed 65 whole shotgun metagenomic soil samples for a total of more than 400 Gb of sequencing data. Microbial succession showed common trends typical of proglacial systems with increasing diversity observed along the forefield chronosequence. Microbial trends were explained by the distance from the ice edge in the Midtre Lovénbreen and Storglaciären forefields and by total nitrogen (TN) and total organic carbon (TOC) in the Greenland proglacial system. Furthermore, we focused specifically on genes associated with nitrogen fixation and biotic rock weathering processes, such as nitrogenase genes, genes, and genes involved in cyanide and siderophore synthesis and transport. Whereas we confirmed the presence of these genes in known nitrogen-fixing and/or rock weathering organisms (e.g., , ), in this study, we also detected organisms that, even if often found in soil and proglacial systems, have never been related to nitrogen-fixing or rock weathering processes before (e.g., , ). The different genera showed different gene trends within and among the studied systems, indicating a community constituted by a plurality of organisms involved in nitrogen fixation and biotic rock weathering, and where the latter were driven by different organisms at different soil succession stages.

摘要

北极环境尤其受到全球变暖的影响,全球范围内都观察到了明显的冰退缩趋势。在冰前系统中,新暴露的地形与后期土壤阶段相比,代表着不同的环境和养分条件。因此,冰前系统沿着土壤演替呈现出几个环境梯度,在这些梯度中,微生物通过固氮和岩石风化成为土壤和碳库形成的积极参与者。我们研究了位于斯瓦尔巴群岛(米特雷·洛文冰川)、瑞典(斯托尔冰川)和格陵兰岛(靠近康克鲁斯瓦格的前沿地带)的三个北极冰前系统的微生物演替。我们分析了65个全基因组鸟枪法宏基因组土壤样本,总共获得了超过400Gb的测序数据。微生物演替呈现出冰前系统典型的共同趋势,随着前场时间序列的推进,多样性增加。在米特雷·洛文冰川和斯托尔冰川的前场,微生物趋势由距冰缘的距离解释,而在格陵兰冰前系统中则由总氮(TN)和总有机碳(TOC)解释。此外,我们特别关注与固氮和生物岩石风化过程相关的基因,例如固氮酶基因、参与氰化物和铁载体合成与运输的基因。虽然我们在已知的固氮和/或岩石风化生物(例如, )中证实了这些基因的存在,但在本研究中,我们还检测到了一些生物,即使它们经常在土壤和冰前系统中被发现,但以前从未与固氮或岩石风化过程相关联(例如, )。在所研究的系统内部和之间,不同的属呈现出不同的基因趋势,这表明该群落由多种参与固氮和生物岩石风化的生物组成,并且在不同的土壤演替阶段,后者由不同的生物驱动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb3d/8491546/96c5dc8a100d/fmicb-12-627437-g001.jpg

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