基因组和环境对人类活动扰动的地表下 Castellaniella 生物地理学的影响

IF 6.2 2区 环境科学与生态学 Q1 GENETICS & HEREDITY Environmental Microbiome Pub Date : 2024-04-26 DOI:10.1186/s40793-024-00570-9
Jennifer L. Goff, Elizabeth G. Szink, Konnor L. Durrence, Lauren M. Lui, Torben N. Nielsen, Jennifer V. Kuehl, Kristopher A. Hunt, John-Marc Chandonia, Jiawen Huang, Michael P. Thorgersen, Farris L. Poole, David A. Stahl, Romy Chakraborty, Adam M. Deutschbauer, Adam P. Arkin, Michael W. W. Adams
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引用次数: 0

摘要

从各种混合废物环境(包括橡树岭保护区(ORR)受硝酸盐和多种金属污染的地下)中分离出了蓖麻菌。之前在生物刺激过程中对橡树岭保护区的微生物群落组成和硝酸盐去除情况进行的研究报告称,在反硝化率提高的同时,蓖麻菌属成员的丰度也在增加。因此,我们询问基因组和非生物因素是如何控制该地点的蓖麻菌生物地理学的,以了解这些因素是如何影响人为影响环境下的硝酸盐转化的。我们报告了从 ORR 地下分离出的几种蓖麻菌株及其特征。其中五个分离株与两个卡斯特拉氏菌扩增序列变体(ASV)(ASV1 和 ASV2)100%吻合(在 16S rRNA 基因 V4 区域),这两个变体在 ORR 次表层已存在至少 20 年。然而,ASV2 在该地点采集的样本中的相对丰度一直较高,而且在之前的生物刺激过程中也是主要的反硝化细菌种群。我们发现,与 ASV1 代表菌株相比,ASV2 代表菌株对混合金属压力的抵抗力更强。我们将这种抗性部分归因于在 ASV2 代表基因组的一个基因组岛中发现了大量独特的重金属抗性基因。此外,我们认为 ASV1 相对较低的适应性可能与一氧化二氮还原酶(nos)操作子(及相关的一氧化二氮还原酶活性)的丧失有关,这是因为在该基因组位点上插入了携带铜抗性基因的移动遗传元件。这项研究证明了整合基因组、环境和表型数据以描述污染场地关键微生物生物地理学特征的价值。
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Genomic and environmental controls on Castellaniella biogeography in an anthropogenically disturbed subsurface
Castellaniella species have been isolated from a variety of mixed-waste environments including the nitrate and multiple metal-contaminated subsurface at the Oak Ridge Reservation (ORR). Previous studies examining microbial community composition and nitrate removal at ORR during biostimulation efforts reported increased abundances of members of the Castellaniella genus concurrent with increased denitrification rates. Thus, we asked how genomic and abiotic factors control the Castellaniella biogeography at the site to understand how these factors may influence nitrate transformation in an anthropogenically impacted setting. We report the isolation and characterization of several Castellaniella strains from the ORR subsurface. Five of these isolates match at 100% identity (at the 16S rRNA gene V4 region) to two Castellaniella amplicon sequence variants (ASVs), ASV1 and ASV2, that have persisted in the ORR subsurface for at least 2 decades. However, ASV2 has consistently higher relative abundance in samples taken from the site and was also the dominant blooming denitrifier population during a prior biostimulation effort. We found that the ASV2 representative strain has greater resistance to mixed metal stress than the ASV1 representative strains. We attribute this resistance, in part, to the large number of unique heavy metal resistance genes identified on a genomic island in the ASV2 representative genome. Additionally, we suggest that the relatively lower fitness of ASV1 may be connected to the loss of the nitrous oxide reductase (nos) operon (and associated nitrous oxide reductase activity) due to the insertion at this genomic locus of a mobile genetic element carrying copper resistance genes. This study demonstrates the value of integrating genomic, environmental, and phenotypic data to characterize the biogeography of key microorganisms in contaminated sites.
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来源期刊
Environmental Microbiome
Environmental Microbiome Immunology and Microbiology-Microbiology
CiteScore
7.40
自引率
2.50%
发文量
55
审稿时长
13 weeks
期刊介绍: Microorganisms, omnipresent across Earth's diverse environments, play a crucial role in adapting to external changes, influencing Earth's systems and cycles, and contributing significantly to agricultural practices. Through applied microbiology, they offer solutions to various everyday needs. Environmental Microbiome recognizes the universal presence and significance of microorganisms, inviting submissions that explore the diverse facets of environmental and applied microbiological research.
期刊最新文献
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